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Influence of niche similarity on hybridization between Myriophyllum sibiricum and M.spicatum

机译:利基相似性对西伯利亚狐尾藻与紫花苜蓿杂交的影响。

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摘要

The impact of ecological factors on natural hybridization is of widespread interest. Here, we asked whether climate niche influences hybridization between the two closely related plant species Myriophyllum sibiricum and M.spicatum. Eight microsatellite loci and two chloroplast fragments were used to investigate the occurrence of hybridization between these two species in two co-occurring regions: north-east China (NEC) and the Qinghai-Tibetan Plateau (QTP). The climate niches of the species were quantified by principal component analysis with bioclimatic data, and niche comparisons were performed between the two species in each region. Reciprocal hybridization was observed, and M.sibiricum was favoured as the maternal species. Furthermore, hybrids were rare in NEC but common in the QTP. Accordingly, in NEC, the two species were climatically distinct, and hybrids only occurred in the narrow geographical or ecological transition zone, whereas in the QTP, obvious niche overlaps were found for the two species, and hybrids occurred in multiple contact zones. This association between hybridization pattern and climate niche similarity suggests that the level of hybridization was promoted by niche overlap. Compared with the parental species, similar climate niches were found for the hybrid populations in the QTP, indicating that other environmental factors rather than climate were important for hybrid persistence. Our findings highlight the significance of climate niche with respect to hybridization patterns in plants.
机译:生态因素对自然杂交的影响引起广泛关注。在这里,我们问气候位是否影响两个密切相关的植物物种Myriophyllum sibiricum和M.spicatum之间的杂交。使用八个微卫星基因座和两个叶绿体片段来研究这两个物种在两个同时出现的地区(中国东北(NEC)和青藏高原(QTP))之间杂交的发生。通过利用生物气候数据的主成分分析对物种的气候生态位进行了量化,并在每个区域的两个物种之间进行了生态位比较。观察到相互杂交,并且M.sibiricum被优选为母本物种。此外,杂种在NEC中很少见,但在QTP中很常见。因此,在NEC中,这两个物种在气候上是截然不同的,并且杂种仅发生在狭窄的地理或生态过渡带中,而在QTP中,这两个物种发现了明显的生态位重叠,并且杂种发生在多个接触区域中。杂交模式与气候生态位相似性之间的这种联系表明,生态位重叠促进了杂交水平。与亲本物种相比,QTP的杂种种群发现了类似的气候生态位,这表明其他环境因素而非气候对杂种持久性很重要。我们的发现突出了气候生态位对于植物杂交模式的重要性。

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