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甘蔗 SsWRKY1 转录因子增强转基因拟南芥的耐旱性,并与 21 个潜在蛋白相互作用,调节甘蔗的耐旱性。

The SsWRKY1 transcription factor of Saccharum spontaneum enhances drought tolerance in transgenic Arabidopsis thaliana and interacts with 21 potential proteins to regulate drought tolerance in S. spontaneum.

机构信息

College of Agronomy and Biotechnology, Yunnan Agricultural University, Kunming, Yunnan, 650201, People's Republic of China.

Institute for Bio-resources Research and Development of Central Yunnan Plateau, Chuxiong Normal University, Chuxiong, Yunnan, 675000, People's Republic of China.

出版信息

Plant Physiol Biochem. 2023 Jun;199:107706. doi: 10.1016/j.plaphy.2023.107706. Epub 2023 Apr 15.

Abstract

In this study, we characterized a WRKY family member gene, SsWRKY1, which is located in the nucleus and contains multiple stress-related cis-acting elements. In addition, constructed SsWRKY1-overexpressing Arabidopsis thaliana had higher antioxidant enzyme activity and proline content under drought stress conditions, with lower malondialdehyde content and reactive oxygen species (ROS) accumulation, and the expression levels of six stress-related genes were significantly upregulated. This indicates that the overexpression of SsWRKY1 in Arabidopsis thaliana improves resistance to drought stress. SsWRKY1 does not have transcriptional autoactivation activity in yeast cells. The yeast two-hybrid (Y2H) system and the S. spontaneum cDNA library were used to screen 21 potential proteins that interact with SsWRKY1, and the interaction between SsWRKY1 and ATAF2 was verified by GST pull-down assay. In summary, our results indicate that SsWRKY1 plays an important role in the response to drought stress and provide initial insights into the molecular mechanism of SsWRKY1 in response to drought stress.

摘要

在这项研究中,我们对一个 WRKY 家族成员基因 SsWRKY1 进行了特征描述,该基因位于细胞核内,包含多个与应激相关的顺式作用元件。此外,构建的 SsWRKY1 过表达拟南芥在干旱胁迫条件下具有更高的抗氧化酶活性和脯氨酸含量,较低的丙二醛含量和活性氧(ROS)积累,以及六个与应激相关基因的表达水平显著上调。这表明 SsWRKY1 在拟南芥中的过表达提高了对干旱胁迫的抗性。SsWRKY1 在酵母细胞中没有转录自动激活活性。我们使用酵母双杂交(Y2H)系统和 S. spontaneum cDNA 文库筛选了 21 个可能与 SsWRKY1 相互作用的潜在蛋白,并通过 GST 下拉实验验证了 SsWRKY1 与 ATAF2 的相互作用。总之,我们的结果表明 SsWRKY1 在应对干旱胁迫中发挥着重要作用,并为 SsWRKY1 应对干旱胁迫的分子机制提供了初步见解。

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