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启动子顺式元件分析揭示了αVPE在……干旱胁迫响应中的功能。

Promoter Cis-Element Analyses Reveal the Function of αVPE in Drought Stress Response of .

作者信息

Tang Chu-Nie, Wan Abdullah Wan Muhamad Asrul Nizam, Wee Chien-Yeong, Balia Yusof Zetty Norhana, Yap Wai-Sum, Cheng Wan-Hee, Baharum Nadiya Akmal, Ong-Abdullah Janna, Loh Jiun-Yan, Lai Kok-Song

机构信息

Department of Cell and Molecular Biology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.

Biotechnology and Nanotechnology Research Centre, Malaysian Agricultural Research and Development Institute, Serdang 43400, Selangor, Malaysia.

出版信息

Biology (Basel). 2023 Mar 10;12(3):430. doi: 10.3390/biology12030430.

Abstract

Vacuolar processing enzyme (VPE) is a cysteine protease responsible for vacuolar proteins' maturation and regulation of programmed cell death (PCD). Four isoforms of VPEs were identified previously, but only the functions of βVPE, γVPE, and δVPE were determined. The specific function of a gene is linked to the cis-acting elements in the promoter region. A promoter analysis found repetitive drought-related cis-elements in αVPE, which highlight its potential involvement in drought regulation in . The further co-expression network portraying genes interacting with substantiated its drought-regulation-related function. Expression of was upregulated after drought treatment in . To confirm the role of αVPE, a loss of function study revealed that αVPE knockout mutants remained green compared with WT after drought treatment. The mutants had reduced proline activity, decreased sucrose content, and lower MDA content, but increased photosynthetic pigments, indicating that αVPE negatively regulates drought tolerance in Taken together, our findings serve as important evidence of the involvement of αVPE in modulating drought tolerance in .

摘要

液泡加工酶(VPE)是一种半胱氨酸蛋白酶,负责液泡蛋白的成熟和程序性细胞死亡(PCD)的调控。先前已鉴定出VPE的四种同工型,但仅确定了βVPE、γVPE和δVPE的功能。基因的特定功能与启动子区域中的顺式作用元件相关。一项启动子分析在αVPE中发现了与干旱相关的重复顺式元件,这突出了其在[具体物种]干旱调控中的潜在作用。进一步描绘与[具体物种]相互作用基因的共表达网络证实了其与干旱调控相关功能。在[具体物种]中,干旱处理后[具体物种]的表达上调。为了证实αVPE的作用,一项功能丧失研究表明,干旱处理后,与野生型相比,αVPE基因敲除突变体仍保持绿色。突变体脯氨酸活性降低,蔗糖含量减少,丙二醛含量降低,但光合色素增加,这表明αVPE对[具体物种]的耐旱性起负调控作用。综上所述,我们的研究结果为αVPE参与调节[具体物种]的耐旱性提供了重要证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7767/10045073/b51e9b9b9dc3/biology-12-00430-g001.jpg

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