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通过删除 Parakletos 增强马铃薯的抗压能力。

Enhanced stress resilience in potato by deletion of Parakletos.

机构信息

Department of Plant Protection Biology, Swedish University of Agricultural Sciences, 234 22, Lomma, Sweden.

Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg C, Denmark.

出版信息

Nat Commun. 2024 Jun 18;15(1):5224. doi: 10.1038/s41467-024-49584-4.

Abstract

Continued climate change impose multiple stressors on crops, including pathogens, salt, and drought, severely impacting agricultural productivity. Innovative solutions are necessary to develop resilient crops. Here, using quantitative potato proteomics, we identify Parakletos, a thylakoid protein that contributes to disease susceptibility. We show that knockout or silencing of Parakletos enhances resistance to oomycete, fungi, bacteria, salt, and drought, whereas its overexpression reduces resistance. In response to biotic stimuli, Parakletos-overexpressing plants exhibit reduced amplitude of reactive oxygen species and Ca signalling, and silencing Parakletos does the opposite. Parakletos homologues have been identified in all major crops. Consecutive years of field trials demonstrate that Parakletos deletion enhances resistance to Phytophthora infestans and increases yield. These findings demark a susceptibility gene, which can be exploited to enhance crop resilience towards abiotic and biotic stresses in a low-input agriculture.

摘要

持续的气候变化给农作物带来了多种胁迫,包括病原体、盐和干旱,严重影响了农业生产力。有必要开发具有弹性的作物来应对这些挑战。在这里,我们使用定量马铃薯蛋白质组学技术,鉴定了 Parakletos,这是一种类囊体蛋白,与易感性有关。我们发现,Parakletos 的敲除或沉默增强了对卵菌、真菌、细菌、盐和干旱的抗性,而其过表达则降低了抗性。对生物刺激的响应,过表达 Parakletos 的植物表现出活性氧和 Ca 信号幅度降低,沉默 Parakletos 则相反。Parakletos 的同源物已在所有主要作物中被鉴定出来。连续多年的田间试验表明,Parakletos 的缺失增强了对晚疫病菌的抗性并提高了产量。这些发现标志着一个易感性基因的出现,它可以被利用来增强作物对非生物和生物胁迫的弹性,从而实现低投入农业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba3e/11189580/7c99bb20a611/41467_2024_49584_Fig1_HTML.jpg

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