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Distinct Patterns of Desynchronized Limb Regression in Malagasy Scincine Lizards (Squamata Scincidae)

机译:马达加斯加的辛辛那提蜥蜴(鳞蜥Sc科)中不同步的肢体退化的不同模式

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摘要

Scincine lizards in Madagascar form an endemic clade of about 60 species exhibiting a variety of ecomorphological adaptations. Several subclades have adapted to burrowing and convergently regressed their limbs and eyes, resulting in a variety of partial and completely limbless morphologies among extant taxa. However, patterns of limb regression in these taxa have not been studied in detail. Here we fill this gap in knowledge by providing a phylogenetic analysis of DNA sequences of three mitochondrial and four nuclear gene fragments in an extended sampling of Malagasy skinks, and microtomographic analyses of osteology of various burrowing taxa adapted to sand substrate. Based on our data we propose to (i) consider Sirenoscincus Sakata & Hikida, 2003, as junior synonym of Voeltzkowia Boettger, 1893; (ii) resurrect the genus name Grandidierina Mocquard, 1894, for four species previously included in Voeltzkowia; and (iii) consider Androngo Brygoo, 1982, as junior synonym of Pygomeles Grandidier, 1867. By supporting the clade consisting of the limbless Voeltzkowia mira and the forelimb-only taxa V. mobydick and V. yamagishii, our data indicate that full regression of limbs and eyes occurred in parallel twice in the genus Voeltzkowia (as hitherto defined) that we consider as a sand-swimming ecomorph: in the Voeltzkowia clade sensu stricto the regression first affected the hindlimbs and subsequently the forelimbs, whereas the Grandidierina clade first regressed the forelimbs and subsequently the hindlimbs following the pattern prevalent in squamates. Timetree reconstructions for the Malagasy Scincidae contain a substantial amount of uncertainty due to the absence of suitable primary fossil calibrations. However, our preliminary reconstructions suggest rapid limb regression in Malagasy scincids with an estimated maximal duration of 6 MYr for a complete regression in Paracontias, and 4 and 8 MYr respectively for complete regression of forelimbs in Grandidierina and hindlimbs in Voeltzkowia.
机译:马达加斯加的辛辛那蜥蜴形成了约60种物种的地方性进化枝,展现出多种生态形态适应性。几个子小节适应了它们的四肢和眼睛,使它们钻进洞中并逐渐退化,从而导致现存的类群中出现了各种部分且完全没有肢体的形态。但是,尚未对这些类群中肢体退化的模式进行详细研究。在这里,我们通过对扩展的马达加斯加石龙子采样中的三个线粒体和四个核基因片段的DNA序列进行系统发育分析,以及对各种适合于沙质基质的穴位类群的骨科显微学分析,来填补这一知识空白。根据我们的数据,我们建议(i)将Sirenoscincus Sakata&Hikida,2003年作为Voeltzkowia Boettger,1893年的初级同义词; (ii)为以前包括在Voeltzkowia中的4个物种复活1894年的Grandidierina Mocquard属。 (iii)将1982年的Androngo Brygoo视为Pygomeles Grandidier,1867年的初级同义词。通过支持由无肢Voeltzkowia mira和仅前肢类群V. mobydick和V. yamagishii组成的进化枝,我们的数据表明,肢体和眼睛在Voeltzkowia属(迄今定义)中平行发生两次,我们认为这是一种游沙的生态体:在Voeltzkowia进化枝中,严格的回归首先影响后肢,随后影响前肢,而Grandidierina进化枝首先使后肢退化。前肢,后肢遵循在鳞状细胞中普遍存在的模式。由于缺乏合适的一级化石标定,马达加斯加闪烁藻科的时间树重建存在很大的不确定性。然而,我们的初步重建建议在马达加斯加人的弯吻动物中快速肢体退化,在Paracontias中完全退化的估计最大持续时间为6 MYr,在Grandemerina中前肢完全退化的最大持续时间分别为4和8 MYr,Voeltzkowia

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