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类朊蛋白的复杂网络揭示了植物中应激与记忆途径之间的相互作用。

Complex Networks of Prion-Like Proteins Reveal Cross Talk Between Stress and Memory Pathways in Plants.

作者信息

Garai Sampurna, Singla-Pareek Sneh L, Sopory Sudhir K, Kaur Charanpreet, Yadav Gitanjali

机构信息

Plant Stress Biology, International Centre for Genetic Engineering and Biotechnology (ICGEB), New Delhi, India.

Computational Biology Laboratory, National Institute of Plant Genome Research (NIPGR), New Delhi, India.

出版信息

Front Plant Sci. 2021 Jul 26;12:707286. doi: 10.3389/fpls.2021.707286. eCollection 2021.

Abstract

Prions are often considered as molecular memory devices, generating reproducible memory of a conformational change. Prion-like proteins (PrLPs) have been widely demonstrated to be present in plants, but their role in plant stress and memory remains unexplored. In this work, we report the widespread presence of PrLPs in plants through a comprehensive meta-analysis of 39 genomes representing major taxonomic groups. We find diverse functional roles associated with these proteins in various species and term the full complement of PrLPs in a genome as its " In particular, we found the rice prionome being significantly enriched in transposons/retrotransposons (Ts/RTRs) and identified over 60 rice PrLPs that were differentially regulated in stress and developmental responses. This prompted us to explore whether and to what extent PrLPs may build stress memory. By integrating the available rice interactome, transcriptome, and regulome data sets, we could find links between stress and memory pathways that would not have otherwise been discernible. Regulatory inferences derived from the superimposition of these data sets revealed a complex network and cross talk between PrLPs, transcription factors (TFs), and the genes involved in stress priming. This integrative meta-analysis connects transient and transgenerational memory mechanisms in plants with PrLPs, suggesting that plant memory may rely upon protein-based signals in addition to chromatin-based epigenetic signals. Taken together, our work provides important insights into the anticipated role of prion-like candidates in stress and memory, paving the way for more focused studies for validating the role of the identified PrLPs in memory acclimation.

摘要

朊病毒通常被视为分子记忆装置,能产生构象变化的可重复记忆。类朊病毒蛋白(PrLPs)已被广泛证明存在于植物中,但其在植物应激和记忆中的作用仍未得到探索。在这项工作中,我们通过对代表主要分类群的39个基因组进行全面的荟萃分析,报告了PrLPs在植物中的广泛存在。我们发现这些蛋白在不同物种中具有多种功能作用,并将基因组中PrLPs的完整互补体称为其“朊病毒组”。特别是,我们发现水稻朊病毒组在转座子/逆转座子(Ts/RTRs)中显著富集,并鉴定出60多种在应激和发育反应中差异调节的水稻PrLPs。这促使我们探索PrLPs是否以及在多大程度上可能构建应激记忆。通过整合现有的水稻相互作用组、转录组和调控组数据集,我们能够找到应激和记忆途径之间原本无法识别的联系。从这些数据集的叠加中得出的调控推断揭示了PrLPs、转录因子(TFs)和参与应激引发的基因之间的复杂网络和相互作用。这种综合的荟萃分析将植物中的瞬时和跨代记忆机制与PrLPs联系起来,表明植物记忆可能除了基于染色质的表观遗传信号外,还依赖于基于蛋白质的信号。综上所述,我们的工作为类朊病毒候选物在应激和记忆中的预期作用提供了重要见解,为更有针对性地研究验证已鉴定的PrLPs在记忆适应中的作用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30a8/8350573/842f94735ec9/fpls-12-707286-g001.jpg

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