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叶绿体延伸因子通过同时促进产量和防御来打破生长-免疫权衡。

Chloroplast elongation factors break the growth-immunity trade-off by simultaneously promoting yield and defence.

机构信息

National Key Laboratory for Germplasm Innovation and Utilization of Horticultural Crops, Huazhong Agricultural University (HZAU), Wuhan, China.

Hubei Hongshan Laboratory (HZAU), Wuhan, China.

出版信息

Nat Plants. 2024 Oct;10(10):1576-1591. doi: 10.1038/s41477-024-01793-x. Epub 2024 Sep 19.

Abstract

Chloroplasts regulate plant development and immunity. Here we report that potato chloroplast elongation factors StTuA and StTuB, targeted by Phytophthora infestans RXLR effector Pi22926, positively regulate immunity and growth. Plants expressing Pi22926, or silenced for TuA/B, show increased P. infestans susceptibility and decreased photosynthesis, plant growth and tuber yield. By contrast, StTuA/B overexpression reduces susceptibility, elevates chloroplast-derived reactive oxygen species production and increases photosynthesis and potato tuber yield by enhancing chloroplast protein translation. Another plant target of Pi22926, StMAP3Kβ2, interacts with StTuB, phosphorylating it to promote its translocation into chloroplasts. However, Pi22926 attenuates StTuB association with StMAP3Kβ2 and phosphorylation. This reduces StTuB translocation into chloroplasts, leading to its proteasome-mediated turnover in the cytoplasm. We uncover new mechanisms by which a pathogen effector inhibits immunity by disrupting key chloroplast functions. This work shows that StTuA/B break the growth-immunity trade-off, promoting both disease resistance and yield, revealing the enormous potential of chloroplast biology in crop breeding.

摘要

叶绿体调控植物的发育和免疫。在这里,我们报告说,被晚疫病菌效应物 Pi22926 靶向的马铃薯叶绿体延伸因子 StTuA 和 StTuB 正向调控免疫和生长。表达 Pi22926 或沉默 TuA/B 的植物对晚疫病菌的敏感性增加,光合作用、植物生长和块茎产量降低。相比之下,StTuA/B 的过表达降低了对病原体的敏感性,增加了叶绿体来源的活性氧物质的产生,并通过增强叶绿体蛋白翻译提高了光合作用和马铃薯块茎产量。晚疫病菌的另一个靶标 StMAP3Kβ2 与 StTuB 相互作用,磷酸化它以促进其向叶绿体的易位。然而,Pi22926 减弱了 StTuB 与 StMAP3Kβ2 的结合和磷酸化。这减少了 StTuB 向叶绿体的易位,导致其在细胞质中被蛋白酶体介导的降解。我们揭示了一种病原体效应物通过破坏关键的叶绿体功能来抑制免疫的新机制。这项工作表明,StTuA/B 打破了生长-免疫的权衡,促进了抗病性和产量的提高,揭示了叶绿体生物学在作物育种中的巨大潜力。

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