首页> 外文期刊>Evolution: International Journal of Organic Evolution >Reproductive isolation between divergent races of pea aphids on two hosts. II. Selection against migrants and hybrids in the parental environments
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Reproductive isolation between divergent races of pea aphids on two hosts. II. Selection against migrants and hybrids in the parental environments

机译:两宿主豌豆蚜虫不同种族之间的生殖隔离。二。父母环境中针对移民和杂种的选择

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Sympatric races of pea aphids on alfalfa and red clover are highly ecologically specialized and significantly reproductively isolated. Much of the restriction of gene how between the specialized populations is due to habitat choice behavior of the winged colonizers (Via 1999). Here, we document additional pre- and postmating reproductive isolation through selection against migrants and hybrids in the parental environments. First, a group of randomly chosen genotypes from each race that were experimentally migrated between hosts had very low survival and reproduction on the alternate host relative to genotypes originating from that host (natives). Such selection against cross-host migrants forms a premating barrier to gene flow because it is likely to reduce migrant frequencies before the sexual forms are induced in the fall. Our reciprocal transplant experiment also shows that natural selection acts directly on individual migrants between the crops to favor host choice behavior: genotypes from each host suffered large losses of fitness when forced to migrate to the alternate host plant relative to the fitness they would have enjoyed had they been able to choose their native host. In a companion field study, sequential sampling throughout the summer in newly colonized fields of both alfalfa and clover revealed a decrease in the frequency of host-specific marker alleles characteristic of the alternate crop. These held data further support the hypothesis that selection disfavors migrants that cross between crops. Second, when two sets of Fl hybrids between the races were reciprocally tested on alfalfa and clover, both sets had significantly lower average fitness than the specialized parent in each of the two environments. This demographic selection against hybrids in the parental environments is a source of postmating reproductive isolation between the specialized races. Finally, significant genetic variation in fitness traits was seen among Fl hybrid genotypes from both crosses between alfalfa and clover specialists. Although this variation suggests that a generalized pea aphid could evolve, such generalists are not seen in field collections of these populations. [References: 63]
机译:苜蓿和红三叶草上的豌豆蚜虫的同伴种族在生态学上高度专一,并且生殖繁殖明显。基因的特殊限制主要是由于有翅定居者的栖息地选择行为造成的(Via 1999)。在这里,我们通过针对父母环境中的移民和杂种动物进行选择,记录了额外的繁殖前和繁殖后隔离。首先,从每个种族随机选择的一组基因型在宿主之间进行实验性迁移,相对于源自该宿主(本地人)的基因型,其在替代宿主上的存活率和繁殖率非常低。对跨宿主移民的这种选择构成了基因流动的主要障碍,因为它有可能在秋天诱发性形式之前降低移民的频率。我们的相互移植实验还表明,自然选择直接作用于农作物之间的个体移民,从而有利于寄主选择行为:相对于他们原本享有的适应性,当被迫迁移到替代寄主植物时,每个寄主的基因型都会遭受很大的适应性损失。他们能够选择其本地主机。在同伴田间研究中,整个夏季在苜蓿和三叶草这两个新定殖的田间进行了连续采样,发现交替作物特征性的宿主特异性标记等位基因的频率降低。这些持有的数据进一步支持了选择不利于跨农作物的移民的假设。其次,当在苜蓿和三叶草上对两组种族之间的F1杂种进行相互测试时,在这两种环境中的每一种中,两组的平均适应性均显着低于专门父母。在亲代环境中针对杂种的这种人口选择是专门种族之间生殖后生殖隔离的来源。最后,在苜蓿和三叶草专家之间的两个杂种的F1杂种基因型中,观察到健身性状的显着遗传变异。尽管这种变化表明广义豌豆蚜虫可能进化,但在这些种群的田间收藏中没有发现这样的通才。 [参考:63]

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