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一种白颊长臂猿特有的染色体倒位。

A chromosomal inversion unique to the northern white-cheeked gibbon.

作者信息

Carbone Lucia, Mootnick Alan R, Nadler Tilo, Moisson Pierre, Ryder Oliver, Roos Christian, de Jong Pieter J

机构信息

BACPAC Resources, Children's Hospital of Oakland Research Institute, Oakland, California, United States of America.

出版信息

PLoS One. 2009;4(3):e4999. doi: 10.1371/journal.pone.0004999. Epub 2009 Mar 25.

Abstract

The gibbon family belongs to the superfamily Hominoidea and includes 15 species divided into four genera. Each genus possesses a distinct karyotype with chromosome numbers varying from 38 to 52. This diversity is the result of numerous chromosomal changes that have accumulated during the evolution of the gibbon lineage, a quite unique feature in comparison with other hominoids and most of the other primates. Some gibbon species and subspecies rank among the most endangered primates in the world. Breeding programs can be extremely challenging and hybridization plays an important role within the factors responsible for the decline of captive gibbons. With less than 500 individuals left in the wild, the northern white-cheeked gibbon (Nomascus leucogenys leucogenys, NLE) is the most endangered primate in a successful captive breeding program. We present here the analysis of an inversion that we show being specific for the northern white-cheeked gibbon and can be used as one of the criteria to distinguish this subspecies from other gibbon taxa. The availability of the sequence spanning for one of the breakpoints of the inversion allows detecting it by a simple PCR test also on low quality DNA. Our results demonstrate the important role of genomics in providing tools for conservation efforts.

摘要

长臂猿科属于人猿总科,包括15个物种,分为四个属。每个属都有独特的核型,染色体数目从38条到52条不等。这种多样性是长臂猿谱系进化过程中积累的大量染色体变化的结果,与其他类人猿和大多数其他灵长类动物相比,这是一个相当独特的特征。一些长臂猿物种和亚种是世界上最濒危的灵长类动物。繁殖计划极具挑战性,杂交在圈养长臂猿数量下降的因素中起着重要作用。北方白颊长臂猿(Nomascus leucogenys leucogenys,NLE)在野外仅存不到500只,是成功的圈养繁殖计划中最濒危的灵长类动物。我们在此展示了对一种倒位的分析,该倒位是北方白颊长臂猿特有的,可作为将该亚种与其他长臂猿分类群区分开来的标准之一。跨越倒位断点之一的序列的可用性使得即使在低质量DNA上也能通过简单的PCR测试检测到它。我们的结果证明了基因组学在为保护工作提供工具方面的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78ec/2656618/a994ab2a6aaa/pone.0004999.g001.jpg

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