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作 者:Mohammad Reza Boorboori Haiyang Zhang
出 处:《Phyton-International Journal of Experimental Botany》2023年第8期2261-2281,共21页国际实验植物学杂志(英文)
基 金:supported by the Anhui Province Large-Scale Online Open Course(MOOC)Demonstration Project(2018mooc428);the Quality Engineering Project of Suzhou University:College of Geographic Information and Energy Agriculture Modern Industry(szxy2021cyxy06);the Key Project of Quality Engineering in Anhui Province(2021jyxm1499);the Scientific Research Platform Project of Suzhou University:Research Center of Non-Point Source Pollution Control and Ecological Remediation(2021XJPT11).
摘 要:Environmental stresses caused by climate change have severely affected agriculture in the present century;Salinity and drought have challenged most forecasts for increased agricultural production in the past few decades,there-fore,different methods that reduce the effect of these stresses on plants have attracted scientists’attention.The effect of beneficial soil microorganisms on soil health and increasing plants’resistance to stresses is one of the solutions that researchers have paid attention to.This study investigated how Trichoderma species can be affected by the molecular and morphophysiological mechanisms of plants and improve their salt and drought resistance.This study also studied the different Trichoderma species’functions to get a better understanding of how they reduce salt and drought stresses.Furthermore,thefindings of this study provide a clear path for future research to focus on the unknown aspects of Trichoderma species andfind effective ways to boost crop production under environmental stresses.
关 键 词:DRYNESS MICROORGANISMS molecular morphophysiology plant resistance saline environment
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