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生物和非生物胁迫下黄瓜(Cucumis sativus)Bax 抑制剂-1 基因家族的全基因组鉴定和特征分析。

Genome wide identification and characterization of Bax inhibitor-1 gene family in cucumber (Cucumis sativus) under biotic and abiotic stress.

机构信息

Department of Botany, Lahore College for Women University, P.O BOX. 54000, Lahore, Pakistan.

Seed Center and Plant Genetic Resources Bank, Ministry of Environment, Water and Agriculture, Riyadh, 14712, Kingdom of Saudi Arabia.

出版信息

BMC Genomics. 2024 Nov 4;25(1):1032. doi: 10.1186/s12864-024-10704-5.

Abstract

In plants, the BAX inhibitor-1 (BI-1) gene plays a crucial part in controlling cell death under stress conditions. This mechanism of Programmed Cell Death (PCD) is genetically regulated and is crucial for the elimination of unwanted or damaged cells in a controlled manner, which is essential for normal development and tissue maintenance. A study on cucumber identified and characterized five BI-1 genes: CsBI1, CsBI2, CsBI3, CsBI4, and CsBI5. These genes share conserved domains, indicating common evolutionary history and function. Physicochemical analysis revealed their molecular weights and isoelectric points, while subcellular localization showed their presence in different cellular compartments. The phylogenetic analysis highlighted evolutionary relationships with related crops. Chromosomal distribution and synteny analysis suggested segmental or tandem duplications within the gene family. Protein-protein interaction analysis revealed extensive interactions with other cucumber proteins. Cis-regulatory elements in the promoter regions provided insights into potential functions and transcriptional regulation. miRNAs showed diverse regulatory mechanisms, including mRNA cleavage and translational inhibition. The CsBI3, CsBI4 and CsBI5 genes exhibit elevated expression levels during cold stress, suggesting their vital involvement in cucumber plant defense mechanisms. The application of chitosan oligosaccharides externally confirms their distinct expression patterns. The qRT-PCR confirms the upregulation of CsBI genes in ToLCNDV-infected plants, indicating their potential to mitigate biotic and abiotic stresses. The comprehensive genome-wide exploration provides opportunities for the development of cold-tolerant and virus-resistant cucumber variants by traditional breeding or gene.

摘要

在植物中,BAX 抑制剂-1(BI-1)基因在应激条件下控制细胞死亡中起着至关重要的作用。这种程序性细胞死亡(PCD)的机制是遗传调控的,对于以可控的方式消除不需要的或受损的细胞至关重要,这对于正常的发育和组织维持是必不可少的。对黄瓜的研究鉴定和描述了五个 BI-1 基因:CsBI1、CsBI2、CsBI3、CsBI4 和 CsBI5。这些基因具有保守的结构域,表明它们具有共同的进化历史和功能。理化分析揭示了它们的分子量和等电点,而亚细胞定位显示它们存在于不同的细胞区室中。系统发育分析突出了与相关作物的进化关系。染色体分布和基因家族的同线性分析表明存在片段或串联重复。蛋白-蛋白相互作用分析揭示了与其他黄瓜蛋白的广泛相互作用。启动子区域的顺式调控元件提供了对潜在功能和转录调控的深入了解。miRNA 显示出多种调节机制,包括 mRNA 切割和翻译抑制。CsBI3、CsBI4 和 CsBI5 基因在冷胁迫下表现出较高的表达水平,表明它们在黄瓜植物防御机制中起着至关重要的作用。壳聚糖寡糖的应用证实了它们在外部的独特表达模式。qRT-PCR 证实了 CsBI 基因在 ToLCNDV 感染植物中的上调,表明它们有潜力减轻生物和非生物胁迫。全面的全基因组探索为通过传统的选育或基因工程开发耐冷和抗病毒的黄瓜品种提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5beb/11536926/bbb81794a74b/12864_2024_10704_Fig1_HTML.jpg

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