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黄瓜(L.)基因家族的全基因组鉴定和特征分析

Genome-Wide Identification and Characterization of the Gene Family in Cucumber ( L.).

机构信息

College of Horticulture Science, Zhejiang AF University, Hangzhou 311300, China.

Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vegetable, Ministry of Agriculture and Rural Affairs, Hangzhou 311300, China.

出版信息

Int J Mol Sci. 2022 May 2;23(9):5048. doi: 10.3390/ijms23095048.

Abstract

The NBS-LRR (NLR) gene family plays a pivotal role in regulating disease defense response in plants. Cucumber is one of the most important vegetable crops in the world, and various plant diseases, including powdery mildew (PM), cause severe losses in both cucumber productivity and quality annually. To characterize and understand the role of the () family of genes in disease defense response in cucumber plants, we performed bioinformatical analysis to characterize these genes systematically. We identified 33 members of the gene family in cucumber plants, and they are distributed on each chromosome with chromosome 4 harboring the largest cluster of five different genes. The corresponding family member varies in the number of amino acids and exons, molecular weight, theoretical isoelectric point (pI) and subcellular localization. -acting element analysis of the genes reveals the presence of multiple phytohormone, abiotic and biotic responsive elements in their promoters, suggesting that these genes might be responsive to plant hormones and stress. Phylogenetic and synteny analysis indicated that the CNL proteins are conserved evolutionarily in different plant species, and they can be divided into four subfamilies based on their conserved domains. MEME analysis and multiple sequence alignment showed that conserved motifs exist in the sequence of CNLs. Further DNA sequence analysis suggests that genes might be subject to the regulation of different miRNAs upon PM infection. By mining available RNA-seq data followed by real-time quantitative PCR (qRT-PCR) analysis, we characterized expression patterns of the genes, and found that those genes exhibit a temporospatial expression pattern, and their expression is also responsive to PM infection, ethylene, salicylic acid, and methyl jasmonate treatment in cucumber plants. Finally, the genes targeted by miRNAs were predicted in cucumber plants. Our results in this study provided some basic information for further study of the functions of the gene family in cucumber plants.

摘要

NBS-LRR(NLR)基因家族在植物疾病防御反应中起着至关重要的作用。黄瓜是世界上最重要的蔬菜作物之一,每年各种植物病害,包括白粉病(PM),都会导致黄瓜产量和质量的严重损失。为了表征和理解 NLR 基因家族在黄瓜植物疾病防御反应中的作用,我们进行了生物信息学分析,系统地对这些基因进行了表征。我们在黄瓜植物中鉴定出 33 个 NLR 基因家族成员,它们分布在每个染色体上,其中染色体 4 含有最大的五个不同基因簇。相应的 NLR 家族成员在氨基酸和外显子数量、分子量、理论等电点(pI)和亚细胞定位上有所不同。对 NLR 基因的顺式作用元件分析表明,它们的启动子中存在多种植物激素、非生物和生物响应元件,表明这些基因可能对植物激素和胁迫有响应。系统发育和共线性分析表明,CNL 蛋白在不同植物物种中具有保守的进化,并且可以根据其保守结构域分为四个亚家族。MEME 分析和多重序列比对表明,CNL 序列中存在保守基序。进一步的 DNA 序列分析表明,NLR 基因可能受到 PM 感染后不同 miRNAs 的调控。通过挖掘可用的 RNA-seq 数据并进行实时定量 PCR(qRT-PCR)分析,我们对 NLR 基因的表达模式进行了表征,发现这些基因表现出时空表达模式,其表达也对 PM 感染、乙烯、水杨酸和茉莉酸甲酯处理的黄瓜植物有响应。最后,预测了黄瓜植物中受 miRNAs 靶向的 NLR 基因。我们的研究结果为进一步研究 NLR 基因家族在黄瓜植物中的功能提供了一些基础信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c7a/9099878/964d356f73fb/ijms-23-05048-g001.jpg

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