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应激调控的拟南芥泛素连接酶 PUB46 和 PUB48 的活性具有部分冗余性。

The activity of the stress modulated Arabidopsis ubiquitin ligases PUB46 and PUB48 is partially redundant.

机构信息

Department of Life Sciences, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

Black Center for Bioenergetics in Life Sciences, Ben-Gurion University of the NegevThe Doris and Bertie I. , Beer-Sheva, Israel.

出版信息

Plant Signal Behav. 2022 Dec 31;17(1):2072111. doi: 10.1080/15592324.2022.2072111.

Abstract

The Arabidopsis ubiquitin ligases PUB46, PUB47 and PUB48 are encoded by paralogus genes. Single gene and mutants display increased drought sensitivity compared to wild type (WT) suggesting that each has specific biological activity. The high sequence homology between PUB46 and PUB48 activity suggested that they may also share some aspects of their activity. Unfortunately, the close proximity of the and gene loci precludes obtaining a double mutant required to study if they are partially redundant by crossing the available single mutants. We thus applied microRNA technology to reduce the activity of all three gene products of the subfamily by constructing an artificial microRNA (aMIR) targeted to this subfamily. Expressing aMIR46-48 in WT plants resulted in increased drought-sensitivity, a phenotype resembling that of each of the single and mutants, and enhanced sensitivity to methyl viologen, similar to that observed for the mutant. The WT plants expressing aMIR46-48 plants also revealed reduced inhibition by ABA at seed germination, a phenotype not evident in the single mutants. Expressing aMIR46-48 in and mutants further enhanced the drought sensitivity of each parental single mutant and of WT expressing aMIR46-48. These results suggest that the biological activities of PUB46 and PUB48 in abiotic stress response are partially redundant.

摘要

拟南芥泛素连接酶 PUB46、PUB47 和 PUB48 由基因家族的旁系同源基因编码。与野生型(WT)相比,单个基因和突变体显示出增强的干旱敏感性,这表明每个基因都具有特定的生物学活性。PUB46 和 PUB48 活性之间的高度序列同源性表明它们可能也具有一些共同的活性。不幸的是,和基因座的紧密接近排除了通过交叉获得可用的单个突变体来研究它们是否部分冗余的双突变体。因此,我们应用 microRNA 技术通过构建针对该亚家族的人工 microRNA(aMIR)来降低 亚家族的所有三个基因产物的活性。在 WT 植物中表达 aMIR46-48 导致干旱敏感性增加,表型类似于每个单个和突变体,并且对甲基紫精的敏感性增强,类似于突变体观察到的那样。表达 aMIR46-48 的 WT 植物在种子萌发时也显示出 ABA 抑制作用降低,这在单个突变体中并不明显。在和突变体中表达 aMIR46-48 进一步增强了每个亲本单个突变体和表达 aMIR46-48 的 WT 的干旱敏感性。这些结果表明 PUB46 和 PUB48 在非生物胁迫反应中的生物学活性在一定程度上是冗余的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7c5/9116408/12993f50650f/KPSB_A_2072111_F0001_OC.jpg

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