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Molecular evidence that the genes for dioecism and monoecism in Spinaciaoleracea L. are located at different loci in a chromosomal region

机译:分子生物学证据表明菠菜中的双生和单生的基因油菜位于染色体区域中的不同基因座

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摘要

Spinach (Spinacia oleracea L.) is widely known to be dioecious. However, monoecious plants can also occur in this species. Sex expression in dioecious spinach plants is controlled by a single gene pair termed X and Y. Our previous study showed that a single, incompletely dominant gene, which controls the monoecious condition in spinach line 03–336, should be allelic or linked to X/Y. Here, we developed 19 AFLP markers closely linked to the monoecious gene. The AFLP markers were mapped to a 38.2-cM chromosomal region that included the monoecious gene, which is bracketed between flanking markers with a distance of 7.1 cM. The four AFLP markers developed in our studies were converted into sequence-characterized amplified region (SCAR) markers, which are linked to both the monoecious gene and Y and are common to both populations segregating for the genes. Linkage analysis using the SCAR markers suggested that the monoecious gene (M) and Y are located in different intervals, between different marker pairs. Analysis of populations segregating for both M and Y also directly demonstrates linkage of the genes at a distance of ∼12 cM. The data presented in this study may be useful for breeding dioecious and highly male monoecious lines utilized as the pollen parents for hybrid seed production, as well as forstudies of the evolutionary history of sexual systems in this species, and can provide amolecular basis for positional cloning of the sex-determining genes.
机译:菠菜(Spinacia oleracea L.)是众所周知的雌雄异株。但是,雌雄同株的植物也可以出现在该物种中。雌雄异体菠菜植株中的性别表达受称为X和Y的单个基因对控制。我们先前的研究表明,控制菠菜03-336行中雌雄同体状况的单个不完全显性基因应该是等位基因或与X /是的在这里,我们开发了19种与单亲基因密切相关的AFLP标记。 AFLP标记被定位到一个38.2-cM的染色体区域,该区域包括雌雄同体的基因,该基因被包围在侧翼标记之间,距离为7.1 cM。在我们的研究中开发的四个AFLP标记被转换为序列表征的扩增区域(SCAR)标记,这些标记既与单基因相关,又与Y相关,并且对于分离该基因的两个群体而言都是共有的。使用SCAR标记的连锁分析表明,单性基因(M)和Y位于不同标记对之间的不同区间。对M和Y分离的种群进行分析也直接证明了在约12 cM距离处的基因连锁。本研究中提供的数据可能对选育雌雄异株和高度雄性雌雄异株系有用,这些雌雄株用作生产杂交种子的花粉亲本以及研究该物种性系统的进化史,并可以提供性别决定基因位置克隆的分子基础。

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