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菠菜性染色体与甜菜常染色体的比较揭示了广泛的同线性以及雄性决定位点处的低重组率。

Comparison of Spinach Sex Chromosomes with Sugar Beet Autosomes Reveals Extensive Synteny and Low Recombination at the Male-Determining Locus.

作者信息

Takahata Satoshi, Yago Takumi, Iwabuchi Keisuke, Hirakawa Hideki, Suzuki Yutaka, Onodera Yasuyuki

机构信息

From the Research Faculty of Agriculture, Hokkaido University, N-9, W-9, Sapporo 060-8589, Japan (Takahata, Yago, Iwabuchi, and Onodera); the Department of Technology Development, Kazusa DNA Research Institute, 2-6-7 Kazusa-kamatari, Kisarazu, Chiba 292-0818, Japan (Hirakawa); and the Department of Computational Biology and Medical Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa 277-8568, Japan (Suzuki).

出版信息

J Hered. 2016;107(7):679-685. doi: 10.1093/jhered/esw055. Epub 2016 Aug 25.

Abstract

Spinach (Spinacia oleracea, 2n = 12) and sugar beet (Beta vulgaris, 2n = 18) are important crop members of the family Chenopodiaceae ss Sugar beet has a basic chromosome number of 9 and a cosexual breeding system, as do most members of the Chenopodiaceae ss. family. By contrast, spinach has a basic chromosome number of 6 and, although certain cultivars and genotypes produce monoecious plants, is considered to be a dioecious species. The loci determining male and monoecious sexual expression were mapped to different loci on the spinach sex chromosomes. In this study, a linkage map with 46 mapped protein-coding sequences was constructed for the spinach sex chromosomes. Comparison of the linkage map with a reference genome sequence of sugar beet revealed that the spinach sex chromosomes exhibited extensive synteny with sugar beet chromosomes 4 and 9. Tightly linked protein-coding genes linked to the male-determining locus in spinach corresponded to genes located in or around the putative pericentromeric and centromeric regions of sugar beet chromosomes 4 and 9, supporting the observation that recombination rates were low in the vicinity of the male-determining locus. The locus for monoecism was confined to a chromosomal segment corresponding to a region of approximately 1.7Mb on sugar beet chromosome 9, which may facilitate future positional cloning of the locus.

摘要

菠菜(Spinacia oleracea,2n = 12)和甜菜(Beta vulgaris,2n = 18)是藜科重要的作物成员。甜菜的基本染色体数为9,具有两性繁殖系统,藜科的大多数成员也是如此。相比之下,菠菜的基本染色体数为6,尽管某些品种和基因型会产生雌雄同株的植株,但它被认为是一种雌雄异株的物种。决定雄性和雌雄同株性别表达的基因座被定位到菠菜性染色体上的不同位置。在本研究中,构建了一个包含46个定位蛋白质编码序列的菠菜性染色体连锁图谱。将该连锁图谱与甜菜的参考基因组序列进行比较,发现菠菜性染色体与甜菜的4号和9号染色体表现出广泛的同线性。与菠菜雄性决定基因座紧密连锁的蛋白质编码基因对应于甜菜4号和9号染色体假定的着丝粒周围和着丝粒区域内或附近的基因,这支持了在雄性决定基因座附近重组率较低的观察结果。雌雄同株的基因座局限于甜菜9号染色体上对应于约1.7Mb区域的一个染色体片段,这可能有助于未来对该基因座进行定位克隆。

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