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Titlebook: Biotechnological Advances for Disease Tolerance in Plants; Kashmir Singh,Ravneet Kaur,Rupesh Deshmukh Book 2024 The Editor(s) (if applicab

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發(fā)表于 2025-3-21 16:04:29 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biotechnological Advances for Disease Tolerance in Plants
影響因子2023Kashmir Singh,Ravneet Kaur,Rupesh Deshmukh
視頻videohttp://file.papertrans.cn/189/188642/188642.mp4
發(fā)行地址Covers the recent development in the field of Molecular Biology regarding plant diseases.Explains the present knowledge for the enhancement of disease resistance in crop plants.Includes Genome editing
圖書(shū)封面Titlebook: Biotechnological Advances for Disease Tolerance in Plants;  Kashmir Singh,Ravneet Kaur,Rupesh Deshmukh Book 2024 The Editor(s) (if applicab
影響因子This book covers the biotechnological advances being used for the understanding of plant diseases and the subsequent enhancement of disease resistance in crop plants. Chapters are focused on recent advances in sequencing technologies, computational resources and genomics tools useful for the identification of loci governing disease resistance. In addition, emphasis is given to novel approaches like genomic selection for achieving significant genetic gain for quantitative disease resistance. The book thoroughly describes sequencing-based approaches like whole genome sequencing, resequencing, and transcriptome profiling being explored for the understanding of disease resistance mechanisms. Finally, several chapters systematically describing the utilities and concerns of high-end technologies like genome-editing are provided. Simplified Illustrations are provided in every chapter to explain different biotechnological approaches and strategies. The book will help to better explore the biotechnological advances in development of disease resistant crop varieties.?.?.
Pindex Book 2024
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Imperative Role of ,-Genes and Associated Molecular Mechanisms in Plant Disease Resistance,ich plants have evolved Effector Triggered Immunity (ETI), which is the second layer of defense and involves the expression of resistance genes (.-genes). The first ever .-gene was cloned from . following where several others were cloned from model and crop plants which have revealed the occurrence
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Implication of Phytohormonal Signaling and Their Molecular Cross Talk During Disease Resistance in he absence of stress and lessen the chance that prospective assailants would figure out how to counteract the plants’ biochemical defense system, plants evolved a hormone-based defensive mechanism. Plants that have been primed are more receptive to future pathogen assaults. Priming is a comparativel
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Integrated Omics Approaches for Plant Disease Resistance,uld serve the purpose of identifying specifically trait-oriented genes complemented with resistance against the pathogen. These findings when combined with genome editing can boost the defense system of the host plant against pathogenic invasions and result in desired agronomic and yield traits.
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Biotechnological Tools for Disease Diagnostic,ng-based molecular diagnostic approaches have proved to be excellent choices for phytopathogen detection. But these techniques are laborious, time-consuming, and costly and need well-equipped laboratories and trained personnel. Therefore, new tools for point-of-care diagnostics that are rapid, speci
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Genome-Editing Advances for Disease Resistance in Plants, of the precise gene editing systems which has opened up new possibilities of gene editing for crop improvement with desired traits. In this chapter, various gene editing approaches and their advancements along with the applications have been discussed.
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