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首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Microsatellite DNA variation indicates low levels of genetic differentiation among cuttlefish (Sepia officinalis L.) populations in the English Channel and the Bay of Biscay
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Microsatellite DNA variation indicates low levels of genetic differentiation among cuttlefish (Sepia officinalis L.) populations in the English Channel and the Bay of Biscay

机译:微卫星DNA变异表明英吉利海峡和比斯开湾的乌贼(Sepia officinalis L.)种群之间的遗传分化水平较低

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Population substructure of the cuttlefish Sepia officinalis (Mollusca: Cephalopoda), as investigated by genetic variation of microsatellite loci, has been reported to be significantly extensive around the Iberian Peninsula with F-ST=0.061 [Perez-Losada, M., Guerra, A., Carvalho, G.R., Sanjuan, A., Shaw, P.W., 2002. Extensive population subdivision of the cuttlefish Sepia officinalis (Mollusca: Cephalopoda) around the Iberian Peninsula indicated by microsatellite DNA variation. Heredity 89, 417-424] and panmictic in the semi-enclosed Adriatic Sea with F-ST=0.011 [Garoia, F., Guamiero, I., Ramsak, A., Ungaro, N., Landi, M., Piccinetti, C., Mannini, P., Tinti, F., 2004. Microsatellite DNA variation reveals high gene flow and panmictic populations in the Adriatic shared stocks of the European squid and cuttlefish (Cephalopoda). Heredity 93, 166-174]. Yet, no verified genetic information on population substructure existed for the northern distribution range of this species in the English Channel and the Bay of Biscay. So far, reproductive and migration behaviour and in vitro oxygen binding properties of haemocyanin have suggested the existence of separate populations in the English Channel and the Bay of Biscay. Examination of genetic variation at seven microsatellite loci within samples from the Bay of Biscay, the English Channel and the southern North Sea indicated low levels of genetic differentiation in this area but also a breakdown of free gene flow at highly significant average F-ST=0.018. Although there is a considerable genetic exchange between populations of S. officinalis in the English Channel and the Bay of Biscay, they cannot be regarded as a single, freely interbreeding population. Earlier reported biological differences might thus be due to genetic variability between the populations. (c) 2006 Elsevier Inc. All rights reserved.
机译:通过微卫星基因座的遗传变异研究,乌贼墨鱼的种群亚结构据报道在伊比利亚半岛周围广泛分布,F-ST = 0.061 [Perez-Losada,M.,Guerra,A ,Carvalho,GR,Sanjuan,A.,Shaw,PW,2002。伊比利亚半岛周围墨鱼乌贼墨(软体动物:头足纲)的广泛种群细分由微卫星DNA变异指示。遗传89,417-424]和半封闭亚得里亚海的F-ST = 0.011 [Garoia,F.,Guamiero,I.,Ramsak,A.,Ungaro,N.,Landi,M.,Piccinetti, C.,Mannini,P.,Tinti,F.,2004年。微卫星DNA变异揭示了欧洲鱿鱼和乌贼(Cephalopoda)亚得里亚共享种群中的高基因流量和恐慌种群。遗传93,166-174]。但是,在该物种在英吉利海峡和比斯开湾的北部分布范围内,没有关于种群亚结构的经过验证的遗传信息。到目前为止,血红素的繁殖和迁移行为以及体外氧结合特性表明,在英吉利海峡和比斯开湾存在着单独的种群。对比斯开湾,英吉利海峡和北海南部样本中七个微卫星基因座的遗传变异进行的研究表明,该地区的遗传分化水平较低,但自由基因流的分解非常显着,平均F-ST = 0.018 。尽管英吉利海峡和比斯开湾的厚生链球菌种群之间存在大量的基因交换,但不能将其视为单一的,自由杂交的种群。因此,较早报道的生物学差异可能是由于种群之间的遗传变异。 (c)2006 Elsevier Inc.保留所有权利。

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