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最近的全基因组复制促进了大豆 JAZs 的扩张和功能分化。

Recent genome-wide replication promoted expansion and functional differentiation of the JAZs in soybeans.

机构信息

The Research Center of Soil and Water Conservation and Ecological Environment, Chinese Academy of Sciences and Ministry of Education, Yangling, Shaanxi 712100, China; Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources, Yangling, Shaanxi 712100, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Zhejiang Province Key Laboratory of Plant Secondary Metablism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou 310018, China.

出版信息

Int J Biol Macromol. 2023 May 31;238:124064. doi: 10.1016/j.ijbiomac.2023.124064. Epub 2023 Mar 16.

Abstract

Jasmonate Zim-domain (JAZ) protein is an inhibitor of the jasmonate (JA) signal transduction pathway, and plays an important role in regulating plant growth, development, and defense. However, there have been few studies on its function under environmental stress in soybeans. In this study, a total of 275 JAZs protein-coding genes were identified in 29 soybean genomes. SoyC13 contained the least JAZ family members (26 JAZs), which was twice as high as AtJAZs. The genes are mainly generated by recent genome-wide replication (WGD), which replicated during the Late Cenozoic Ice Age. In addition, transcriptome analysis showed that the differences in gene expression patterns in the roots, stems, and leaves of the 29 cultivars at the V1 stage were not significant, but there was a significant difference among the three seed development stages. Finally, qRT-PCR results showed that GmJAZs responded the most strongly to heat stress, followed by drought and cold stress. This is consistent with the reason for their expansion and promoter analysis results. Therefore, we explored the significant role of conserved, duplicated, and neofunctionalized JAZs in the evolution of soybeans, which will contribute to the functional characterization of GmJAZ and the improvement of crops.

摘要

茉莉酸 Zim 结构域(JAZ)蛋白是茉莉酸(JA)信号转导途径的抑制剂,在调节植物生长、发育和防御中发挥着重要作用。然而,关于其在大豆环境胁迫下的功能研究较少。本研究在 29 个大豆基因组中鉴定了 275 个 JAZ 蛋白编码基因。SoyC13 含有最少的 JAZ 家族成员(26 个 JAZs),是 AtJAZs 的两倍。这些基因主要由近期的全基因组复制(WGD)产生,复制发生在新生代冰期晚期。此外,转录组分析表明,29 个品种 V1 期根、茎和叶的基因表达模式差异不显著,但在三个种子发育阶段存在显著差异。最后,qRT-PCR 结果表明,GmJAZs 对热胁迫的反应最为强烈,其次是干旱和冷胁迫。这与它们的扩张以及启动子分析结果一致。因此,我们探讨了保守、重复和新功能化 JAZs 在大豆进化中的重要作用,这将有助于 GmJAZ 的功能特征分析和作物改良。

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