• 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

A member of the ALOG gene family has a novel role in regulating nodulation in Lotus japonicus

来源:

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

题目:

A member of the ALOG gene family has a novel role in regulating nodulation in Lotus japonicus

作者:

Yawen Lei,Shihao Su,Liang He,Xiaohe Hu and Da Luo

刊物名称:

Journal of Integrative Plant Biology

卷期页码:

2018

摘要:

Legumes can control the number of symbiotic nodules that form on their roots, thus balancing nitrogen assimilation and energy consumption. Two major pathways participate in nodulation: the Nod factor (NF) signaling pathway which involves recognition of rhizobial bacteria by root cells and promotion of nodulation, and the autoregulation of nodulation(AON) pathway which involves long-distance negative feedback between roots and shoots. Although a handful of genes have a clear role in the maintenance of nodule number, additional unknown factors may also be involved in this process. Here, we identify a novel function for a Lotus japonicus ALOG (Arabidopsis LSH1 and Oryza G1) family member, LjALOG1, involved in positively regulating nodulation. LjALOG1 expression increased substantially after inoculation with rhizobia, with high levels of expression in whole nodule primordia and in the base of developing nodules. The ljalog1 mutants, which have an insertion of the LORE1 retroelement in LjALOG1, had significantly fewer nodules compared with wild type, along with increased expression of LjCLE-RS1 (L. japonicus CLE Root Signal 1), which encodes a nodulationsuppressor in the AON pathway. In summary, our findings identified a novel factor that participates in controlling nodulation, possibly by suppressing the AON pathway.


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