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鳄目动物基于椎骨的体长估计及其对性成熟和最大体型的意义

Vertebrae-Based Body Length Estimation in Crocodylians and Its Implication for Sexual Maturity and the Maximum Sizes.

作者信息

Iijima Masaya, Kubo Tai

机构信息

Department of Biological Sciences, Clemson University, Clemson, SC 29634, USA.

Nagoya University Museum, Furocho, Chikusa-Ku, Nagoya, Aichi 464-8601, Japan.

出版信息

Integr Org Biol. 2020 Nov 24;2(1):obaa042. doi: 10.1093/iob/obaa042. eCollection 2020.

Abstract

Body size is fundamental to the physiology and ecology of organisms. Crocodyliforms are no exception, and several methods have been developed to estimate their absolute body sizes from bone measurements. However, species-specific sizes, such as sexually mature sizes and the maximum sizes were not taken into account due to the challenging maturity assessment of osteological specimens. Here, we provide a vertebrae-based method to estimate absolute and species-specific body lengths in crocodylians. Lengths of cervical to anterior caudal centra were measured and relations between the body lengths (snout-vent and total lengths [TLs]) and lengths of either a single centrum or a series of centra were modeled for extant species. Additionally, states of neurocentral (NC) suture closure were recorded for the maturity assessment. Comparisons of TLs and timings of NC suture closure showed that most extant crocodylians reach sexual maturity before closure of precaudal NC sutures. Centrum lengths (CLs) of the smallest individuals with closed precaudal NC sutures within species were correlated with the species maximum TLs in extant taxa; therefore, the upper or lower limit of the species maximum sizes can be determined from CLs and states of NC suture closure. The application of the current method to noncrocodylian crocodyliforms requires similar numbers of precaudal vertebrae, body proportions, and timings of NC suture closure as compared to extant crocodylians.

摘要

体型对于生物体的生理学和生态学至关重要。鳄形类动物也不例外,已经开发出多种方法来根据骨骼测量估计它们的绝对体型。然而,由于对骨骼标本进行成熟度评估具有挑战性,特定物种的体型,如性成熟体型和最大体型并未被考虑在内。在此,我们提供一种基于椎骨的方法来估计鳄类动物的绝对体长和特定物种的体长。测量了颈椎至尾前部椎体的长度,并针对现存物种建立了体长(吻肛长和全长[TLs])与单个椎体或一系列椎体长度之间的关系模型。此外,记录神经中央(NC)缝的闭合状态以进行成熟度评估。TLs和NC缝闭合时间的比较表明,大多数现存鳄类动物在尾前部NC缝闭合之前达到性成熟。物种内尾前部NC缝闭合的最小个体的椎体长度(CLs)与现存分类单元中该物种的最大TLs相关;因此,可以根据CLs和NC缝闭合状态确定物种最大体型的上限或下限。与现存鳄类动物相比,将当前方法应用于非鳄类鳄形类动物需要相似数量的尾前部椎骨、身体比例以及NC缝闭合时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b56f/7891683/2dbca15796aa/obaa042f1.jpg

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