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Titlebook: Salt Stress, Microbes, and Plant Interactions: Causes and Solution; Volume 1 Mohd Sayeed Akhtar Book 2019 Springer Nature Singapore Pte Ltd

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楼主: 召唤
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Plant Survival and Tolerance Under High Salinity: Primary and Secondary Cell Wall-Sensing Mechanismding to tolerance. Thus, cell wall plays an active role in response to exogenous stimuli and constitutes a step forward in demarcating the complex pathways regulating the response of plants to salt stress. Understanding how salinity stress factors influence primary and secondary cell wall growth and
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Heavy Metal Stress and Tolerance in Plants Mediated by Rhizospheric Microbes,l washing with physical or chemical methods; excavation, i.e., the physical elimination from polluted sites; and in situ fixation, the addition of chemicals to stabilize and alter heavy metals to a state that cannot be absorbed by plants. Still, these chemical and physical techniques are not very ef
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Use of Nanoparticles in Alleviating Salt Stress,, precision farming, water use efficiency, crop protection against pest and diseases by molecular tools and techniques, and environmental protection. Thus, the aim of the chapter is to provide an update on the use of various types of nanoparticles for alleviating the salt stress and also to understa
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Soil-Plant and Microbial Interaction in Improving Salt Stress,the PGPRs have also the aptitude to produce phytohormone, enzyme acetyl-CoA carboxylase deaminase, solubilize and bind nutrients, and, therefore, assist plants to acclimatize with various environmental stresses. Osmotic stress and noxious ion produced due to salinity induce the unacceptable plant de
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Plants Growing Under Salinity Stress Can Be Eased Through Mycorrhizal Association,tic relationship between fungi and plants and plays a pivotal role in nutrient cycling and stress tolerance. Under saline conditions, mycorrhizal association significantly relieves the salt stress by improving physio-biochemical features that could be primarily attributed to net increase in photosyn
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Halophilic Microbe Interactions with Plants to Mitigate Salt Stress,th-promoting (PGP) bacteria that thrive in association with roots of the plants alleviate salt stress for improved plant growth and yield through their own mechanisms of osmotolerance, osmolyte accumulation, nonsymbiotic nitrogen fixation, solubilization and mineralization of essential plant nutrien
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is also critical for lipoprotein metabolism. Apolipoprotein B48 is obligatory for the secretion of chylomicrons. It is formed from an RNA-edited apo-B mRNA in which codon 2153 has been converted from a CAA (glutamine) codon to a premature UAA (stop) codon. The first cytosine in this codon is deamin
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