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Titlebook: Microorganisms in Saline Environments: Strategies and Functions; Bhoopander Giri,Ajit Varma Book 2019 Springer Nature Switzerland AG 2019

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發(fā)表于 2025-3-21 18:29:34 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Microorganisms in Saline Environments: Strategies and Functions
編輯Bhoopander Giri,Ajit Varma
視頻videohttp://file.papertrans.cn/634/633365/633365.mp4
概述Highlights the impact of salinity on microbial and plant life/health.Gathers most recent knowleghe of microbial ecology of saline habitats.Gives overview on plant-microbe interactions under saline con
叢書名稱Soil Biology
圖書封面Titlebook: Microorganisms in Saline Environments: Strategies and Functions;  Bhoopander Giri,Ajit Varma Book 2019 Springer Nature Switzerland AG 2019
描述.This book gathers the latest findings on the microbial ecology of saline habitats, plant-microbe interactions under saline conditions, and saline soil reclamation for agricultural use. The content is divided into four main parts: Part I outlines the de?nition of salinity, its genesis and?impacts, and microbial diversity in saline habitats. Part II deals with impact of?salinity on microbial and plant life/health. Part III highlights plant – microbe interactions in saline environments, and Part IV describes strategies for mitigation and reclamation of?saline soils.?.The salinization of arable land is steadily increasing in many parts of the world. An excessive concentration of soluble salts (salinity) in soils or irrigation water adversely affects plant growth and survival. This problem is exacerbated in arid and semiarid areas due to their low precipitation and high evaporation rates. In turn, poor management practices and policies for using river water forthe irrigation of agriculture crops often lead to the secondary salinization of soils..Considering the growing demands of a constantly expanding population, understanding the microbial ecology and interactions under saline condit
出版日期Book 2019
關(guān)鍵詞saline environments; salt stress; soil salinity; saline conditions; saline soils; salinity stress; salt to
版次1
doihttps://doi.org/10.1007/978-3-030-18975-4
isbn_softcover978-3-030-18977-8
isbn_ebook978-3-030-18975-4Series ISSN 1613-3382 Series E-ISSN 2196-4831
issn_series 1613-3382
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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Microbial Ecology of Saline Ecosystemsbial form of life is found over an extremely wide range of salt concentrations, from that of fresh water to hypersaline environments. Halophilic microorganisms are microbes that live in habitats of high ionic strength, and these organisms cope with hyperosmotic stress by utilizing various strategies
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Microbial Diversity of Saline Habitats: An Overview of Biotechnological Applicationsironments give rise to unusual adaptive properties in microbes, which could be exploited for biotechnological applications. Current advances in technology such as culture-based methods and metagenomics have facilitated the detection and study of distribution of microorganisms in extreme saline habit
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Impact of Salinity Stress on Growth and Development of Aquatic Fungial communities in terrestrial systems, modifying considerably a number of important ecosystem processes, including turnover of organic matter and nutrients acquisition. However, complex effects of salinity remain poorly understood, especially for non-model aquatic microbial assemblages, which accoun
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Cellular Mechanisms of Plant Salt Toleranceons. Understanding how plants cope with salt stress is therefore imperative. As the glycophytes and halophytes have salt tolerance mechanisms occur at the cellular level, understanding cellular mechanisms of salt tolerance becomes indispensable for crop improvement programs. Recent challenges such a
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Microorganisms Aiding Existence and Efficiency of Plants in Saline Environment: What We Know and Wharonment and, in some cases, requiring a saline soil for growth, none of the cultivated crops are halophytes. Microorganisms, being ubiquitous, are present everywhere, and a large number of salt-tolerant microbes have been found to be associated with halophytes. Many of them are involved in providing
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Effect of Salinity on Physiological Processes in Plantsop yields and productivity significantly. The process of soil salinization can be majorly attributed to natural contributors such as weathering of parental rocks, oceanic salt deposition and groundwater table fluctuations, while the common anthropogenic factors contributing to salinization include i
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