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Evolving while invading: rapid adaptive evolution in juvenile development time for a biological control organism colonizing a high-elevation environment

机译:入侵时进化:在高海拔环境中定殖的生物控制生物在青少年发育时间内的快速适应性进化

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摘要

We report evidence of adaptive evolution in juvenile development time on a decadal timescale for the cinnabar moth Tyria jacobaeae (Lepidoptera: Arctiidae) colonizing new habitats and hosts from the Willamette Valley to the Coast Range and Cascades Mountains in Oregon. Four lines of evidence reveal shorter egg to pupa juvenile development times evolved in the mountains, where cooler temperatures shorten the growing season: (i) field observations showed that the mountain populations have shorter phenological development; (ii) a common garden experiment revealed genetic determination of phenotypic differences in juvenile development time between Willamette Valley and mountain populations correlated with the growing season; (iii) a laboratory experiment rearing offspring from parental crosses within and between Willamette Valley and Cascades populations demonstrated polygenic inheritance, high heritability, and genetic determination of phenotypic differences in development times; and (iv) statistical tests that exclude random processes (founder effect, genetic drift) in favor of natural selection as explanations for observed differences in phenology. These results support the hypothesis that rapid adaptation to the cooler mountain climate occurred in populations established from populations in the warmer valley climate. Our findings should motivate regulators to require evaluation of evolutionary potential of candidate biological control organisms prior to release.
机译:我们报告了朱砂蛾Tyria jacobaeae(鳞翅目:Arctiidae)在十年发展尺度上在青少年发育时期的适应性进化的证据,该栖息地从威拉米特谷到俄勒冈州的海岸山脉和喀斯喀特山脉定居。四行证据表明,山区的卵到pa幼鱼发育时间较短,温度较低则缩短了生长期:(i)实地观察表明,山区人口的物候发育较短; (ii)一项普通的花园实验表明,遗传确定了威拉米特山谷和山区人口与生长季节有关的青少年发育时间的表型差异; (iii)在威拉米特谷和喀斯喀特种群之间以及之间的亲代杂交后代进行的实验室实验表明,多基因遗传,高遗传力和遗传决定了发育时间的表型差异; (iv)排除自然过程而有利于自然选择的随机过程(创始人效应,遗传漂移)的统计检验,作为观察到的物候差异的解释。这些结果支持这样的假说,即从较温暖的山谷气候中建立的种群迅速适应较凉的山区气候。我们的发现应激发监管者要求在释放前评估候选生物防治生物的进化潜力。

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