弹性(材料科学)
压力(语言学)
生物
计算生物学
计算机科学
物理
语言学
哲学
热力学
作者
Muhammad Awais Zahid,Nam Phuong Kieu,Frida Meijer Carlsen,Marit Lenman,Naga Charan Konakalla,Huanjie Yang,Sunmoon Jyakhwa,Jozef Mravec,Ramesh R. Vetukuri,Bent Larsen Petersen,Svante Resjö,Erik Andréasson
标识
DOI:10.1038/s41467-024-49584-4
摘要
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 2+ 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.
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