New insights into evolution and functional diversification of Camellia sinensis LRR-RLKs

IF 3.4 3区 生物学 Q1 PLANT SCIENCES
Zaibao Zhang, Fan Ye, Kuanru Hu, Tian Luo, Zhiwei Miao
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引用次数: 0

Abstract

Leucine-rich repeat receptor-like kinases (LRR-RLKs) represent the largest subgroup of receptor-like kinases (RLKs) in plants. While some LRR-RLK members play a role in regulating various plant growth processes related to morphogenesis, disease resistance, and stress response, the functions of most LRR-RLK genes remain unclear. In this study, we identified 397 LRR-RLK genes from the genome of Camellia sinensis and categorized them into 16 subfamilies. Approximately 62% of CsLRR-RLK genes are situated in regions resulting from segmental duplications, suggesting that the expansion of CsLRR-RLK genes is due to segmental duplications. Analysis of gene expression patterns revealed differential expression of CsLRR-RLK genes across different tissues and in response to stress. Furthermore, we demonstrated that CssEMS1 localizes to the cell membrane and can complement Arabidopsis ems1 mutant. This study is the initial in-depth evolutionary examination of LRR-RLKs in tea and provides a basis for future investigations into their functionality.

Abstract Image

茶树 LRR-RLKs 进化和功能多样化的新发现
富亮氨酸重复受体样激酶(LRR-RLKs)是植物中最大的受体样激酶(RLKs)亚群。虽然一些 LRR-RLK 成员在调控与形态发生、抗病和胁迫响应有关的各种植物生长过程中发挥作用,但大多数 LRR-RLK 基因的功能仍不清楚。本研究从山茶花基因组中鉴定了 397 个 LRR-RLK 基因,并将其分为 16 个亚科。约62%的CsLRR-RLK基因位于节段重复产生的区域,表明CsLRR-RLK基因的扩增是由节段重复引起的。对基因表达模式的分析表明,CsLRR-RLK 基因在不同组织中的表达以及对压力的反应存在差异。此外,我们还证明了 CssEMS1 定位于细胞膜,并能与拟南芥 ems1 突变体互补。这项研究首次对茶叶中的 LRR-RLK 进行了深入的进化研究,为今后研究其功能奠定了基础。
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来源期刊
CiteScore
7.10
自引率
0.00%
发文量
126
期刊介绍: Founded in 1995, Physiology and Molecular Biology of Plants (PMBP) is a peer reviewed monthly journal co-published by Springer Nature. It contains research and review articles, short communications, commentaries, book reviews etc., in all areas of functional plant biology including, but not limited to plant physiology, biochemistry, molecular genetics, molecular pathology, biophysics, cell and molecular biology, genetics, genomics and bioinformatics. Its integrated and interdisciplinary approach reflects the global growth trajectories in functional plant biology, attracting authors/editors/reviewers from over 98 countries.
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