生物技术通报 ›› 2025, Vol. 41 ›› Issue (6): 109-118.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0003

• 研究报告 • 上一篇    

马铃薯中重力响应调节基因鉴定及功能分析

罗稷林(), 栗锦烨, 贾玉鑫()   

  1. 云南师范大学马铃薯科学研究院,昆明 650500
  • 收稿日期:2025-01-02 出版日期:2025-06-26 发布日期:2025-06-30
  • 通讯作者: 贾玉鑫,男,博士,教授,研究方向 :马铃薯功能基因;E-mail: jiayuxin@caas.cn
  • 作者简介:罗稷林,男,硕士研究生,研究方向 :马铃薯功能基因;E-mail: ljl2461647881@163.com
    第一联系人:(罗稷林、栗锦烨并列第一作者)
  • 基金资助:
    国家自然科学基金青年科学基金项目(32402608)

Identification and Functional Analysis of Gravity Response Regulatory Genes in Potato

LUO Ji-lin(), LI Jin-ye, JIA Yu-xin()   

  1. Joint Academy of Potato Science, Yunnan Normal University, Kunming 650500
  • Received:2025-01-02 Published:2025-06-26 Online:2025-06-30

摘要:

目的 解析马铃薯(Solanum tuberosum L.)重力响应的分子机理,为马铃薯的遗传改良和育种提供潜在基因资源。 方法 通过石蜡切片对马铃薯的匍匐茎和地上茎进行组织学结构观察;通过同源比对鉴定马铃薯中的重力响应调控基因,使用RT-qPCR验证其表达水平,利用转录组测序分析其表达模式;以四倍体马铃薯材料Desiree为背景,构建了重力响应关键基因StLAZY1-1的过表达转基因株系,并对其表型进行了观察统计。 结果 匍匐茎与地上茎的组织结构存在明显的形态学差异,特别是维管组织的排列和淀粉粒沉积两个方面差别显著。重力响应相关基因PRAF/RLD FAMILY MEMBERRLD、SCARECROWSCR、SHOOT-ROOTSHR、BRX-LIKE4BRXL4、PIN-FORMED3PIN3)在不同物种中具有保守的结构域和分布特征,LAZY家族的结构域分布则具有多样性。重力响应相关基因的表达具有组织特异性,并且表达水平受到光信号调控。通过遗传转化验证马铃薯StLAZY1-1基因的功能,发现与野生型相比StLAZY1-1过表达株系在株高、匍匐茎数量上都具有显著变化。 结论 马铃薯中关键重力响应调节基因StLAZY1-1影响马铃薯的株高和匍匐茎数量。

关键词: 马铃薯, 重力响应, LAZY1基因, 石蜡切片

Abstract:

Objective This study aims to provide a reference for elucidating the molecular mechanisms underlying gravity response in potato (Solanum tuberosum L.) and to offer potential genetic resources for the genetic improvement and breeding of potato. Method Paraffin sectioning was employed to examine the histological structures of potato stolons and aerial stems. Gravity-responsive regulatory genes in potato were identified through homology alignment, with their expressions validated by RT-qPCR. Expression patterns were further analyzed using transcriptome sequencing. Utilizing the tetraploid potato variety Desiree as a background, we constructed transgenic lines that overexpressed the gravity-responsive key gene StLAZY1-1, followed by observation and statistical analysis of their phenotypes. Result Significant morphological differences in tissue structure were observed between the stolon and aerial stem, particularly regarding the arrangement of vascular tissues and the deposition of starch granules. Gravity-responsive genes, including PRAF/RLD FAMILY MEMBER (RLD), SCARECROW (SCR), SHOOT-ROOT (SHR), BRX-LIKE4 (BRXL4), and PIN-FORMED3 (PIN3), demonstrated conserved domains and distribution patterns across various species, whereas LAZY family genes displayed diverse domain distributions. The expressions of gravity-responsive genes were found to be tissue-specific and regulated by light signals. Functional verification of the StLAZY1-1 gene in transgenic potato lines demonstrated significant alterations in plant height and stolon number when compared to wild-type plants. Conclusion The key gravity-responsive regulatory gene StLAZY1-1 in potato influences plant height and the number of stolons.

Key words: potato, gravity response, LAZY1-1 gene, paraffin sectioning