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首页> 外文期刊>Marine ecology progress series >A global estimate of genetic and geographic differentiation in macromedusae-implications for identifying the causes of jellyfish blooms
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A global estimate of genetic and geographic differentiation in macromedusae-implications for identifying the causes of jellyfish blooms

机译:大型水母的遗传和地理分化的全球估计,用于确定水母开花的原因

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Jellyfish blooms are enigmatic, in part due to uncertainty surrounding the geographic extents of populations and underlying causes and effects of demographic change. We aimed to promote understanding of likely drivers of macromedusae blooms by addressing 2 questions about patterns of genetic diversity: (1) Do congeneric individuals found within the same large marine ecosystem (LME) comprise a single species? (2) Do congeneric individuals from different LMEs represent different species? We DNA-barcoded (cytochrome c oxidase subunit I) 804 specimens in 16 medusozoan genera across 32 LMEs. We calculated K2P pairwise sequence divergence between congeneric individuals and estimated geodesic distance between all sample locations within and between LMEs; additionally, we calculated pairwise Phi(ST) among conspecific samples within LMEs. While LMEs reasonably served as a proxy for species in similar to 76% of between-LME comparisons, LME boundaries did not match species boundaries in similar to 24% of inter-regional comparisons. Moreover, similar to 19% of within-LME comparisons showed cryptic species and similar to 67% showed substantial intra-specific phylogeographic structure. The overall rate of mismatch of the scale of LMEs and the scale of genetic structure in macromedusae is likely 70%, because the barcoding and phylogeographic analyses employed here cannot yet distinguish even finer-scale ecologically important population structure. These results were mirrored in analyses using Longhurst's Biogeographical Provinces. Meroplanktonic species often were genetically structured on scales of 10s to 100s of km, though holoplanktonic species may be eurymictic across 1000s to 10000s of km. We also found tentative evidence of onshore-offshore, depth, and latitudinal trends in population structure. When studying the causes and consequences of jellyfish blooms, more accurate descriptions of genetic and geographic differentiation are crucial.
机译:水母繁华令人难以置信,部分原因是围绕人口地理范围的不确定性以及人口变化的根本原因和影响。我们旨在通过解决有关遗传多样性模式的两个问题来促进对大型水母开花的驱动器的理解:(1)在同一大型海洋生态系统(LME)中发现的同系个体是否包含单个物种? (2)来自不同LME的同类个体代表不同的物种吗?我们对32个LME的16个中生动物属进行了DNA条形码编码(细胞色素C氧化酶亚基I)804个标本。我们计算了同类个体之间的K2P成对序列散度,并估计了LME内部和之间的所有样本位置之间的测地距离;此外,我们在LME中的特定样本之间计算了成对的Phi(ST)。尽管LME在大约76%的LME之间比较中合理地充当了物种的代用物,但在大约24%的区域间比较中,LME边界与物种边界不匹配。此外,在LME内部比较中,有19%的人显示出隐秘物种,而有67%的人则显示出实质的种内系统结构。 LMEs规模与大型水母的遗传结构规模的总体失配率可能> 70%,因为此处采用的条形码和系统地理分析仍无法区分更小规模的具有重要生态意义的种群结构。这些结果反映在使用Longhurst的生物地理省的分析中。浮游物种的遗传结构通常在10s至100s km的范围内,尽管整浮游物种可能在1000s至10000s km的范围内具有成瘾性。我们还发现了人口结构中陆上-近海,深度和纬度趋势的初步证据。在研究海fish开花的原因和后果时,更准确地描述遗传和地理差异至关重要。

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