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Heterochrony in Growth and Development in Anurans from the Chaco of South America

机译:来自南美查科的无尾类动物生长发育的异时性

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Heterochrony refers to those permutations in timing of differentiation events, and those changes in rates of growth and development through which morphological changes and novelties originate during phyletic evolution. This research analyzes morphological variation during the ontogeny of 18 different anuran species that inhabit semi-arid environments of the Chaco in South America. I use field data, collection samples, and anatomical methods to compare larval growth, and sequences of ontogenetic events. Most species present a similar pattern of larval development, with a size at metamorphosis related to the duration of larval period, and disappearance and transformations of larval features that occur in a short period between forelimb emergence and tail loss. Among these 18 species, Pseudis paradoxa has giant tadpole and long larval development that are the results of deviations of rates of growth. In this species events of differentiation that usually occur at postmetamorphic stages have an offset when tail is still present. Tadpoles of Lepidobatrachus spp. reach large sizes at metamorphosis by accelerate developmental rates and exhibit an early onset of metamorphic features. The uniqueness of the ontogeny of Lepidobatrachus indicates that evolution of anuran larval development may occasionally involve mid-metamorphic morphologies conserving a free feeding tadpole and reduction of the morphological-ecological differences between tadpoles and adults.
机译:异时性是指分化事件发生时间的排列,以及生长和发育速率的变化,通过这些变化,系统发育过程中会发生形态变化和新奇变化。这项研究分析了居住在南美查科(Chaco)半干旱环境中的18种不同无环物种在个体发育过程中的形态变化。我使用现场数据,采集样本和解剖方法来比较幼虫的生长和个体发育事件的序列。大多数物种呈现出相似的幼体发育模式,其变态大小与幼体持续时间有关,幼体特征的消失和转变发生在前肢出现和尾巴丧失之间的短时间内。在这18个物种中,Pseudis paradoxa具有巨大的t和长的幼体发育,这是生长速率偏离的结果。在该物种中,通常在亚变态阶段发生的分化事件在尾巴仍然存在时会有所抵消。 pid的Le。通过加快发育速度达到变态的大尺寸,并表现出较早的变态特征。鳞翅目个体发育的独特性表明,无核幼体发育的进化可能偶尔涉及中变态形态,从而保护了a的自由觅食并减少了and和成虫之间的形态-生态差异。

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