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WM5:小麦减数分裂早期和茎尖分生组织发育过程中表达基因的分离与鉴定

WM5: Isolation and characterisation of a gene expressed during early meiosis and shoot meristem development in wheat.

作者信息

Dong Chongmei, Thomas Stephen, Becker Dirk, Lörz Horst, Whitford Ryan, Sutton Tim, Able Jason A, Langridge Peter

机构信息

Molecular Plant Breeding Cooperative Research Centre, School of Agriculture and Wine, The University of Adelaide, PMB1, Glen Osmond, SA 5064, Australia.

Australian Centre for Plant Functional Genomics, School of Agriculture and Wine, The University of Adelaide, PMB1, Glen Osmond, SA 5064, Australia.

出版信息

Funct Plant Biol. 2005 May;32(3):249-258. doi: 10.1071/FP04198.

Abstract

Wheat Meiosis 5 (WM5), isolated from an early meiosis anther cDNA library of wheat by cDNA subtraction encodes a novel glycine-serine-proline-alanine-rich protein. The corresponding homologous genes are located on the short arms of chromosomes 3A, 3B and 3D of allohexaploid wheat (Triticum aestivum L.). The copy on 3DS is located within the region deleted in the wheat mutant ph2a that displays increased homoeologous chromosome pairing in crosses with alien species. While WM5 is expressed primarily in young flower buds during early meiosis it is also expressed in shoot meristems, thus indicating functional roles in both meiosis and meristem development. Overall, the WM5 amino acid sequence shares no significant similarity with other known proteins in the NCBI database. However, the carboxyl-terminal region does have similarity with the Arabidopsis PDF1 (Protodermal Factor 1) protein. Comparing WM5 and PDF1 reveals that the two proteins share 33% identity and have similar hydropathy plots and predicted secondary structures. In situ immuno-staining locates the protein to the nuclei of pollen mother cells undergoing meiosis and the epidermal layer of the shoot and flower meristem, including the cell wall and cuticle. We propose that the WM5 protein has a role in shoot and flower development within this economically important cereal crop.

摘要

小麦减数分裂5(WM5)是通过cDNA扣除法从小麦早期减数分裂花药cDNA文库中分离得到的,它编码一种新型的富含甘氨酸 - 丝氨酸 - 脯氨酸 - 丙氨酸的蛋白质。相应的同源基因位于异源六倍体小麦(普通小麦)3A、3B和3D染色体的短臂上。3DS上的拷贝位于小麦突变体ph2a缺失的区域内,该突变体在与外来物种杂交时显示出同源染色体配对增加。虽然WM5主要在减数分裂早期的幼花芽中表达,但它也在茎尖分生组织中表达,因此表明其在减数分裂和分生组织发育中都具有功能作用。总体而言,WM5氨基酸序列与NCBI数据库中的其他已知蛋白质没有显著相似性。然而,其羧基末端区域与拟南芥PDF1(原表皮因子1)蛋白具有相似性。比较WM5和PDF1发现,这两种蛋白质具有33%的同一性,并且具有相似的亲水性图谱和预测的二级结构。原位免疫染色将该蛋白质定位到正在进行减数分裂的花粉母细胞的细胞核以及茎和花芽分生组织的表皮层,包括细胞壁和角质层。我们认为WM5蛋白在这种经济上重要的谷类作物的茎和花发育中发挥作用。

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