辣椒PIN基因家族的鉴定及其在果柄离区和根系发育中的表达分析
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贵州省辣椒研究所

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贵州省省级科技计划项目(黔科合基础-ZK [2022]一般220),贵州省山地农业关键核心技术攻关项目(GZNYGJHX-2023008),贵州省省级科技计划项目(黔科合平台人才 [2020]6018-2),贵州省农业科学院(黔农科院青年基金[2022]21号)


Genome-wide Identification and Expression Analysis of the PIN Gene Family in Pepper Pedicel Abscission Zones and Root Development
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    摘要:

    【目的】鉴定和分析辣椒PIN基因家族成员的特征及其在果柄离区和根系发育中的表达情况,为解析CaPINs功能及辣椒新品种培育提供候选基因。【方法】通过辣椒全基因组筛选鉴定PIN基因,并开展生物信息学分析,对这些基因在果柄离区和根系发育中进行表达分析。【结果】在辣椒基因组中鉴定出9个PIN基因家族成员,命名为CaPIN1-CaPIN9,分布于7条染色体上,CaPIN9未锚定。CaPINs蛋白的氨基酸数为358~654 aa,分子质量为39251.05~71170.91 Da,等电点为6.40~9.38,且多数成员为稳定蛋白。CaPINs成员间具有明显的共线性,与番茄具有较近的遗传关系。CaPINs基因包含大量生长、环境及激素响应元件。转录组数据分析表明辣椒CaPINs的表达具有组织特异性。荧光定量PCR结果显示,CaPINs在不同果柄离区和根系发育中表现出不同程度的表达。【结论】辣椒CaPINs特异性参与果柄离区形成与根系生长发育,可作为辣椒易脱柄品种培育和根系遗传改良的重要候选基因。

    Abstract:

    【Objective】 This study seeks to identify and analyze the characteristics of the PIN gene family members in pepper (Capsicum annuum L.) and to investigate their expression patterns in the abscission zone of the fruit pedicel as well as during root development. The ultimate goal is to provide candidate genes for elucidating the functions of CaPINs and for breeding new pepper varieties. 【Methods】 PIN genes were identified through whole-genome screening of pepper, followed by comprehensive bioinformatics analysis. Subsequently, the expression patterns of these genes in the fruit pedicel abscission zone and during root development were systematically analyzed. 【Results】 9 members of the PIN gene family were identified in the pepper genome and designated as CaPIN1 through CaPIN9. These genes are distributed across seven chromosomes, with CaPIN9 remaining unanchored. The proteins encoded by these genes exhibit amino acid lengths ranging from 358 to 654 residues, molecular weights from 39 251.05 to 71 170.91 Da, and isoelectric points from 6.40 to 9.38. Most of these proteins are stable. Additionally, significant collinearity was observed among the CaPINs, indicating a close genetic relationship with the tomato genome. The CaPINs encompass a multitude of elements associated with growth, environmental responses, and hormonal signaling. Transcriptome data analysis reveals that the expression of CaPINs in pepper is tissue-specific. Quantitative PCR results demonstrate that CaPINs exhibit differential expression levels across various fruit pedicel abscission zones and throughout root development. 【Conclusion】The CaPINs play a crucial role in the development of the pedicel abscission zone and the growth and development of the root system. These genes hold significant potential as candidates for the breeding of pepper varieties with improved ease of de-stemming and for enhancing genetic traits related to root systems.

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何磊,严希,赖卫,等.辣椒PIN基因家族的鉴定及其在果柄离区和根系发育中的表达分析[J].西北植物学报,2024,44(12):1878-1889

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  • 收稿日期:2024-06-18
  • 最后修改日期:2024-08-08
  • 录用日期:2024-08-28
  • 在线发布日期: 2024-10-29
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