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Titlebook: Advances in Trichoderma Biology for Agricultural Applications; N. Amaresan,A. Sankaranarayanan,Irina S. Druzhinin Book 2022 The Editor(s)

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發(fā)表于 2025-3-21 19:52:33 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Advances in Trichoderma Biology for Agricultural Applications
影響因子2023N. Amaresan,A. Sankaranarayanan,Irina S. Druzhinin
視頻videohttp://file.papertrans.cn/151/150043/150043.mp4
發(fā)行地址Enriches understanding of the novel mechanisms of Trichoderma.Elucidates the important role of Trichoderma in agroecology.Maximizes reader insight into the importance of Trichoderma negative impact
學(xué)科分類Fungal Biology
圖書封面Titlebook: Advances in Trichoderma Biology for Agricultural Applications;  N. Amaresan,A. Sankaranarayanan,Irina S. Druzhinin Book 2022 The Editor(s)
影響因子.Advances in Trichoderma Biology for Agricultural Applications. covers the beneficial properties of Trichoderma in enhancing global agricultural productivity. Trichoderma are biotechnologically significant fungi, being widely used both agriculturally and industrially. In many cases Trichoderma are also a potential drug source of clinical importance. In recent years, driven by advances in genetics and genomics, research on these fungi has opened new avenues for its various applications. This book covers i) Current state of Trichoderma taxonomy, and species identification, ii) Trichoderma and plant-pathogenic fungi interactions, iii) Trichoderma interactions with plants, including rhizosphere competence of Trichoderma, antagonistic potentials, plant growth promotion, and management of various abiotic stresses in plants, iv) Practical aspects of Trichoderma commercialization in agriculture, v) Biosynthesis of metal-based nanoparticles and its application, and vi) Negative impact of Trichoderma strains in the environments..Reading this book should kindle further discussions among researchers working in fungal biotechnology, microbiology, agriculture, environmental science, forestry, an
Pindex Book 2022
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發(fā)表于 2025-3-21 22:56:22 | 只看該作者
The Current State of , Taxonomy and Species Identification All molecular identification results require in silico validation and biological verification. Similarly, . spp. cannot be identified by phylogenetic analysis without considering the sequence similarity values to the complete set of closely related species. Due to the high number of cryptic and clo
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The Role of Secondary Metabolites in Rhizosphere Competence of ,y result in increased foliar biomass and root branching that promotes soil nutrient and water uptake. . spp. are able to colonize roots with the participation of specific fungal enzymes, which leads also to the activation of plant immunity after the accumulation of reactive oxygen species, salicylic
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Management of Salinity Stress by?the Application of ,ng the salinity stress belongs to .. ., . f. sp. ., ., ., ., ., ., ., ., ., ., and .. Results of in vitro studies revealed several species of . has tolerance to salt in the medium. Liquid suspensions and powder formulations of . were tried by applying directly to soil or seeds to manage the salinity
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Tolerance to and Alleviation of Abiotic Stresses in Plants Mediated by?, spp.the plant species most studied. Salt, drought, and heavy metals were the stress agents most frequently investigated. As a direct consequence of the studied stresses, a recurrent mechanism of action found for . spp. was the production and accumulation of proline. The plant genes identified as related
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