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Adaptive Traits Are Maintained on Steep Selective Gradients despite Gene Flow and Hybridization in the Intertidal Zone

机译:尽管潮间带存在基因流动和杂交,但在陡峭的选择性梯度上仍保持了适应性状。

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摘要

Gene flow among hybridizing species with incomplete reproductive barriers blurs species boundaries, while selection under heterogeneous local ecological conditions or along strong gradients may counteract this tendency. Congeneric, externally-fertilizing fucoid brown algae occur as distinct morphotypes along intertidal exposure gradients despite gene flow. Combining analyses of genetic and phenotypic traits, we investigate the potential for physiological resilience to emersion stressors to act as an isolating mechanism in the face of gene flow. Along vertical exposure gradients in the intertidal zone of Northern Portugal and Northwest France, the mid-low shore species Fucus vesiculosus, the upper shore species Fucus spiralis, and an intermediate distinctive morphotype of F. spiralis var. platycarpus were morphologically characterized. Two diagnostic microsatellite loci recovered 3 genetic clusters consistent with prior morphological assignment. Phylogenetic analysis based on single nucleotide polymorphisms in 14 protein coding regions unambiguously resolved 3 clades; sympatric F. vesiculosus, F. spiralis, and the allopatric (in southern Iberia) population of F. spiralis var. platycarpus. In contrast, the sympatric F. spiralis var. platycarpus (from Northern Portugal) was distributed across the 3 clades, strongly suggesting hybridization/introgression with both other entities. Common garden experiments showed that physiological resilience following exposure to desiccation/heat stress differed significantly between the 3 sympatric genetic taxa; consistent with their respective vertical distribution on steep environmental clines in exposure time. Phylogenetic analyses indicate that F. spiralis var. platycarpus is a distinct entity in allopatry, but that extensive gene flow occurs with both higher and lower shore species in sympatry. Experimental results suggest that strong selection on physiological traits across steep intertidal exposure gradients acts to maintain the 3 distinct genetic and morphological taxa within their preferred vertical distribution ranges. On the strength of distributional, genetic, physiological and morphological differences, we propose elevation of F. spiralis var. platycarpus from variety to species level, as F. guiryi.
机译:具有不完整生殖屏障的杂交物种之间的基因流模糊了物种边界,而在异质局部生态条件下或沿强梯度进行选择可能会抵消这种趋势。尽管有基因流,沿潮间接触梯度,同类的外部施肥岩藻褐藻仍以不同的形态发生。结合遗传和表型性状的分析,我们调查了生理适应性,以应对突发压力源作为面对基因流的隔离机制。沿葡萄牙北部和法国西北部潮间带的垂直暴露梯度,中低岸物种Fusus vesiculosus,上岸物种Fusus spiralis和中间特有的F. spiralis var形态型。对桔梗进行了形态学表征。两个诊断微卫星基因座恢复了3个与先前形态学分配一致的遗传簇。基于14个蛋白质编码区单核苷酸多态性的系统发育分析明确解析了3个进化枝; Sympatric F. vesiculosus,F。spiralis和F. spiralis var的同种异体种群(在伊比利亚南部)。桔梗。相比之下,同胞螺旋藻变种。 platycarpus(来自葡萄牙北部)分布在3个进化枝中,强烈暗示与这两个实体的杂交/渗入。常见的花园实验表明,在3种同伴遗传类群中,暴露于干燥/热胁迫后的生理弹性显着不同。与其在陡峭环境中的暴露时间的垂直分布一致。系统发育分析表明,F. spiralis var。鸭嘴兽是异特异体中的一个独特实体,但是在交联点上的上岸和下岸物种都发生了广泛的基因流动。实验结果表明,在潮间带暴露陡峭梯度上对生理性状进行强烈选择,可将3种不同的遗传和形态分类保持在其优选的垂直分布范围内。关于分布,遗传,生理和形态学差异的强度,我们提出了F. spiralis var的海拔。桔梗从品种到物种水平,如金龟子。

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