Collection: Technology & Engineering
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Instant insights: fruit losses and waste
This specially curated collection features five reviews of current and key research on fruit losses and waste.
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Growing organic apples in europe
This chapter reviews key research areas involved in organic apple production, and covers the development of suitable varieties and rootstocks, soil fertility management and strategies for maintaining apple tree health. A number of case studies are then considered in order to show how research can...
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Advances in understanding apple tree growth: rootstocks and planting systems
Recent research and development has investigated the factors influencing apple tree growth, with the ultimate aim of helping apple growers provide the market with fruit which is consistent in quality and which exhibits the features that consumers value, such as firmness, juiciness, colour and app...
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Bacterial diseases affecting apples
Bacterial diseases present an ongoing challenge to the sustainability of apple production. Fire blight is a serious economic threat to apple production in regions of the world where it occurs, and it it is used as an example to present the key issues and challenges which bacterial diseases raise ...
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Sorghum breeding for abiotic stress tolerance
Sorghum is a major global crop for food, feed and biofuel. Globally, domesticated sorghum is often grown on marginal lands and in environments exposing the plant to temperature extremes and water deficits. Although sorghum exhibits better abiotic stress tolerances than many crops, significant sor...
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Classifying the genetic diversity of sorghum: a revised classification of sorghum
This chapter provides a revised classification of sorghum. It sets out a generalized classification of cultivated sorghum from which a more precise working group can be defined to explain the variation within the chosen race. The classification is presented in a format that would be useful in bre...
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Ensuring the genetic diversity of sorghum
Sorghum is a staple food crop for millions of the poorest and most food-insecure people in the semi-arid tropics, and ensuring its diversity and conservation is therefore important for global food and nutritional security. This chapter discusses the taxonomy of sorghum, in situ and ex situ germpl...
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Advanced technologies to accelerate sorghum breeding
Sorghum is a critically important crop, yet advanced technologies for its improvement have lagged behind other crops like rice and maize. This chapter first summarizes some of the current technologies beyond conventional breeding methods that can be utilized for crop improvement in sorghum. Some ...
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Advanced testing, multiplication and release of new sorghum varieties
The release of a new sorghum variety or hybrid is the culmination of many years of breeding and evaluation. This chapter describes the hybrid advancement process, including ways of increasing the parent lines for hybrid production and the guidelines that must be followed to ensure high-quality se...
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Harnessing genetic and genomic resources to transform the production and productivity of sorghum
Despite sorghum’s inherent yield potential, its remarkable adaptation to marginal environments and its extensive use in various food applications by smallholders in developing countries, sorghum has never received the attention it deserves and thus its productivity has remained low. This chapter ...
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The principles and processes of sorghum breeding
This chapter provides an overview of the basic principles and processes involved in the breeding of sorghum. A number of standard field operations are described, such as crossing, emasculation and harvesting, followed by a discussion of various methods of selection and topcrossing. After describi...
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Instant insights: regulatory frameworks for new agricultural products and technologies
This book provides a unique overview of the legal and regulatory challenges facing the development and commercialisation of new agricultural products and technologies, including cultured meat, genome editing, bioprotectants, biopesticides and novel animal feed ingredients.
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Instant insights: nutritional and health benefits of beverage crops
This collection provides a considered exploration of the nutritional and health benefits of key beverage crops, focussing primarily on tea and coffee. Chapters explore their potential in preventing the onset of chronic diseases, such as cancer and diabetes, as well as the analytical techniques av...
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Advances in understanding the epidemiology of septoria tritici blotch in cereals
This chapter reviews advances in understanding the epidemiology of Septoria tritici blotch in cereals.
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Advances in understanding soybean physiology and growth
Soybean is one of the world’s most widely grown and economically significant crops, having an extensive range of end uses. Understanding soybean growth and physiology is paramount to maximising its productivity and optimising its yield. This chapter highlights recent advances in understanding soy...
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Advances in screening and product development of microbial bioprotectants
The success of a biological control programme depends on the isolation and selection of antagonists. There is an enormous diversity of culturable microbial species in the soil, rhizosphere, phylloplane, spermosphere and carposphere, which can be used in the isolation and selection of antagonists....
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Ramularia leaf spot in barley
Ramularia leaf spot is an emerging pathogen across barley growing regions of the world. It's rise from minor to major disease has been rapid over the last twenty years. The causal pathogen, Ramularia collo-cygni is poorly understood but it has been shown to have a complex life cycle and the abili...
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Achieving durable disease resistance in cereals
This collection reviews advances in the key areas required to achieve durable disease resistance in cereal crops, from advances in understanding pathogen biology/epidemiology and plant pathogen interactions to identifying sources of resistance and advance techniques for breeding new varieties.
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Microbial bioprotectants for plant disease management
This collection summarises and reviews the wealth of recent research on the development of more environmentally friendly biological methods to control plant diseases.
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Visualising plant colonisation by beneficial bacteria: a key step to improve the understanding of plant–microbe interactions
Plants contain diverse microorganisms that interact with their hosts and with each other. Beneficial bacteria can be utilised on crops to protect plants against biotic and abiotic stresses and to stimulate plant growth. However, the behaviour of specific microorganisms on and within plants is sti...
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Are there bacterial bioprotectants besides bacillus and pseudomonas?
This chapter discusses the taxonomy of non-Bacillus and Pseudomonas (NBP) bioprotectant strains, including enterobacteria, actinomycetes, Sphingomonas, Methylobacterium, Agrobacterium-Rhizobium and Lactobacillus. The chapter reviews their mechanisms of action against plant pathogens. Sources of i...
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Durability of efficacy of microbial bioprotectants against plant diseases
Plant pathogens can develop resistance to conventional plant protection products but their ability to overcome the effect of microbial bioprotectants is still poorly known. However, various studies show that susceptibility of plant pathogens to microbial bioprotectants can be highly variable. Thi...
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Advances in understanding modes of action of microbial bioprotectants
Plant-associated microorganisms are involved in important functions related to growth, performance and health of their hosts. Understanding their modes of action is important for the development and application of microbial bioprotectants and biostimulants. Recent studies have revealed manifold p...
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Advances in understanding plant root response to weedy root parasites
This chapter addresses advances in understanding plant root responses to weedy root parasites. It begins by reviewing host-parasitic weed interactions, focusing specifically on seed dispersal and germination and the possibility of host infection as a consequence of germination. The chapter then m...
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Investigating the biology of rice blast disease and prospects for durable resistance
There are important biological process involved in rice blast disease that are now well-studied during the early events in plant infection which include: the cell biology of appressorium formation, the biology of invasive growth and effector secretion, the two distinct mechanisms of effector secr...
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Key challenges in breeding durable disease-resistant cereals: north america
This chapter first describes the challenges of diverse climates, diseases, and market classes that face North American small-grain cereal breeders and producers. It discusses the challenges inherent in the complex systems of cereal breeding on the continent, and the changing resistance priorities...
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Resistance breeding in barley against barley yellow dwarf virus (bydv): avoiding negative impacts on anatomy and physiology
Barley yellow dwarf (BYD) is one of the most widespread and damaging viral diseases of grasses and cereal crops worldwide. Due to an increasing risk of food losses e.g. in barley by Barley yellow dwarf virus (BYDV) as a consequence of climate change, associated by a strong demand to decrease the ...
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Cereal-fusarium interactions: improved fundamental insights into fusarium pathogenomics and cereal host resistance reveals new ways to achieve durable disease control
All cereal crop species are vulnerable to root, stem-base and floral diseases caused by various Fusarium species. Most problematic is Fusarium head blight because grains become contaminated with harmful mycotoxins. Currently Fusarium control using fungicides is only partially effective, whilst cu...
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Advances in identifying stripe rust resistance genes in cereals
Stripe rust is one of the most serious wheat diseases of the world, usually resulting in massive loss of grain production. The most effective and environmentally friendly way to control the spread of stripe rust is to plant wheat varieties that carry stripe rust resistance genes. The identificati...
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Understanding plant-pathogen interactions in net blotch infection of cereals
An economically important disease of barley that causes significant yield and quality losses is net blotch caused by the necrotrophic fungal pathogen Pyrenophora teres. To reduce the impact of net blotch the research community is engaging in basic and applied research to enhance genetic resistanc...
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Advances in breeding techniques for durable septoria tritici blotch (stb) resistance in cereals
Septoria tritici blotch (STB), caused by the hemibiotrophic fungus Zymoseptoria tritici, is one of the most important foliar diseases of winter cereal crops. Recent advances are helping to understand the genetic basis and architecture of resistance to STB. To date, at least 22 genes for qualitati...
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Bacteriophages to control plant diseases
Crop yield loss due to bacterial plant pathogens need to be reduced to increase global food production demand. Currently available disease management strategies involving copper-based bactericides and antibiotics are losing efficacy due to development of resistance in bacteria. There is long fami...
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Advances in understanding the epidemiology of fusarium in cereals
Cereal grains contribute more than half of the global daily calorie intake. However, cereal crops are prone to attack by plant pathogens that cause devastating losses estimated in the billions of dollars, threatening global food and economic security. One of the diseases of small grain cereals th...
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Advances in understanding the biology and epidemiology of barley yellow dwarf virus (bydv)
A tri-trophic network of domesticated grasses (host), various aphids (vector) and barley yellow dwarf virus (pathogen) species has been spread by humans from Eurasia to the rest of the world. Understanding how climate, natural and agricultural landscapes challenge pathogens, vectors, and their na...
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Advances in understanding the biology and epidemiology of rust diseases of cereals
Rust fungi (order: Pucciniales) constitute the largest group of plant parasitic fungi and include many species of agricultural importance. This includes the three wheat rust fungi (Puccinia graminis f. sp. tritici, Puccinia striiformis f. sp. tritici and Puccinia triticina) that have posed a thre...
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Advances in understanding plant root response to nematode attack
Plant parasitic nematodes are damaging pests on all crops grown across the world. They exploit plants using a range of strategies, ranging from simple browsing ectoparasitism to highly complex biotrophic endoparasites. Some nematodes induce the formation of complex feeding structures in the roo...
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Tan spot disease under the lenses of plant pathologists
Necrotrophic plant pathogens pose an important threat to crop production, and many fungi in the Pleosporales have caused the sudden emergence of major epidemics on cereal crops. Tan spot of wheat, caused by Pyrenophora tritici-repentis, is one example, and since its emergence in the 1970s, scient...
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Future outlook on microbial bioprotectants in agriculture
Microbial bioprotectants have the potential to play a major role in the future of crop protection. Agriculture needs to become more sustainable and still provide food security within planetary borders. New technologies and scientific discoveries can unravel the interactions between the plant, the...
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Advances in breeding techniques for durable resistance to spot blotch in cereals
This chapter reviews advances in breeding techniques for durable resistance to spot blotch in cereals. It starts by highlighting the spread, economic importance and the disease cycle of spot blotch. The chapter then goes on to examine the diversity of the pathogen and physiological specialization...
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Global patterns of cereal diseases and the impacts of breeding for host plant resistance
Plant breeding for host plant resistance to pathogens brings together different disciplinary domains, especially genetics and plant pathology. The strategies underpinning plant breeding have therefore, logically, been influenced by a number of paradigms that have dominated the field of disease ma...
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Advances in understanding the epidemiology, molecular biology and control of net blotch and the net blotch barley interaction
Net blotches are the most widely distributed foliar diseases of barley worldwide, causing significant losses in grain yield. They occur as net form net blotch, caused by Pyrenophora teres f. teres and spot form net blotch caused by P. teres f. maculata. Both sexual and asexual reproduction play a...
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Breeding barley for durable resistance to net and spot forms of net blotch
This chapter focuses on breeding barley for durable resistance to net and spot forms of net blotch. It starts by reviewing how Pyrenophora teres f. teres can cause net form net blotch. The chapter then goes on to examine the molecular markers that can be identified to provide resistances to net f...
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The use of trichoderma spp. to control plant diseases
Trichoderma is one of the most studied genera of ascomycetous fungi due to the beneficial effects it has on plants. Trichoderma spp. are involved in the production of cell wall-degrading enzymes and metabolites with antimicrobial activity. It also produces volatile compounds that act together as ...
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Advances in understanding plant root responses to root-feeding insects
This chapter presents an overview of the interactions between plant roots and root-feeding insect herbivores, focussing on changes in growth and physiology and crucially how roots are defended against insect attack. Several reviews have covered the ecology and management of insect root herbivores...
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Advances in production and formulation of commercial microbial bioprotectant products
This chapter reviews the recent commercialization of microbial bioprotectant products containing bacteria, fungi, yeast and bacteriophages for the control of plant diseases. The chapter also summarizes recent development activities of new bioprotectant products based on microorganisms or their me...
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Key issues in the regulation of microbial bioprotectants in the european union: challenges and solutions to achieve more sustainable crop protection
Microbial bioprotectants, like chemical pesticides, are required to pass a risk assessment and risk management procedure prior to use in plant protection, which in many countries is an obstacle for market access, in particular, the European Union. Administrative issues and data requirements, adap...
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Microbial bioprotectants and the marketplace
This chapter focuses on microbial bioprotectants and the marketplace. The chapter begins by first discussing the latest figure in terms of microbial bioprotectants global market value. It also highlights the different types and ways these bioprotectants can be used. The chapter also discusses the...
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Instant insights: fungicide resistance in cereals
This book reviews the development of resistance to the core group of fungicides used throughout global crop production. Chapters explore the mechanisms of resistance, as well as the challenges facing future fungicide development.
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The use of mild viruses for control of plant pathogenic viruses
Plant virus management strategies have largely been limited to the application of hygiene protocols, the control of viral vectors such as insects and nematodes and the use of resistant varieties. However, these approaches are often insufficient to prevent infections. The rapid control of newly em...
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Instant insights: sweetpotato
This specially curated collection features three reviews of current topics and key research in sweetpotato.
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Instant insights: optimising rootstock health
This collection considers the ways in which rootstock health can be optimised to improve agricultural production and fruit quality. Chapters consider recent advances in the development and utilisation of fruit tree rootstocks and how they can be used to mitigate the effects of abiotic stresses.
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Instant insights: advances in fertilisers and fertiliser technology
This book provides a detailed overview of the history, current status and future needs of fertiliser developments in an era where sustainability is of paramount importance. Chapters also review recent advances in the use of fertiliser technologies, such as crop sprayers.
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Instant insights: intercropping
This collection provides a comprehensive overview of the use of intercropping across agriculture, focussing on its use to manage and improve soil health, as well as its use in temperate agroforestry systems to mitigate the sector’s environmental impact.
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Advances in sensor technology for sustainable crop production
This collection reviews key advances in sensor technology, including developments in proximal and remote sensing techniques to measure and monitor crop health, weeds and diseases.
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Advances in understanding plant root water uptake
Water deficit is one of the primary limitations to crop production. Here, we review the role of root and rhizosphere hydraulic processes that affect the ability of a plant to extract water from the soil. Prominent features of rhizosphere hydraulic properties are: root shrinkage, alteration of por...
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Instant insights: artificial intelligence applications in agriculture
This collection considers the variety of applications of Artificial Intelligence in agriculture, highlighting its use in vineyards to improve precision irrigation, as well as its use in harvest-assist platforms in citrus orchards.
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Meeting computer vision and machine learning challenges in crop phenotyping
Use of imaging data has become more profound with the advent of digital cameras, the internet, and automation. With advances of computer vision, actionable information can now be extracted from images to advance the study of plants and their phenotype. In this chapter we document the experience o...
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The role of crop growth models in crop improvement: integrating phenomics, envirotyping and genomic prediction
The chapter highlights the interplay of high throughput phenotyping with crop growth models (CGMs). The chapter shows how crop models can be used to explore knowledge of phenotype, environment and genotype to better understand and predict their complex interrelationships. It describes how CGMs ha...
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Field robots for plant phenotyping
The technology developed within the domain of plant phenotyping provides excellent data-driven tools for plant breeders to use in the collection and description of the relationship between genotyping and environmental factors. Field robots are emerging as sensor-mounted phenotyping platforms, whi...
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Using phenotyping techniques to predict and model grain yield: translating phenotyping into genetic gain
Recent models predict population to peak in 2064 at around 9.7 billion, and then will likely decline to about 8.8 billion by 2100. This requires to increase crop production significantly. Precise phenotyping of the large breeding populations under diverse environments is required to harness the f...
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Automated assessment of plant diseases and traits by sensors: how can digital technologies support smart farming and plant breeding?
Plant diseases pose a significant threat to agriculture. Precise and appropriately timed detection and identification of plant diseases is crucial for disease management, and for the selection of resistant and tolerant varieties. The detection of plant diseases by the human eye is dependent on th...
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Crop management practices for grain sorghum: an overview
Sorghum is a versatile crop, produced in more than 100 countries. However, the productivity of sorghum in developing countries is much lower than that in developed countries, due to their non-adoption of improved crop management practices. Improving the production potential of sorghum in developi...
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Improving soil and crop nutrition management in sorghum cultivation
This chapter provides an overview of the nutrients needed, quantities of nutrients used and concepts of nutrient management commonly utilized in commercial grain sorghum production. The chapter describes how these concepts can also be applied to subsistence production as practised in much of the ...
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Advances in optical analysis for crop phenotyping
Plant phenotyping technologies have been developing rapidly in the last decades. Among various phenotyping technologies, optical sensing such as RGB, multi-spectral and hyperspectral imaging have become popular and widely applied in different applications. In this chapter, these optical sensors a...
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Advances in the use of x-ray computed tomography in crop phenotyping
This chapter addresses the technological parts of a CT system used for crop phenotyping. First, all of the hardware components are described and explained. Thus, it is shown how they are utilized for phenotyping purposes. After that, different system setups and ways of acquiring a CT dataset are ...
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Advances in the use of thermography in crop phenotyping
Thermography is a powerful crop phenotyping tool because it enables contactless temperature measurement of the plant or crop canopy. The plant canopy temperature (CT) reflects transpiration and this can be related to yield, as shown in numerous studies on wheat. There are various CT sensing metho...
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Improving water management in sorghum cultivation
Grain sorghum (Sorghum bicolor [L.] Moench) is a drought tolerant crop that has been grown across the American Great Plains since the early twentieth century, primarily as a feed crop. Sorghum’s deep, fibrous root system provides greater root volume and therefore potential access to a greater soi...
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Advances in postharvest management of cereals and grains
Part 1 of this collection assesses the causes of postharvest losses. Part 2 reviews advances in storage technologies, including management of insect pests using techniques such as fumigation, controlled atmospheres and biopesticides, as well as control of fungal contamination.
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Decision-support systems for pest monitoring and management
This chapter reviews the role of decision support systems (DSS) for pest monitoring and management through information technology like remote sensing, GIS, spectral indices, image-based diagnostics, expert systems and phenology-based degree day models. Applications range from rule-based models to...
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Genome editing of maize
Although most genome editing efforts focus on modifications to gene coding regions, this chapter emphasizes genome editing of the upstream regulatory regions. Thoughtful editing of the promoter region will ultimately lead to improved plants, modified for more precise control of the intensity and ...
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Using talens for genome editing in plants
Transcription activator-like effector nucleases (TALENs) are powerful tools for precise and efficient locus-specific editing. Among the various genome editing tools that were developed prior to the CRISPR/Cas system, TALENs have been the most widely used, and they remain worthy of consideration d...
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Crispr/cas9-mediated genome editing in brassica
CRISPR/Cas9 is a valuable tool for both basic and applied research that has been widely applied to different plant species. In this chapter, we reviewed the application of CRISPR/Cas9 genome editing toolkit in Brassica crops. We also provided a case study in Brassica napus. Collectively, our resu...
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Targeted modification of promoters
Although most genome editing efforts focus on modifications to gene coding regions, this chapter emphasizes genome editing of the upstream regulatory regions. Thoughtful editing of the promoter region will ultimately lead to improved plants, modified for more precise control of the intensity and ...
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Advances in screening plants for edits and off-targets
Genome editing technology greatly accelerates the development of plant molecular research and crop breeding. However, accurately detecting mutations induced by sequence-specific nucleases between large-scale plants produced from transformation become a challenge. This chapter introduces some freq...
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Genome editing in sorghum
Genetic engineering plays a key role in plant functional research and genetic improvement. A novel and powerful gene editing technique, CRISPR/Cas9, which was developed from a type II bacterial immune system, opened up a new era in precision genetic engineering in plants. This technique is based ...
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Double strand break (dsb) repair pathways in plants and their application in genome engineering
In genome engineering, after targeted induction of double strand breaks (DSBs) researchers take advantage of the organisms’ own repair mechanisms to induce different kinds of sequence changes into the genome. Therefore, understanding of the underlying mechanisms is essential. This chapter will re...
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Advances in assembling grna/cas9 constructs in genome editing of plants
This chapter reviews the principles of CRISPR cloning in binary vectors and the different methods and elements employed, including the nucleases alternative to Cas9. It pays special attention to modular cloning strategies and multiplexing tools as well as the engineering of expanded Cas activitie...
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Advances in guide rna design for editing plant genomes using crispr-cas systems
This chapter discusses the general rules for selecting target sites for genome editing using the CRISPR-Cas technology and summarizes the bioinformatic tools that can be used to design sgRNA sequences.
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Advances in the generation of insertion-based genome edits in plants
Tremendous progress has been achieved in the field of gene editing in plants, such as with the use of zinc finger nucleases (ZFNs), transcription activator-like effector nucleases (TALENs), and clustered regularly interspaced short palindromic repeats (CRISPR). Because of the potential advantages...
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Genome editing of tomatoes and other solanaceae
To ensure populations have sufficient, safe, and nutritious food requires a concerted effort that involves politics, economics, farming practices, and enhancement of crops to withstand abiotic and biotic pressures yet remain productive. Keeping pace with population size and stresses imposed by c...
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Seed systems and diversity
Farmers use various seed systems to obtain seeds for their next crop. The diversity of seeds determines, together with other aspects of the farming system, the biodiversity in farmed areas. Conservation strategies for crop genetic resources distinguish ex situ, on-farm and in situ components. The...
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Techniques and key issues in collecting crop wild relatives
The genetic diversity found in populations of crop wild relatives is an essential resource for future crop breeding, but populations are at risk of loss before germplasm has been fully conserved in genebanks. This chapter describes best practice for targeting and identifying species, and review k...
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Key issues facing genebanks in preserving crop genetic diversity ex situ: overview of the range of challenges
This chapter reviews the key issues and challenges facing genebanks in preserving crop genetic diversity ex situ. Local crop genetic diversity is challenged with changes in land use, urbanization, land degradation, changes in agricultural practises, availability of improved varieties, changes in ...
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Monitoring plant genetic resources for food and agriculture
This chapter reviews the methodologies developed to assess the extent of diversity of PGRFA at species, variety, and genetic level and examines the efforts made at global level in monitoring them at different scales. Efforts have been made to halt the loss of biodiversity (including genetic diver...
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Dna-based screening of brassica germplasm for sustainable and enhanced crop production
The Brassica genus contains many agriculturally important oilseed and vegetable crops. Brassica germplasm, including natural accessions and breeding populations, are maintained globally for sustainable management and enhancement of Brassica crop production which is critical to meet the demands of...
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Community-based conservation of crop genetic resources
This chapter explores the current state of research, knowledge and practice of community-based conservation in the context of continued farmer-driven processes and the emergence of diverse external interventions. Autonomous community-based conservation is largely powered by farmer demand for crop...
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Participatory plant breeding programs to optimize use of crop genetic resources
This chapter summarizes a sample of variety evaluation, experimental design, and breeding method innovations that have served as solid approaches for participatory plant breeding (PPB) efforts. With success in PPB comes success in conservation at a local level of useful alleles and allele assembl...
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Improving the nutritional and nutraceutical properties of wheat and other cereals
This volume reviews the key research on the nutritional components of cereals, their interactions with the gut, the way processing can inhibit or optimise their benefits and what it means for developing the next generation of nutritionally-enhanced cereal products.
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The role of the svalbard global seed vault in preserving crop genetic diversity
Genetic material in individual genebanks is potentially vulnerable to being lost (e.g. through conflict or a natural disaster). One important and simple security measure is to ensure that samples of these valuable genetic materials are conserved in more than one place. In this context, the Svalb...
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Dietary fibers in the prevention of type 2 diabetes mellitus
This chapter reviews how dietary fibers can be used to prevent Type 2 diabetes mellitus. Dietary fibers are a heterogenous group of food compounds. The physicochemical properties of dietary fibers determine their effects on gastrointestinal and metabolic health, including effect on gastro-intesti...
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Identifying genes for yield-related traits under drought stress conditions in durum wheat
Abiotic stress strongly affects yield-related traits in durum wheat. In particular drought is one of the main environmental factors reducing grain yield. Hundreds of quantitative trait loci (QTL) have been identified for yield-related traits across different genetic backgrounds and environments. ...
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