Amaral Danielson B, Schneider Igor
Instituto de Ciências Biológicas, Universidade Federal do Pará, Rua Augusto Corrêa, 01, Belém, 66075-900, Brazil.
Genesis. 2018 Jan;56(1). doi: 10.1002/dvg.23052. Epub 2017 Sep 6.
Limbs with digits evolved as sarcopterygian fish transitioned to a terrestrial life, giving rise to modern tetrapods. Since the Devonian, most of the sarcopterygian fish diversity became extinct, with the only surviving representatives being two coelacanth and six lungfish species. As the sister group of tetrapods, sarcopterygian fish constitute the ideal models to address questions regarding the transition of vertebrates from water to land. However, distantly related yet experimentally amenable teleost fish species have instead become the organisms of choice for geneticists and developmental biologists. Comparative studies using teleosts, such as zebrafish, have greatly enriched our knowledge on the genetic and regulatory mechanisms underlying fin development. However, their highly derived fin anatomy provides limited insights on the origin of limbs and the teleost-specific whole-genome duplication represents a further complication to comparisons of gene function and regulation. In recent years, refined morphological and behavioral studies and access to lungfish embryos and availability of genetic resources have underscored the value of nontetrapod sarcopterygians as model organisms. Here we review recent studies using lungfishes and coelacanths that shed light on various aspects of the evolution of the tetrapod limb, including the origin of the tetrapod pelvis, limb musculature, digits, locomotion, and regenerative capacity.
随着肉鳍鱼类向陆地生活的转变,有指的四肢得以进化,进而产生了现代四足动物。自泥盆纪以来,大多数肉鳍鱼类多样性已经灭绝,仅存的代表物种是两种腔棘鱼和六种肺鱼。作为四足动物的姐妹群,肉鳍鱼类构成了解决脊椎动物从水到陆过渡问题的理想模型。然而,亲缘关系较远但易于实验操作的硬骨鱼类反而成为了遗传学家和发育生物学家的首选生物。使用硬骨鱼类(如斑马鱼)进行的比较研究极大地丰富了我们对鳍发育的遗传和调控机制的认识。然而,它们高度特化的鳍解剖结构对四肢起源的见解有限,而且硬骨鱼类特有的全基因组复制给基因功能和调控的比较带来了进一步的复杂性。近年来,精细的形态学和行为学研究以及对肺鱼胚胎的获取和遗传资源的可用性,凸显了非四足肉鳍鱼类作为模式生物的价值。在此,我们综述了最近使用肺鱼和腔棘鱼的研究,这些研究揭示了四足动物肢体进化的各个方面,包括四足动物骨盆的起源、肢体肌肉组织、指、运动和再生能力。