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藜科 CDK 基因家族的鉴定及 CqCDK15 对干旱和盐胁迫的功能分析

Identification of CDK gene family and functional analysis of CqCDK15 under drought and salt stress in quinoa.

机构信息

State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou, 730070, China.

College of life science and technology, Gansu Agricultural University, Lanzhou, 730070, China.

出版信息

BMC Genomics. 2023 Aug 17;24(1):461. doi: 10.1186/s12864-023-09570-4.

Abstract

as one of the oldest cultivated crops in the world, quinoa has been widely valued for its rich nutritional value and green health. In this study, 22 CDK genes (CqCDK01-CqCDK22) were identified from quinoa genome using bioinformatics method. The number of amino acids was 173-811, the molecular weight was 19,554.89 Da-91,375.70 Da, and the isoelectric point was 4.57-9.77. The phylogenetic tree divided 21 CqCDK genes into six subfamilies, the gene structure showed that 12 (54.5%) CqCDK genes (CqCDK03, CqCDK04, CqCDK05, CqCDK06, CqCDK07, CqCDK11, CqCDK14, CqCDK16, CqCDK18, CqCDK19, CqCDK20 and CqCDK21) had UTR regions at 5' and 3' ends. Each CDK protein had different motifs (3-9 motifs), but the genes with the same motifs were located in the same branch. Promoter analysis revealed 41 cis-regulatory elements related to plant hormones, abiotic stresses, tissue-specific expression and photoresponse. The results of real-time fluorescence quantitative analysis showed that the expression level of some CDK genes was higher under drought and salt stress, which indicated that CDK genes could help plants to resist adverse environmental effects. Subcellular localization showed that CqCDK15 gene was localized to the nucleus and cytoplasm, and transgenic plants overexpressing CqCDK15 gene showed higher drought and salt tolerance compared to the controls. Therefore, CDK genes are closely related to quinoa stress resistance. In this study, the main functions of quinoa CDK gene family and its expression level in different tissues and organs were analyzed in detail, which provided some theoretical support for quinoa stress-resistant breeding. Meanwhile, this study has important implications for further understanding the function of the CDK gene family in quinoa and our understanding of the CDK family in vascular plant.

摘要

作为世界上最古老的栽培作物之一,藜麦因其丰富的营养价值和绿色健康而备受重视。本研究采用生物信息学方法从藜麦基因组中鉴定出 22 个 CDK 基因(CqCDK01-CqCDK22)。氨基酸数量为 173-811,分子量为 19554.89 Da-91375.70 Da,等电点为 4.57-9.77。系统进化树将 21 个 CqCDK 基因分为 6 个亚家族,基因结构表明 12 个(54.5%)CqCDK 基因(CqCDK03、CqCDK04、CqCDK05、CqCDK06、CqCDK07、CqCDK11、CqCDK14、CqCDK16、CqCDK18、CqCDK19、CqCDK20 和 CqCDK21)在 5'和 3'端具有 UTR 区域。每个 CDK 蛋白都有不同的基序(3-9 个基序),但具有相同基序的基因位于同一分支上。启动子分析表明,有 41 个与植物激素、非生物胁迫、组织特异性表达和光响应相关的顺式调控元件。实时荧光定量分析结果表明,一些 CDK 基因在干旱和盐胁迫下的表达水平较高,表明 CDK 基因有助于植物抵抗不利环境影响。亚细胞定位表明,CqCDK15 基因定位于细胞核和细胞质,过表达 CqCDK15 基因的转基因植物与对照相比表现出更高的耐旱性和耐盐性。因此,CDK 基因与藜麦的抗逆性密切相关。本研究详细分析了藜麦 CDK 基因家族的主要功能及其在不同组织器官中的表达水平,为藜麦抗逆性育种提供了一定的理论依据。同时,本研究对进一步了解 CDK 基因家族在藜麦中的功能以及我们对维管植物 CDK 家族的认识具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfbf/10433607/afe4054b305b/12864_2023_9570_Fig1_HTML.jpg

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