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一种假定的核苷酸糖差向异构酶部分序列的分离,该酶可能参与黄瓜(Cucumis sativus L.)雄蕊的发育。

Isolation of a partial sequence of a putative nucleotide sugar epimerase, which may involve in stamen development in cucumber (Cucumis sativus L.).

作者信息

Terefe Diro, Tatlioglu Turan

机构信息

Section of Applied Genetics, Department of Horticulture, University of Hannover, Herrenhäuser Str. 2, 30419 Hannover, Germany.

出版信息

Theor Appl Genet. 2005 Nov;111(7):1300-7. doi: 10.1007/s00122-005-0058-4. Epub 2005 Nov 15.

Abstract

Sex determination is the most widely studied subject in cucumber. The sex of cucumber plants can be monoecious, hermaphrodite, gynoecious, androecious, or andromonoecious. Besides environmental factors, three major genes, F/f, M/m, and A/a mainly govern the sex types in cucumber. Regardless of their sex all floral buds are bisexual at the early bud stage. A stage specific arrest of either stamen or carpel leads to unisexual flower development. The possible downstream product of the interaction of the sex determining genes that may directly allow the growth or selectively arrest stamen or pistil is not yet identified. Therefore, in the current study, we performed suppression subtractive hybridization using floral buds from nearly isogenic gynoecious and hermaphrodite cucumber plants and identified for the first time a cDNA homologous to nucleotide sugar epimerase. The expression level of the isolated putative nucleotide sugar epimerase is weak in female floral buds but strong in bisexual and male flowers. The weak level of the putative nucleotide sugar epimerase may be an indication for its improper functioning, which may influence stamen development in cucumber plants.

摘要

性别决定是黄瓜中研究最为广泛的课题。黄瓜植株的性别可以是雌雄同株、两性花、全雌株、全雄株或雄全同株。除环境因素外,三个主要基因F/f、M/m和A/a主要控制黄瓜的性别类型。无论其性别如何,所有花芽在芽早期都是两性的。雄蕊或心皮在特定阶段的停滞会导致单性花的发育。性别决定基因相互作用的可能下游产物,即可能直接促进生长或选择性地抑制雄蕊或雌蕊生长的产物,尚未被确定。因此,在本研究中,我们使用近等基因全雌株和两性花黄瓜植株的花芽进行了抑制性消减杂交,并首次鉴定出一种与核苷酸糖差向异构酶同源的cDNA。分离出的假定核苷酸糖差向异构酶在雌花中的表达水平较弱,但在两性花和雄花中较强。假定核苷酸糖差向异构酶的低水平可能表明其功能不正常,这可能会影响黄瓜植株中雄蕊的发育。

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