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Environmental influences on the Indo–Pacific octocoral Isis hippuris Linnaeus 1758 (Alcyonacea: Isididae): genetic fixation or phenotypic plasticity?

机译:环境对印度洋-太平洋八角形鸢尾鸢尾(Linnaeus)1758(Alcyonacea:Isididae)的影响:基因固定或表型可塑性?

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摘要

As conspicuous modular components of benthic marine habitats, gorgonian (sea fan) octocorals have perplexed taxonomists for centuries through their shear diversity, particularly throughout the Indo–Pacific. Phenotypic incongruence within and between seemingly unitary lineages across contrasting environments can provide the raw material to investigate processes of disruptive selection. Two distinct phenotypes of the Isidid Isis hippuris partition between differing reef environments: long-branched bushy colonies on degraded reefs, and short-branched multi/planar colonies on healthy reefs within the Wakatobi Marine National Park (WMNP), Indonesia. Multivariate analyses reveal phenotypic traits between morphotypes were likely integrated primarily at the colony level with increased polyp density and consistently smaller sclerite dimensions at the degraded site. Sediment load and turbidity, hence light availability, primarily influenced phenotypic differences between the two sites. This distinct morphological dissimilarity between the two sites is a reliable indicator of reef health; selection primarily acting on colony morphology, porosity through branching structure, as well as sclerite diversity and size. ITS2 sequence and predicted RNA secondary structure further revealed intraspecific variation between I. hippuris morphotypes relative to such environments (ΦST = 0.7683, P < 0.001). This evidence suggests—but does not confirm—that I. hippuris morphotypes within the WMNP are two separate species; however, to what extent and taxonomic assignment requires further investigation across its full geographic distribution. Incongruence between colonies present in the WMNP with tenuously described Isis alternatives (Isis reticulata , Isis minorbrachyblasta ), questions the validity of such assignments. Furthermore, phylogenetic analyses confirm early taxonomic suggestion that the characteristic jointed axis of the Isididae is in fact a convergent trait. Thus the polyphyletic nature of the Isididae lies in its type species I. hippuris, being unrelated to the rest of its family members.
机译:作为底栖海洋生境的显着模块化组成部分,八角鲨(海洋扇形)通过其剪切多样性(特别是在整个印度-太平洋地区),使分类学家困惑了几个世纪。在不同环境中看似统一的谱系之内和之间的表型不一致,可以为研究破坏性选择的过程提供原材料。 Isidid Isis hippuris的两种不同表型在不同的珊瑚礁环境之间分配:退化的珊瑚礁上的长支丛生菌落,以及印尼瓦卡托比海洋国家公园(WMNP)内的健康珊瑚礁上的短枝多/平面菌落。多变量分析表明,形态型之间的表型性状可能主要在菌落水平整合,息肉密度增加,降解位点的菌核尺寸始终较小。泥沙负荷和浑浊度,以及由此而来的光利用率,主要影响了这两个地点之间的表型差异。这两个地点之间明显的形态差异是礁石健康的可靠指标;选择主要影响菌落的形态,分支结构的孔隙度以及硬粒的多样性和大小。 ITS2序列和预测的RNA二级结构进一步揭示了相对于这种环境,马蹄形大肠杆菌形态型之间的种内变异(ΦST= 0.7683,P <0.001)。该证据表明(但未确认)WMNP中的马蹄形葡萄球菌的形态是两个独立的物种。但是,在多大程度上和分类分配需要对其整个地理分布进行进一步调查。在WMNP中存在的殖民地之间存在不一致的情况,并对其进行了描述不充分的Isis替代方案(Isis reticulata,Isis minorbrachyblasta),这对此类分配的有效性提出了质疑。此外,系统发育分析证实了早期的分类学建议,即Isididae的特征性节理轴实际上是一个会聚性状。因此,鸢尾科的多系性在于其类型物种马蹄形I.,与其其他家族成员无关。

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