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遗传图谱绘制与系统发育分析揭示了弗吉尼亚草莓性染色体的种内变异。

Genetic Mapping and Phylogenetic Analysis Reveal Intraspecific Variation in Sex Chromosomes of the Virginian Strawberry.

作者信息

Wei Na, Govindarajulu Rajanikanth, Tennessen Jacob A, Liston Aaron, Ashman Tia-Lynn

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, PA 15260.

Department of Biology, West Virginia University, Morgantown, WV 26505.

出版信息

J Hered. 2017 Oct 30;108(7):731-739. doi: 10.1093/jhered/esx077.

Abstract

With their extraordinary diversity in sexual systems, flowering plants offer unparalleled opportunities to understand sex determination and to reveal generalities in the evolution of sex chromosomes. Comparative genetic mapping of related taxa with good phylogenetic resolution can delineate the extent of sex chromosome diversity within plant groups, and lead the way to understanding the evolutionary drivers of such diversity. The North American octoploid wild strawberries provide such an opportunity. We performed linkage mapping using targeted sequence capture for the subdioecious western Fragaria virginiana ssp. platypetala and compared the location of its sex-determining region (SDR) to those of 2 other (sub)dioecious species, the eastern subspecies, F. virginiana ssp. virginiana (whose SDR is at 0-5.5 Mb on chromosome VI of the B2 subgenome), and the sister species F. chiloensis (whose SDR is at 37 Mb on chromosome VI of the Av subgenome). Male sterility was dominant in F. virginiana ssp. platypetala and mapped to a chromosome also in homeologous group VI. Likewise, one major quantitative trait locus (QTL) for female fertility overlapped the male sterility region. However, the SDR mapped to yet another subgenome (B1), and to a different location (13 Mb), but similar to the location inferred in one population of the naturally occurring hybrid between F. chiloensis and F. virginiana (F. ×ananassa ssp. cuneifolia). Phylogenetic analysis of chromosomes across the octoploid taxa showed consistent subgenomic composition reflecting shared evolutionary history but also reinforced within-species variation in the SDR-carrying chromosome, suggesting either repeated evolution, or recent turnovers in SDR.

摘要

开花植物在性系统方面具有非凡的多样性,为理解性别决定和揭示性染色体进化的普遍性提供了无与伦比的机会。对具有良好系统发育分辨率的相关分类群进行比较遗传图谱分析,可以描绘植物群体中性染色体多样性的程度,并为理解这种多样性的进化驱动因素指明方向。北美八倍体野生草莓就提供了这样一个机会。我们对北美西部亚雌雄异株的弗州草莓(Fragaria virginiana ssp. platypetala)进行了靶向序列捕获连锁图谱分析,并将其性别决定区域(SDR)的位置与另外两个亚雌雄异株物种的进行了比较,这两个物种分别是东部亚种弗州草莓(F. virginiana ssp. virginiana,其SDR位于B2亚基因组第六条染色体的0 - 5.5兆碱基处)和近缘物种智利草莓(F. chiloensis,其SDR位于Av亚基因组第六条染色体的37兆碱基处)。雄性不育在弗州草莓(F. virginiana ssp. platypetala)中占主导地位,并且也定位于同源群第六条染色体上。同样,一个控制雌性育性的主要数量性状位点(QTL)与雄性不育区域重叠。然而,该SDR定位于另一个亚基因组(B1)和不同的位置(13兆碱基处),但与智利草莓和弗州草莓自然杂交种(F. ×ananassa ssp. cuneifolia)一个种群中推断的位置相似。对八倍体分类群的染色体进行系统发育分析,结果显示出一致的亚基因组组成,反映了共同的进化历史,但也强化了携带SDR染色体的种内变异,这表明要么是重复进化,要么是SDR最近发生了更替。

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