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Sex-determining chromosomes and sexual dimorphism: insights from genetic mapping of sexexpression in a natural hybrid Fragaria × ananassa subsp.cuneifolia

机译:性别决定性染色体和性二态性:性别遗传图谱的见解天然杂种草莓属×ananassa亚种中的表达。库尼叶

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摘要

We studied the natural hybrid (Fragaria × ananassa subsp. cuneifolia) between two sexually dimorphic octoploid strawberry species (Fragaria virginiana and Fragaria chiloensis) to gain insight into the dynamics of sex chromosomes and the genesis of sexual dimorphism. Male sterility is dominant in both the parental species and thus will be inherited maternally, but the chromosome that houses the sex-determining region differs. Thus, we asked whether (1) the cytotypic composition of hybrid populations represents one or both maternal species, (2) the sex-determining chromosome of the hybrid reflects the location of male sterility within the maternal donor species and (3) crosses from the hybrid species show less sexual dimorphism than the parental species. We found that F. × ananassa subsp. cuneifolia populations consisted of both parental cytotypes but one predominated within each population. Genetic linkage mapping of two crosses showed dominance of male sterility similar to the parental species, however, the map location of male sterility reflected the maternal donor in one cross, but not the other. Moreover, female function mapped to a single region in the first cross, but to two regions in the second cross. Aside from components of female function (fruit set and seed set), other traits that have been found to be significantly sexually dimorphic in the pure specieswere either not dimorphic or were dimorphic in the opposite direction to the parentalspecies. These results suggest that hybrids experience some disruption of dimorphism insecondary sexual traits, as well as novel location and number of quantitative trait locus(QTL) affecting sex function.
机译:我们研究了两种有性双态八倍体草莓物种(Fragaria virginiana和Fragaria chiloensis)之间的天然杂种(Fragaria×ananassa subsp。cuneifolia),以深入了解性染色体的动力学和性二态性的起源。雄性不育在两个亲本物种中都占主导地位,因此将由母体遗传,但是容纳性别决定区域的染色体不同。因此,我们问(1)杂种群体的细胞型组成是代表一种还是两种母本,(2)杂种的性别决定染色体反映了母本供体中雄性不育的位置,(3)与母本供体杂交。杂种比亲本种显示出较少的性二态性。我们发现F.×ananassa亚种。库氏菌属种群由两种亲本细胞型组成,但在每个种群中占主导地位。两个杂交的遗传连锁作图显示出雄性不育的优势与亲本物种相似,但是,雄性不育的映射位置反映了一个杂交中的母体供体,而另一杂交中没有。此外,女性功能在第一个十字图中映射到单个区域,但在第二个十字中映射到两个区域。除了女性功能的组成部分(果实和种子)外,在纯种中还发现其他显着的两性性状不是双态的,或者是与亲代方向相反的双态种类。这些结果表明,杂种会经历一定程度的双态性破坏。次要性特征,以及新颖的位置和数量性状基因座的数量(QTL)影响性功能。

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