生物技术通报 ›› 2023, Vol. 39 ›› Issue (3): 133-142.doi: 10.13560/j.cnki.biotech.bull.1985.2022-0690

• 研究报告 • 上一篇    下一篇

大豆VAS1基因家族的鉴定及参与侧根发育的研究

杨春洪(), 董璐, 陈林, 宋丽()   

  1. 扬州大学农业科技发展研究院 教育部农业与农产品安全国际合作联合实验室 江苏省粮食作物现代产业技术协同创新中心,扬州 225009
  • 收稿日期:2022-06-04 出版日期:2023-03-26 发布日期:2023-04-10
  • 通讯作者: 宋丽,女,博士,教授,研究方向:作物遗传育种;E-mail: songli@yzu.edu.cn
  • 作者简介:杨春洪,女,硕士研究生,研究方向:大豆功能基因组学;E-mail: azneych@outlook.com
  • 基金资助:
    教育部农业与农产品安全国际合作联合实验室开放课题资助(JILAR-KF202202)

Characterization of Soybean VAS1 Gene Family and Its Involvement in Lateral Root Development

YANG Chun-hong(), DONG Lu, CHEN Lin, SONG Li()   

  1. Institute of Agricultural Science and Technology Development, Yangzhou University/Joint International Research Laboratory of Agriculture and Agri-Product Safety/Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou 225009
  • Received:2022-06-04 Published:2023-03-26 Online:2023-04-10

摘要:

拟南芥VAS1基因编码一个磷酸吡哆醛依赖性氨基转移酶,可将吲哚丙酮酸转化为吲哚乙酸的生物合成前体色氨酸,是生长素代谢调控中的一个关键酶。对大豆VAS1基因家族进行全基因组鉴定与表达模式分析,并探究其在根系发育中的作用,为深入挖掘大豆VAS1基因的功能奠定基础。运用生物信息学方法对该基因家族成员进行鉴定和分析,采用实时荧光定量分析该家族在不同逆境处理下的表达模式,克隆GmVAS1-1,进一步研究其功能,并通过酵母双杂交试验筛选大豆GmVAS1-1蛋白的互作因子。结果表明,大豆VAS1基因家族共有2个成员,命名为GmVAS1-1GmVAS1-2。系统进化树、基因结构和保守基序分析表明,大豆VAS1与豆科植物亲缘关系更近。启动子序列分析发现多个逆境和光响应元件。表达模式分析表明,大豆VAS1家族基因在不同种子发育时期的胚乳中表达量较高。荧光定量PCR分析表明,在干旱和盐胁迫下,大豆根系VAS1基因表达量显著上调。拟南芥过量表达GmVAS1-1植株侧根数较野生型显著减少。酵母互作试验及预测共筛选到17个与GmVAS1-1互作的蛋白。大豆VAS1基因家族成员在胚乳中表达量较高,且响应多种逆境及营养胁迫,其中,GmVAS1-1参与侧根发育。

关键词: 大豆, 生长素, 氨基转移酶VAS1, 非生物胁迫, 根发育

Abstract:

Arabidopsis VAS1 gene encodes a pyridoxal-phosphate-dependent aminotransferase, which regulates the auxin amount through converting the indole pyruvic acid to tryptophan. Genome-wide characterization and expression pattern analysis of soybean aminotransferase VAS1 was conducted to explore their roles in root development, for laying foundation in further mining biological functions of VAS1 in soybean plant(Glycine max). Bioinformatics approaches were used to identify and analyze the gene members of the soybean VAS1 family, and then fluorescence quantitative analysis was used to analyze the expression pattern of this gene family under different stress treatments. In addition, GmVAS1-1 gene was cloned for further functional analysis. The interaction factors of GmVAS1-1 were screened through yeast two-hybrid method. The results showed that there were two members in the soybean VAS1 gene family, and were named as GmVAS1-1 and GmVAS1-2. Phylogenetic tree,gene structure and conserved motifs analysis indicated that soybean VAS1 was more closely related to legumes(Phaseolus vulgarisMedicago truncatulaVigna unguiculataLotus corniculatus and Cicer arietinum). There were multiple stress or light response elements in the promoter region. Expression pattern analysis showed that soybean VAS1 genes were highly expressed in the endosperm at the different seed development stages. Fluorescent quantitative PCR analysis revealed that the expression of GmVAS1 was significantly up-regulated in soybean roots under drought or salt stress condition. The number of lateral roots in overexpressed GmVAS1-1 Arabidopsis was significantly less than that of wild type, suggesting that GmVAS1-1 was involved in regulating lateral root development in plants. A total of 17 proteins interacting with GmVAS1-1 were screened by yeast two-hybrid assays and network prediction, which laid a molecular theoretical basis for further exploring the function and mechanism of GmVAS1-1 gene. In summary, soybean VAS1 gene family are highly expressed in the endosperm and respond to various abiotic and nutritional stresses, among which GmVAS1-1 is involved in the development of lateral root.

Key words: soybean, auxin, aminotransferase VAS1, abiotic stress, root development