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鉴定新型小分子应激反应调节剂 1 和 2,它们影响植物非生物胁迫信号。

Identification of the Novel Small Compound Stress Response Regulators 1 and 2 That Affect Plant Abiotic Stress Signaling.

机构信息

Department of Bio-Health Convergence, Duksung Women's University, Seoul 01369, Republic of Korea.

Department of Biotechnology, Duksung Women's University, Seoul 01369, Republic of Korea.

出版信息

Biomolecules. 2024 Sep 19;14(9):1177. doi: 10.3390/biom14091177.

Abstract

Abiotic stresses, such as drought, salinity, and extreme temperatures, limit plant growth and development, reducing crop yields. Therefore, a more comprehensive understanding of the signaling mechanisms and responses of plants to changing environmental conditions is crucial for improving sustainable agricultural productivity. Chemical screening was conducted to find novel small compounds that act as regulators of the abiotic stress signaling pathway using the ABA-inducible transgenic reporter line. Small molecules called stress response regulators (SRRs) were isolated by screening a synthetic library composed of 14,400 small compounds, affecting phenotypes such as seed germination, root growth, and gene expression in response to multiple abiotic stresses. Seeds pretreated with SRR compounds positively affected the germination rate and radicle emergence of Arabidopsis and tomato plants under abiotic stress conditions. The SRR-priming treatment enhanced the transcriptional responses of abiotic stress-responsive genes in response to subsequent salt stress. The isolation of the novel molecules SRR1 and SRR2 will provide a tool to elucidate the complex molecular networks underlying the plant stress-tolerant responses.

摘要

非生物胁迫,如干旱、盐度和极端温度,限制了植物的生长和发育,降低了作物产量。因此,更全面地了解植物对环境变化的信号机制和响应对于提高可持续农业生产力至关重要。使用 ABA 诱导的转基因报告系进行了化学筛选,以寻找新型小分子,作为非生物胁迫信号通路的调节剂。通过筛选由 14400 种小分子组成的合成文库,分离出了称为应激反应调节剂 (SRR) 的小分子,这些小分子影响多种非生物胁迫下的表型,如种子萌发、根生长和基因表达。SRR 化合物预处理的种子在非生物胁迫条件下,可正向影响拟南芥和番茄植株的发芽率和胚根伸长。SRR 引发处理增强了对随后盐胁迫的非生物胁迫应答基因的转录响应。新型分子 SRR1 和 SRR2 的分离将为阐明植物耐应激反应的复杂分子网络提供工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a36f/11429841/20a5ee362d1d/biomolecules-14-01177-g001.jpg

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