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Titlebook: Genetic Manipulation in Plants for Mitigation of Climate Change; Pawan Kumar Jaiwal,Rana Pratap Singh,Om Parkash Dh Book 2015 Springer Ind

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發(fā)表于 2025-3-21 18:48:50 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Genetic Manipulation in Plants for Mitigation of Climate Change
編輯Pawan Kumar Jaiwal,Rana Pratap Singh,Om Parkash Dh
視頻videohttp://file.papertrans.cn/383/382545/382545.mp4
概述Emphasizes on two much debated challenges of the day, that is, climate change and abiotic stress response of plants.Highlights the current challenges and future perspectives of biotechnology for clima
圖書封面Titlebook: Genetic Manipulation in Plants for Mitigation of Climate Change;  Pawan Kumar Jaiwal,Rana Pratap Singh,Om Parkash Dh Book 2015 Springer Ind
描述.This book presents a detailed overview and critical evaluation of the state of the art and latest approaches in genetic manipulation studies on plants to mitigate the impact of climate change on growth and productivity. Each chapter has been written by experts in plant-stress biology and highlights the involvement of a variety of genes/pathways and their regulation in abiotic stress, recent advances in molecular breeding (identification of tightly liked markers, QTLs/genes), transgenesis (introduction of exogenous genes or changing the expression of endogenous stress- responsive genes) and genomics approaches that have made it easier to identify and isolate several key genes involved in abiotic stress such as drought, water lodging/flooding, extreme temperatures, salinity and heavy-metal toxicity..Food and nutritional security has emerged as a major global challenge due to expanding populations, and cultivated areas becoming less productive as a result of extreme climatic changes adversely affecting the quantity and quality of plants. Hence, there is an urgent need to develop crop varieties resilient to abiotic stress to ensure food security and combat increased input costs, low y
出版日期Book 2015
關(guān)鍵詞-omics; Abiotic stress; Agriculture; Biotechnology; Climate change; Genetic engineering; Molecular Biology
版次1
doihttps://doi.org/10.1007/978-81-322-2662-8
isbn_softcover978-81-322-3809-6
isbn_ebook978-81-322-2662-8
copyrightSpringer India 2015
The information of publication is updating

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,Einteilungsm?glichkeiten für PMO,nd control of oxygen loss; changes in soil redox potential under flooding; Mn and Fe toxicity in waterlogged plants; secondary metabolite toxicity and plant adaptation to organic phytotoxins; MAS approach to plant breeding for flooding stress tolerance; and emerging areas such as elucidating the rol
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Aufgaben und Verantwortlichkeiten des PMO,enous drought-responsive genes or by introducing exogenous genes. Some transgenic rice plants that harbored the drought-responsive genes driven by appropriate promoters showed significantly improved drought resistance without phenotypic changes or yield penalty in the field conditions, suggesting of
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Die entstrukturierte Gesellschaft,ry roles, either directly or indirectly by the interaction with other signalling pathways including ion channel regulation, nitric oxide, reactive oxygen species (ROS) signalling and abscisic acid (ABA).
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,Die durch Properdin bedingte H?molyse,iate reduction of fertiliser input is the only viable solution to this problem, but it is going to trigger low production from farmlands. Therefore, nutrient input reduction should be done in conjunction with the development of low nutrient happy rice varieties. There is enough variability for nutri
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https://doi.org/10.1007/978-3-642-75654-2 review focuses on the effect of climatic parameters on the metal accumulation and tolerance of plants and prospective strategies of genetic manipulation for achieving enhanced remediation potential in relation to climate change.
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https://doi.org/10.1007/978-3-322-93541-0ys and increases susceptibility of plants to herbivore attack by decreasing both constitutive and inducible chemical defenses against certain insects. Conversely, enriched atmospheric CO. increases SA, which increases other chemical defense pathways that are not regulated by JA. Identifying how atmo
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