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胡枝子属基因编码一个 MADS 框转录因子,对于玉米花发育至关重要。

bearded-ear encodes a MADS box transcription factor critical for maize floral development.

机构信息

Plant Gene Expression Center, US Department of Agriculture-Agricultural Research Service and Plant and Microbial Biology Department, University of California-Berkeley, Albany, California 94710, USA.

出版信息

Plant Cell. 2009 Sep;21(9):2578-90. doi: 10.1105/tpc.109.067751. Epub 2009 Sep 11.

Abstract

Although many genes that regulate floral development have been identified in Arabidopsis thaliana, relatively few are known in the grasses. In normal maize (Zea mays), each spikelet produces an upper and lower floral meristem, which initiate floral organs in a defined phyllotaxy before being consumed in the production of an ovule. The bearded-ear (bde) mutation affects floral development differently in the upper and lower meristem. The upper floral meristem initiates extra floral organs that are often mosaic or fused, while the lower floral meristem initiates additional floral meristems. We cloned bde by positional cloning and found that it encodes zea agamous3 (zag3), a MADS box transcription factor in the conserved AGAMOUS-LIKE6 clade. Mutants in the maize homolog of AGAMOUS, zag1, have a subset of bde floral defects. bde zag1 double mutants have a severe ear phenotype, not observed in either single mutant, in which floral meristems are converted to branch-like meristems, indicating that bde and zag1 redundantly promote floral meristem identity. In addition, BDE and ZAG1 physically interact. We propose a model in which BDE functions in at least three distinct complexes to regulate floral development in the maize ear.

摘要

尽管在拟南芥中已经鉴定出许多调控花发育的基因,但在禾本科植物中相对较少。在正常的玉米(Zea mays)中,每个小穗产生一个上和下的花分生组织,在产生胚珠之前,它们在特定的叶序中启动花器官的形成,然后被消耗掉。须芒(bde)突变在上和下分生组织中对花发育的影响不同。上花分生组织启动额外的花器官,这些器官通常是镶嵌或融合的,而下花分生组织则启动额外的花分生组织。我们通过定位克隆克隆了 bde,并发现它编码玉米同源的 zea agamous3(zag3),这是一个在保守的 AGAMOUS-LIKE6 分支中的 MADS 盒转录因子。玉米同源物 zag1 的突变体具有 bde 花缺陷的一部分。bde zag1 双突变体具有严重的穗状表型,在单个突变体中没有观察到,在这种突变体中,花分生组织被转化为类似于分支的分生组织,表明 bde 和 zag1 冗余地促进花分生组织的身份。此外,BDE 和 ZAG1 物理相互作用。我们提出了一个模型,其中 BDE 在至少三个不同的复合物中起作用,以调节玉米穗的花发育。

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