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一种基于植物的改良生物刺激素(叶绿酸铜)在盐胁迫下介导防御反应。

A Plant Based Modified Biostimulant (Copper Chlorophyllin), Mediates Defense Response in under Salinity Stress.

作者信息

Islam Md Tariqul, Ckurshumova Wenzi, Fefer Michael, Liu Jun, Uddin Wakar, Rosa Cristina

机构信息

Department of Plant Pathology and Environmental Microbiology, The Pennsylvania State University, University Park, PA 16802, USA.

Suncor AgroScience, 2489 North Sheridan Way, Mississauga, ON L5K 1A8, Canada.

出版信息

Plants (Basel). 2021 Mar 25;10(4):625. doi: 10.3390/plants10040625.

Abstract

To date, managing salinity stress in agriculture relies heavily on development of salt tolerant plant varieties, a time-consuming process particularly challenging for many crops. Plant based biostimulants (PBs) that enhance plant defenses under stress can potentially address this drawback, as they are not crop specific and are easy to apply in the field. Unfortunately, limited knowledge about their modes of action makes it harder to utilize them on a broader scale. Understanding how PBs enhance plant defenses at cellular and molecular levels, is a prerequisite for the development of sustainable management practices utilizing biostimulants to improve crop health. In this study we elucidated the protective mechanism of copper chlorophyllin (Cu-chl), a PB, under salinity stress. Our results indicate that Cu-chl exerts protective effects primarily by decreasing oxidative stress through modulating cellular HO levels. Cu-chl treated plants increased tolerance to oxidative stress imposed by an herbicide, methyl viologen dichloride hydrate as well, suggesting a protective role against various sources of reactive oxygen species (ROS). RNA-Seq analysis of Cu-chl treated seedlings subjected to salt stress identified genes involved in ROS detoxification, and cellular growth.

摘要

迄今为止,农业中应对盐分胁迫主要依赖于培育耐盐植物品种,这是一个耗时的过程,对许多作物来说尤其具有挑战性。能够在胁迫条件下增强植物防御能力的植物源生物刺激素(PBs)可能会解决这一缺点,因为它们不具有作物特异性且易于在田间施用。不幸的是,由于对其作用方式了解有限,使得它们难以在更广泛的范围内得到应用。了解PBs如何在细胞和分子水平上增强植物防御能力,是利用生物刺激素制定可持续管理措施以改善作物健康状况的先决条件。在本研究中,我们阐明了一种PBs——叶绿酸铜(Cu-chl)在盐分胁迫下的保护机制。我们的结果表明,Cu-chl主要通过调节细胞内HO水平来降低氧化应激,从而发挥保护作用。用Cu-chl处理的植物对除草剂二氯甲基紫精施加的氧化胁迫也具有更高的耐受性,这表明其对各种活性氧(ROS)来源都具有保护作用。对经盐胁迫处理的用Cu-chl处理的幼苗进行RNA测序分析,确定了参与ROS解毒和细胞生长的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58fb/8064443/054d0c7cafa8/plants-10-00625-g001.jpg

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