非生物成分
兼性
气候变化
非生物胁迫
生态系统
微生物菌剂
生物
有机体
营养物
农业
温室气体
生态学
环境科学
园艺
基因
生物化学
古生物学
接种
作者
Apekcha Bajpai,Himanshu Mahawar,Garima Dubey,Nagvanti Atoliya,Rakesh Parmar,Mayanglambam Homeshwari Devi,Bharati Kollah,Santosh Ranjan Mohanty
标识
DOI:10.1002/jobm.202200087
摘要
Abstract Apparently, climate change is observed in form of increased greenhouse gases (CH 4 , CO 2 , N 2 O, CFC), temperature (0.5–1°C), and UV radiations (UV B and UV C). It is affecting every aspect of ecosystem functioning; however, terrestrial crops are the most vulnerable group and crop productivity largely remains a challenge. Due to climate change, seed yield and nutrient depletion are inevitable in future scenarios. To overcome this problem microbial groups that exhibit plant growth promoting attributes and provide protection against environmental stress should be studied. One such group is the pink pigmented facultative methylotrophs (PPFMs) that can induce overall fitness to plants. PPFMs are involved in phosphorous mineralization, siderophore, ACC deaminase, phytohormone production, and assimilation of greenhouse gases. Additionally, these organisms can also resist harmful UV radiations effectively as they possess polyketide synthases that could serve as source of novel bioactives that can protect plant from abiotic stress. The review article comprehensively highlights the multifunctional traits of PPFMs and their role in mitigating climate change with an aim to use this important organism as microbial inoculants for sustainable agriculture under climate‐changing scenarios.
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