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通过对……中PIP1和PIP2的功能研究揭示的PIP肽家族的结构与功能差异

Structure and functional divergence of PIP peptide family revealed by functional studies on PIP1 and PIP2 in .

作者信息

Yu Xiao-Song, Wang Hong-Run, Lei Fei-Fan, Li Rui-Qi, Yao Hui-Peng, Shen Jin-Bo, Ain Noor-Ul, Cai Yi

机构信息

College of Life Sciences, Sichuan Agricultural University, Yaan, Sichuan, China.

State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou, Zhejiang, China.

出版信息

Front Plant Sci. 2023 Nov 24;14:1208549. doi: 10.3389/fpls.2023.1208549. eCollection 2023.

Abstract

PAMP-induced secreted peptide (PIP), one of the small post-translationally modified peptides (PTMPs), plays a crucial role in plant development and stress tolerance. However, little is known about functional divergence among this peptide family. Here, we studied the evolution of the PIP family in 23 plant species (10 monocotyledons and 13 dicotyledons from 7 families) and their functional divergence in Arabidopsis. A total of 128 putative PIP precursors were identified and classified into two subfamilies through phylogenetic analysis. Functional studies on AtPIP1 which represents Clade I family and AtPIP2 which represents Clade II family have shown that AtPIP2 displayed stronger immunity induction activity but weaker root growth inhibition than AtPIP1 in Arabidopsis. Transcriptome analysis of Arabidopsis seedlings treated with AtPIP1 and AtPIP2 showed that differential genes for both polypeptides were significantly enriched in similar plant defense pathways. However, Co-expression and Protein-protein interaction (PPI) analysis showed that the functions of AtprePIP2 co-expressed genes were more enriched in plant defense pathways than AtprePIP1. Molecular docking results show that AtPIP1 binds to RLK7 receptor with a more stable free energy and less binding area than AtPIP2, while hydrogen bond transfer occurs at the SGP motif position. The above results suggest that the PIP family have undergone functional divergence during evolution. Collectively, this work illustrates the relationship between PIP structure and function using Arabidopsis PIP as an example, and provides new insights into the current understanding between growth inhibition and immune responses which may be correlated but not fully coupled.

摘要

病原体相关分子模式诱导分泌肽(PIP)是翻译后修饰的小肽(PTMPs)之一,在植物发育和胁迫耐受性中起关键作用。然而,关于该肽家族成员间的功能差异知之甚少。在此,我们研究了23种植物(来自7个科的10种单子叶植物和13种双子叶植物)中PIP家族的进化及其在拟南芥中的功能差异。通过系统发育分析共鉴定出128个推定的PIP前体,并将其分为两个亚家族。对代表I类家族的AtPIP1和代表II类家族的AtPIP2进行功能研究表明,在拟南芥中,AtPIP2表现出更强的免疫诱导活性,但对根生长的抑制作用比AtPIP1弱。对用AtPIP1和AtPIP2处理的拟南芥幼苗进行转录组分析表明,这两种多肽的差异基因在相似的植物防御途径中显著富集。然而,共表达和蛋白质-蛋白质相互作用(PPI)分析表明,与AtprePIP1相比,AtprePIP2共表达基因的功能在植物防御途径中更富集。分子对接结果表明,AtPIP1与RLK7受体结合时,自由能更稳定,结合面积比AtPIP2小,同时在SGP基序位置发生氢键转移。上述结果表明,PIP家族在进化过程中发生了功能分化。总的来说,这项工作以拟南芥PIP为例阐明了PIP结构与功能之间的关系,并为目前对生长抑制和免疫反应之间可能相关但未完全耦合的理解提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6388/10704477/2fb05ed0ed27/fpls-14-1208549-g001.jpg

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