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Titlebook: Genetic Enhancement of Crops for Tolerance to Abiotic Stress: Mechanisms and Approaches, Vol. I; Vijay Rani Rajpal,Deepmala Sehgal,S.N. Ra

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發(fā)表于 2025-3-21 19:15:47 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Genetic Enhancement of Crops for Tolerance to Abiotic Stress: Mechanisms and Approaches, Vol. I
編輯Vijay Rani Rajpal,Deepmala Sehgal,S.N. Raina
視頻videohttp://file.papertrans.cn/383/382530/382530.mp4
概述Provides up to date comprehensive information on the key biological determinants of plant abiotic stresses with an emphasis on modern crop improvement strategies.Is unique to combine the responses tri
叢書名稱Sustainable Development and Biodiversity
圖書封面Titlebook: Genetic Enhancement of Crops for Tolerance to Abiotic Stress: Mechanisms and Approaches, Vol. I;  Vijay Rani Rajpal,Deepmala Sehgal,S.N. Ra
描述 .Abiotic stresses such as drought (water deficit), extreme temperatures (cold, frost and heat), salinity (sodicity) and mineral (metal and metalloid) toxicity limit productivity of crop plants worldwide and are big threats to global food security. With worsening climate change scenarios, these stresses will further increase in intensity and frequency. Improving tolerance to abiotic stresses, therefore, has become a major objective in crop breeding programs.? A lot of research has been conducted on the regulatory mechanisms, signaling pathways governing these abiotic stresses, and cross talk among them in various model and non-model species. Also, various ‘omics’ platforms have been? utilized to unravel the candidate genes underpinning various abiotic stresses, which have increased our understanding of the tolerance mechanisms at structural, physiological, transcriptional and molecular level. Further, a wealth of information has been generated on the role of chromatinassembly and its remodeling under stress and on the epigenetic dynamics via histones modifications..The book consolidates outlooks, perspectives and updates on the research conducted by scientists in the abovementioned
出版日期Book 2019
關(guān)鍵詞Abiotic stress; Functional mechanisms; Regulatory mechanisms; Signalling pathways; Stress tolerance
版次1
doihttps://doi.org/10.1007/978-3-319-91956-0
isbn_ebook978-3-319-91956-0Series ISSN 2352-474X Series E-ISSN 2352-4758
issn_series 2352-474X
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

書目名稱Genetic Enhancement of Crops for Tolerance to Abiotic Stress: Mechanisms and Approaches, Vol. I影響因子(影響力)




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Epigenetic Response of Plants to Abiotic Stress: Nature, Consequences and Applications in Breeding,onmental stress. Therefore, plants have developed complex mechanisms to survive under these challenging conditions. Tolerance, avoidance, and resistance are the three major strategies followed by plants to counter the recurring biotic and abiotic stresses. These mechanisms involve genes associated w
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Molecular Chaperones: Key Players of Abiotic Stress Response in Plants,erones is induced in response to almost all kinds of stress. However, there are numerous evidences showing that these chaperones are vital for survival even under normal physiological conditions. They act as key modulators in physiological stress response and acquired tolerance. Research carried out
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Role of Chromatin Assembly and Remodeling in Water Stress Responses in Plants,ultitude of biotic and abiotic aggressors that compromise their development and reproduction, plants have developed various survival strategies. These include a plethora of physiological responses as well as developmental and morphological adaptations. Defense response to environmental stresses larg
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Genomic Strategies for Improving Abiotic Stress Tolerance in Crop Plants,, salinity, high temperature and frost are predicted to worsen with the anticipated climate change. Hence, production of stress tolerant crops is urgently required for ensuring future food security. Traditional crop improvement approaches have almost reached their limits and will not provide any fur
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發(fā)表于 2025-3-23 05:55:39 | 只看該作者
Genomics of Arsenic Stress Response in Plants, toxic metalloid and a potent carcinogen. It not only hampers plant development but also causes severe health hazards to mankind once entered into the food chain. Infact, As contamination in the groundwater has turned out to be an epidemic in many regions of South and Southeast Asia. Naturally, As i
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