• 首 页
  • 实验室概况
  • 研究队伍
    • 研究员
    • 副研究员
    • 助理研究员
    • 特别研究助理(博士后)
  • 研究成果
    • 期刊论文
    • 专利
    • 审定品种
  • 科研动态
    • 实验室研究进展
    • 学术活动
  • 研究生教育
    • 学科与学位点
    • 研究生导师
    • 在读博士
    • 已毕业研究生
  • 联系我们
  • 首页
  • 实验室概况
  • 研究队伍
    • 研究员
    • 副研究员
    • 助理研究员
    • 特别研究助理(博士后)
  • 研究成果
    • 期刊论文
    • 专利
    • 审定品种
  • 科研动态
    • 实验室研究进展
    • 学术活动
  • 研究生教育
    • 学科与学位点
    • 研究生导师
    • 在读博士
    • 已毕业研究生
  • 联系我们
  1. 当前位置:首页    新闻动态    发表文章
发表文章

Regulation of compound leaf development in mungbean (Vigna radiata L.) by CUP-SHAPED COTYLEDON/NO APICAL MERISTEM (CUC/NAM) gene

来源:

来源:   |  发布时间:2018-12-12   |  【 大  中  小 】

题目:

Regulation of compound leaf development in mungbean (Vigna radiata L.) by CUP-SHAPED COTYLEDON/NO APICAL MERISTEM (CUC/NAM) gene

作者:

Keyuan Jiao, Xin Li, Yafang Guo, Yining Guan, Wuxiu Guo,Da Luo,Zhubing Hu,Zhenguo Shen

刊物名称:

Planta

卷期页码:

(2018):1-10

摘要:

The results provide a significant verification of functional redundancy and diversity of CUC/NAM genes in legumes. The CUP-SHAPED COTYLEDON/NO APICAL MERISTEM (CUC/NAM) orthologs play key roles for plant organ boundary formation and organ development. Here, we performed a forward screen of the gamma irradiation mutagenesis population in mungbean and characterised a mutant, reduced rachis and fused leaflets (rrf1), which gave rise to the formation of compound leaves with reduced rachis and fused leaflets. Map-based cloning revealed that RRF1 encoded a CUC/NAM protein in mungbean. Phylogenetic analysis indicated that legume CUC1/CUC2 genes were classified as belonging to two subclades, and there are different copies of CUC1/CUC2 genes in legumes. Transcriptomic analysis showed that expression levels of a set of developmental regulators, including class I KNOTTED-LIKE HOMEOBOXI (KNOXI) gene and LATERAL ORGAN BOUNDARIES DOMAIN (LBD) gene, were altered in rrf1 mutants compared to the wild-type plants. Furthermore, rrf1 genetically interacted with heptafoliate leaflets1 (hel1), a mutant displaying a seven-leaflet compound leaf, to regulate leaf development in mungbean. Our results suggest functional redundancy and diversity of two subclades of CUC1/CUC2 genes in legumes, following the duplication of an ancestral gene.


附件下载:

版权所有 © 中国科学院大豆分子设计育种重点实验室 吉ICP备05002032号-1 吉公网安备22017302000214号
地址:吉林省长春市高新北区盛北大街4888号 邮编:130102
电话:+86 431 85542266   Email:iga@iga.ac.cn