Possible genetic etiology of damselfish neurofibromatosis: genetic differentiation of bicolor damselfish (Pomacentrus partitus) populations.

Neurofibromatosis Pub Date : 1988-01-01
J M Lacson, V M Riccardi, D C Morizot
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Abstract

Variable prevalence rates of damselfish neurofibromatosis (DNF) between Florida Keys reefs have previously been used as evidence against a genetic etiology of DNF in favor of an infectious etiology. Such a conclusion also presumes a genetically homogeneous population, that is, panmixia, throughout the reef system population. In order to address this issue, we conducted a survey of allozyme variation in two closely situated populations of the bicolor damselfish (Pomacentrus partitus) within the Florida Keys. The results suggest that gene flow between these two populations is restricted. Data analyses show significant heterogeneity in allelic frequencies at two enzyme-coding loci (ACO1 and ADH) and a relatively high estimate of genetic distance between samples from Little Grecian Rocks Reef and Grecian Rocks Reef. These preliminary findings are consistent with the hypothesis that the etiology of DNF is genetic. It is of some interest that these results are in contrast to previous studies of genetic differentiation among widely separated populations of coral reef fishes. Sufficient allozyme variation was detected (12 out of 23 loci were polymorphic) to allow for a subsequent rigorous assessment of panmixia in these populations at risk for DNF.

雀鲷神经纤维瘤病可能的遗传病因:双色雀鲷(Pomacentrus partitus)群体的遗传分化。
佛罗里达群岛珊瑚礁之间小雀鲷神经纤维瘤病(DNF)的可变患病率以前被用作反对DNF遗传病因的证据,支持感染病因。这样的结论也假定在整个珊瑚礁系统种群中存在遗传同质的种群,即泛群。为了解决这一问题,我们在佛罗里达群岛对两个位置相近的双色雀鲷(Pomacentrus partitus)种群进行了同工酶变异调查。结果表明,这两个种群之间的基因流动是有限的。数据分析显示,两个酶编码位点(ACO1和ADH)的等位基因频率存在显著异质性,并且小希腊岩礁和希腊岩礁样品之间的遗传距离估计相对较高。这些初步发现与DNF的病因是遗传的假设是一致的。令人感兴趣的是,这些结果与以前在广泛分离的珊瑚礁鱼类种群中进行的遗传分化研究形成了对比。检测到足够的等位酶变异(23个位点中有12个是多态性的),从而允许在这些有DNF风险的人群中对panmixia进行后续严格评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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