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一个大麦 PHD 手指转录因子,通过影响绒毡层发育而导致雄性不育。

A barley PHD finger transcription factor that confers male sterility by affecting tapetal development.

机构信息

School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough, Leicestershire, UK.

出版信息

Plant Biotechnol J. 2014 Aug;12(6):765-77. doi: 10.1111/pbi.12181. Epub 2014 Mar 29.

DOI:10.1111/pbi.12181
PMID:24684666
Abstract

Controlling pollen development is of major commercial importance in generating hybrid crops and selective breeding, but characterized genes for male sterility in crops are rare, with no current examples in barley. However, translation of knowledge from model species is now providing opportunities to understand and manipulate such processes in economically important crops. We have used information from regulatory networks in Arabidopsis to identify and functionally characterize a barley PHD transcription factor MALE STERTILITY1 (MS1), which expresses in the anther tapetum and plays a critical role during pollen development. Comparative analysis of Arabidopsis, rice and Brachypodium genomes was used to identify conserved regions in MS1 for primer design to amplify the barley MS1 gene; RACE-PCR was subsequently used to generate the full-length sequence. This gene shows anther-specific tapetal expression, between late tetrad stage and early microspore release. HvMS1 silencing and overexpression in barley resulted in male sterility. Additionally, HvMS1 cDNA, controlled by the native Arabidopsis MS1 promoter, successfully complemented the homozygous ms1 Arabidopsis mutant. These results confirm the conservation of MS1 function in higher plants and in particular in temperate cereals. This has provided the first example of a characterized male sterility gene in barley, which presents a valuable tool for the future control of male fertility in barley for hybrid development.

摘要

控制花粉发育对于产生杂交作物和选择性育种具有重要的商业意义,但作物雄性不育的特征基因很少,大麦中目前尚无此类基因。然而,现在从模式物种中获取的知识为理解和操纵经济上重要作物中的这些过程提供了机会。我们利用拟南芥调控网络中的信息,鉴定并对大麦 PHD 转录因子雄性不育 1(MS1)进行了功能表征,该基因在花药绒毡层中表达,并在花粉发育过程中发挥关键作用。通过对拟南芥、水稻和短柄草基因组的比较分析,确定了 MS1 中用于引物设计以扩增大麦 MS1 基因的保守区域;随后使用 RACE-PCR 生成全长序列。该基因在四分体晚期到早期小孢子释放之间表现出花药特异性的绒毡层表达。大麦中的 HvMS1 沉默和过表达导致雄性不育。此外,由天然拟南芥 MS1 启动子控制的 HvMS1 cDNA 成功地互补了纯合 ms1 拟南芥突变体。这些结果证实了 MS1 功能在高等植物中特别是在温带谷物中的保守性。这为大麦中第一个被表征的雄性不育基因提供了范例,为未来控制大麦雄性育性以进行杂交开发提供了有价值的工具。

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