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短柄草作为研究禾本科植物铁稳态机制的新模式系统:YSL 转运蛋白的系统发育和表达分析。

Brachypodium distachyon as a new model system for understanding iron homeostasis in grasses: phylogenetic and expression analysis of Yellow Stripe-Like (YSL) transporters.

机构信息

Biology Department, University of Massachusetts Amherst, 611 North Pleasant St., Amherst, MA 01002, USA

出版信息

Ann Bot. 2011 Oct;108(5):821-33. doi: 10.1093/aob/mcr200. Epub 2011 Aug 10.

Abstract

BACKGROUND AND AIMS

Brachypodium distachyon is a temperate grass with a small stature, rapid life cycle and completely sequenced genome that has great promise as a model system to study grass-specific traits for crop improvement. Under iron (Fe)-deficient conditions, grasses synthesize and secrete Fe(III)-chelating agents called phytosiderophores (PS). In Zea mays, Yellow Stripe1 (ZmYS1) is the transporter responsible for the uptake of Fe(III)-PS complexes from the soil. Some members of the family of related proteins called Yellow Stripe-Like (YSL) have roles in internal Fe translocation of plants, while the function of other members remains uninvestigated. The aim of this study is to establish brachypodium as a model system to study Fe homeostasis in grasses, identify YSL proteins in brachypodium and maize, and analyse their expression profiles in brachypodium in response to Fe deficiency.

METHODS

The YSL family of proteins in brachypodium and maize were identified based on sequence similarity to ZmYS1. Expression patterns of the brachypodium YSL genes (BdYSL genes) were determined by quantitative RT-PCR under Fe-deficient and Fe-sufficient conditions. The types of PS secreted, and secretion pattern of PS in brachypodium were analysed by high-performance liquid chromatography.

KEY RESULTS

Eighteen YSL family members in maize and 19 members in brachypodium were identified. Phylogenetic analysis revealed that some YSLs group into a grass-specific clade. The Fe status of the plant can regulate expression of brachypodium YSL genes in both shoots and roots. 3-Hydroxy-2'-deoxymugineic acid (HDMA) is the dominant type of PS secreted by brachypodium, and its secretion is diurnally regulated.

CONCLUSIONS

PS secretion by brachypodium parallels that of related crop species such as barley and wheat. A single grass species-specific YSL clade is present, and expression of the BdYSL members of this clade could not be detected in shoots or roots, suggesting grass-specific functions in reproductive tissues. Finally, the Fe-responsive expression profiles of several YSLs suggest roles in Fe homeostasis.

摘要

背景与目的

短柄草是一种温带禾本科植物,植株矮小,生命周期短,基因组完全测序,有望成为研究提高作物产量的禾本科特有性状的理想模式系统。在缺铁(Fe)条件下,禾本科植物合成并分泌铁(III)螯合剂,称为植物铁载体(PS)。在玉米中,Yellow Stripe1(ZmYS1)是负责从土壤中摄取 Fe(III)-PS 复合物的转运蛋白。一些称为 Yellow Stripe-Like(YSL)的相关蛋白家族成员在植物内部铁转运中发挥作用,而其他成员的功能仍未被研究。本研究旨在将短柄草建立为研究禾本科植物铁稳态的模式系统,鉴定短柄草和玉米中的 YSL 蛋白,并分析其在短柄草对 Fe 缺乏的响应中的表达谱。

方法

根据与 ZmYS1 的序列相似性,鉴定短柄草和玉米中的 YSL 蛋白家族。在 Fe 缺乏和 Fe 充足条件下,通过定量 RT-PCR 确定短柄草 BdYSL 基因的表达模式。通过高效液相色谱分析,分析短柄草分泌的 PS 类型和 PS 的分泌模式。

结果

在玉米中鉴定出 18 个 YSL 家族成员,在短柄草中鉴定出 19 个成员。系统发育分析表明,一些 YSL 分组为一个禾本科特有分支。植物的 Fe 状态可以调节短柄草 shoot 和根中的 YSL 基因的表达。3-羟基-2'-脱氧麦角酰谷氨酸(HDMA)是短柄草分泌的主要 PS 类型,其分泌受到昼夜节律的调节。

结论

短柄草的 PS 分泌与大麦和小麦等相关作物物种的分泌相似。存在一个单一的禾本科特有分支,该分支的 BdYSL 成员在 shoot 和根中都无法检测到表达,表明其在生殖组织中具有禾本科特有的功能。最后,几个 YSL 的 Fe 响应表达谱表明它们在铁稳态中的作用。

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