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Titlebook: Bioinoculants: Biological Option for Mitigating global Climate Change; Surender Singh,Radha Prasanna,Kumar Pranaw Book 2023 The Editor(s)

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发表于 2025-3-21 16:14:16 | 显示全部楼层 |阅读模式
期刊全称Bioinoculants: Biological Option for Mitigating global Climate Change
影响因子2023Surender Singh,Radha Prasanna,Kumar Pranaw
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发行地址Covers state of the art and comprehensive information on various bioinoculants.Highlights the significant role of bioinoculants in the mitigation of changing climate.Covers information on diverse crop
图书封面Titlebook: Bioinoculants: Biological Option for Mitigating global Climate Change;  Surender Singh,Radha Prasanna,Kumar Pranaw Book 2023 The Editor(s)
影响因子. ..This edited book covers various bioinoculants for sustainable crop production under the changing global climate. The book envisages a compilation of articles relevant to the current status of production and use of novel microbial inoculants for different crops and highlights their role in mitigating global climate challenges. These include nutrient deficiencies, salinity, drought, and emerging pathogens. In addition, success stories and commercialization aspects are also discussed...Growing environmental concerns related to climate change can potentially decrease the global yield capacity of agricultural systems. Agricultural productivity is severely affected by major biotic and abiotic factors. The phytomicrobiome plays a critical role in the survival of the holobiont, particularly for plants growing in extreme environments. The use of microbial-based agricultural inputs has a long history, beginning with a broad-scale rhizobial inoculation of legumes in the early twentieth century. Microbial inoculants are considered one of the best and most effective strategies for sustainable agriculture under climate change, and a viable solution to meet the twin challenges of global food s
Pindex Book 2023
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https://doi.org/10.1007/978-3-211-69501-2ing population. Climate change-induced soil degradation and subsequent crop loss lead to unfavorable effects on food security and economic issues, besides resulting in competition for available land resources. Though research efforts toward protecting soil health through several integrated approache
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Keyhole Approaches in Neurosurgeryemperature. If these predictions come true, significant changes in the geographical range of cropping systems are foreseen due to harmful endemic species of weed and increased susceptibility to exotic weed incursions. Characterizing the plant–microbe interactions and associated environmental factors
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https://doi.org/10.1007/978-3-211-69501-2ce agricultural productivity while reversing soil fertility loss and land degradation. Plant growth-promoting microorganisms, which represent the group of microbes present in the active zone of the root and enhance plant growth and yield, may offer to sustain soil health and maintain the soil ecosys
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Keyhole Approaches in Neurosurgerye of plants and form symbiotic associations with legumes. The rhizobia–legume plant symbiotic interaction is a pivotal part of the input of fixed nitrogen in the agroecosystems. However, rhizobia are only a component of the plant microbiome, which is helping the plant cope with environmental stresse
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https://doi.org/10.1007/978-3-211-69501-2nal imbalance, and reduced nutrient mobilisation. High salinity affects microbial diversity and functioning, besides modulating physicochemical properties of soil, thereby, depleting soil health. The agricultural area under salinity is increasing very rapidly and is anticipated to increase to nearly
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https://doi.org/10.1007/978-3-211-69501-2er such conditions, biofertilizers/bioinoculants play an important role in providing nutrients and other plant growth-promoting substances in an eco-friendly manner. Cyanobacteria are ecologically versatile microorganisms, occupying diverse habitats, from hot deserts to deep oceans and from saline l
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