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金鳟(Salmo aguabonita)种群中的生化遗传变异:受威胁的小克恩河金鳟(S.a. whitei)的证据。

Biochemical genetic variation in populations of golden trout, Salmo aguabonita: evidence of the threatened Little Kern River golden trout, S.a. whitei.

作者信息

Gall G A, Busack C A, Smith R C, Gold J R, Kornblatt B J

出版信息

J Hered. 1976 Nov-Dec;67(6):330-5. doi: 10.1093/oxfordjournals.jhered.a108748.

Abstract

Eight wild populations of the High Sierra golden trout, Salmo aguabonita, and one domestic stock of rainbow trout, Salmo gairdneri, were examined for biochemical-genetic variation in eight protein systems. Variation within the eight systems was determined by at least 10 loci in both golden and rainbow trout and all the alleles identified in rainbow trout were observed as electro-phoretically identical phenotypes in golden trout. Variation was observed at an average of 51 percent of the loci in the golden trout samples and for five of the 10 loci in the rainbow trout. Average heterozygosity ranged from 12.6 to 13.9 percent for seven of the golden trout populations with one showing a low value of 5.4 percent. A comparable estimate of 12.1 percent was found for the rainbow stock. On the basis of genetic variation and allele frequencies at three loci, the eight golden trout populations were divided into two distinct groups. Three populations sampled from the Little Kern River basin tended to be genetically distinct from two additional Little Kern River basin populations and from three geographically distinct populations sampled from the eastern Kern River area. The former three populations were hypothesized to be of a recent rainbow-golden hybrid origin. Trout in the other two Little Kern River basin populations, sampled in head-waters of a stream tributary to the Little Kern River, were considered to be the threatened Little Kern golden trout, S. a. whitei Evermann, due to their high degree of genetic similarity to the geographically distinct subspecies S. a. aguabonita sampled from the eastern Kern River area. The finding of substantial genetic variation in the wild golden trout populations indicates that this threatened species is not at present genetically impoverished and thus does not appear to be in immediate danger of extinction through lack of adaptive capability.

摘要

对8个野生种群的高塞拉黄金鳟(Salmo aguabonita)和1个家养种群的虹鳟(Salmo gairdneri)进行了8种蛋白质系统的生化遗传变异检测。在黄金鳟和虹鳟中,这8种系统内的变异均由至少10个基因座决定,并且在虹鳟中鉴定出的所有等位基因在黄金鳟中均表现为电泳相同的表型。在黄金鳟样本中,平均有51%的基因座存在变异,虹鳟的10个基因座中有5个存在变异。7个黄金鳟种群的平均杂合度在12.6%至13.9%之间,其中1个种群的杂合度较低,为5.4%。虹鳟种群的可比估计值为12.1%。基于3个基因座的遗传变异和等位基因频率,8个黄金鳟种群被分为两个不同的组。从小克恩河流域采样的3个种群在遗传上往往与另外两个小克恩河流域种群以及从克恩河东部地区采样的3个地理上不同的种群不同。前3个种群被推测为近期虹鳟 - 黄金鳟杂交起源。在小克恩河流域另外两个种群中采样的鳟鱼,采自小克恩河一条支流源头,由于它们与从克恩河东部地区采样的地理上不同的亚种S. a. aguabonita高度的遗传相似性,被认为是受威胁的小克恩黄金鳟S. a. whitei Evermann。在野生黄金鳟种群中发现大量遗传变异表明,这种受威胁的物种目前在遗传上并不贫乏,因此似乎不会因缺乏适应能力而立即面临灭绝危险。

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