首页> 外文会议>Biogeochemistry of Trace Elements >Molecular regulation mechanism of iron uptake in strategy I plants
【24h】

Molecular regulation mechanism of iron uptake in strategy I plants

机译:I植物策略中铁吸收的分子调控机制

获取原文

摘要

Tomato and Arabidopsis are two model plants for studying molecular mechanism of iron uptake in strategy I plants.Several genes involved in iron homeostasis were isolated and characterized in the two plants. Tomato FER and its homolog AtbHLH29 in Ara- bidopsis, encoding a bHLH protein, are a central transcription factor regulating the iron deficiency responses and iron uptake in roots of tomato and Arabidopsis because the insertion mutants of FER (T3238fer) in tomato and AtbHLH29 (fit l-1) in Arabidopsis lacks such responses and suffers strongly from iron deficiency. CHLN encodes a nicotianamine synthase responsible for synthesis of nicotianamine in higher plants. It is directly or indirectly involved in down-regulation of iron deficiency responses consldenng that nicotiananmine-auxotrophic mutant chloronerva in tomato can not normally shut off the iron deficiency responses under iron sufficiency condition. Using the mutants as well as their wild types in tomato and Arabidopsis, we studied the regulation relaionship among the known genes and a molecular regulation model of iron uptake has been proposed for the strategy I plants.
机译:番茄和拟南芥是用于研究策略I植物的铁摄取分子机制的两种模型植物。涉及铁袜中涉及的基因,并在两种植物中表征。番茄FER及其同源物在编码BHLH蛋白的ARA- Bidopsis中,是调节番茄和拟南芥根系中的铁缺乏响应和铁摄取的中央转录因子,因为番茄和atbhlh29中的FER(T3238FER)的插入突变体(适合L-1)在拟南芥中缺乏这种反应,并且从缺铁缺乏患者中受到强烈的影响。 Chln编码尼古拉胺合成酶,负责在高等植物中合成尼古罗胺。它直接或间接地涉及铁缺乏症的下调Coldenng,即番茄中的尼古兰anmine-浮水植物突变体Chloronerva通常不能在铁充足状态下关闭缺铁致响应。在番茄和拟南芥中使用突变体以及它们的野生类型,我们研究了已知基因的调节依次,并提出了I型策略的铁摄取的分子调节模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号