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Genetic and morphological divergence within the Sebastes pachycephalus complex (Scorpaeniformes: Scorpaenidae)

机译:Sebastes pachycephalus复合体(蝎子形目:蝎子科)内的遗传和形态学差异

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摘要

Genetic and morphological divergence among the four subspecies in the Sebastes pachycephalus complex (S. pachycephalus pachycephalus, S. p. nigricans, S. p. nudus and S. p. chalcogrammus) was clarified. Principal coordinate analysis (PCoA) based on AFLP clearly divided 55 specimens of the complex into two groups, the S. p. pachycephalus–S. p. nigricans group (P-Ni group) and the S. p. nudus–S. p. chalcogrammus group (Nu-C group), although three specimens occupied intermediate positions. The minimum spanning network (MSN) based on partial sequences of the mitochondrial control region (mtCR) failed to separate either the P-Ni and Nu-C groups or the four subspecies into distinct clades, although restricted gene flow and genetic differentiation between the former were indicated by the F ST estimation. Differences in morphological characters, including counts of pectoral fin rays and counts of dorsal fin spines lacking basal scales, were also evident between the two groups. However, little or no genetic or morphological difference was found between the two subspecies within each group. It was concluded that the P-Ni and Nu-C groups of the S. pachycephalus complex actually represent two different species, which is further supported by their sympatric distribution. Differences in dorsal body coloration and the presence or absence of brown spots on the ventral surface, which were formerly used to discriminate between four “subspecies,” may simply represent intraspecific variation. The three specimens occupying intermediate positions in the AFLP PCoA also occupied equivocal positions between the two species in the principal component analysis (PCA) based on morphometric characters, suggesting that they were hybrids between the two species. The star-shaped MSN of mtCR, which lacks distinct clades representing the two species, may be due to not only interspecific hybridization but also the sharing of ancestral haplotypes.
机译:阐明了Sebastes pachycephalus复合体(S. pachycephalus pachycephalus,S。p。nigricans,S。p。nudus和S. p。chalcogrammus)的四个亚种之间的遗传和形态学差异。基于AFLP的主坐标分析(PCoA)将55个复合物标本清晰地分为两组,即S. p.。头颅–S。 p。黑色素群(P-Ni群)和S. p。 Nudus –S。 p。查耳默斯组(Nu-C组),尽管三个标本占据了中间位置。基于线粒体控制区(mtCR)部分序列的最小跨度网络(MSN)未能将P-Ni和Nu-C组或四个亚种分离为不同的进化枝,尽管前者之间的基因流和遗传分化受到限制由F ST 估计指示。两组之间的形态特征也很明显,包括胸鳍射线计数和背鳍脊柱缺乏基础鳞片的计数。然而,每组中两个亚种之间几乎没有遗传差异或形态差异。结论是,S。pachycephalus复合体的P-Ni和Nu-C组实际上代表两个不同的物种,这由它们的同胞分布进一步支持。以前用于区分四个“亚种”的背侧体色差异和腹侧表面是否存在褐色斑点,可能仅表示种内变异。根据形态特征,在AFLP PCoA中占据中间位置的三个标本在两个物种之间也占据了模棱两可的位置,表明它们是这两个物种之间的杂种。 mtCR的星形MSN缺少代表这两个物种的独特进化枝,这可能不仅是由于种间杂交,而且还因为祖先单倍型的共享。

著录项

  • 来源
    《Ichthyological Research》 |2011年第4期|p.333-343|共11页
  • 作者单位

    Maizuru Fisheries Research Station, Field Science Education and Research Center, Kyoto University, Nagahama, Maizuru, Kyoto, 625-0086, Japan;

    Division of Applied Biosciences, Graduate School of Agriculture, Kyoto University, Kitashirakawa-Oiwake, Sakyo, Kyoto, 606-8502, Japan;

    The Kyoto University Museum, Kyoto University, Yoshida, Sakyo, Kyoto, 606-8501, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sebastes pachycephalus; AFLP; Mitochondrial DNA; Morphology; Hybridization;

    机译:bas草;AFLP;线粒体DNA;形态学;杂交;
  • 入库时间 2022-08-18 00:09:54

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