瓦氏雅罗鱼耐碱性状相关分子标记的筛选
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1. 淡水鱼类育种国家地方联合工程实验室, 农业部淡水水产生物技术与遗传育种重点实验室, 中国水产科学研究 院 特殊生境鱼类种质特性与抗逆育种重点实验室, 中国水产科学研究院 黑龙江水产研究所, 黑龙江 哈尔滨 150070; 2. 上海海洋大学 水产与生命学院, 上海 201306

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作者简介: 王楠(1989–), 女, 硕士研究生, 专业方向为鱼类分子生物学与基因工程育种. E-mail: wn890531@163.com 通信作者: 梁利群(1965–), 女, 研究员, 博士生导师, 研究方向为水产动物基因工程育种. Tel: 0451-84861434; E-mail: llq-1019 @163.com

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S96

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国家高技术研究发展计划项目(2011AA100402-3); 黑龙江省科技攻关项目(GCI2B307).


Screening microsatellite markers associated with alkaline tolerance in Leuciscus waleckii
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1. National & Local United Engineering Laboratory of Freshwater Fish Breeding; Key Laboratory of Freshwater Aquatic Biotechnology and Genetic Breeding, Ministry of Agriculture; Key Laboratory of Fish Stress Resistance Breeding and Germplasm Characteristic

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    摘要:

    本研究以来自达里湖(碱水)和松花江(淡水)的瓦氏雅罗鱼(Leuciscus waleckii)杂交F2 为实验材料, 通过碱度耐受实验进行性状测定, 以39 对多态的EST-SSR 和SSR 为标记, 对77 个F2 个体进行基因分型, 根据Fisher 确切概率法对F2 基因型和耐碱性状进行关联分析。结果发现, 有2 个标记与耐碱性状显著相关(P<0.05), 其中1 个标记为EST-SSR, 从瓦氏雅罗鱼转录组数据库中调取该EST 序列, 基因注释结果显示该序列与团头鲂(Megalobrama amblycephala)低氧诱导因子HIF-3基因、草鱼的低氧诱导因子HIF-4基因具有很高的同源性。该基因的主要功能是参与鱼类的耐低氧反应过程, 加强鱼类的耐低氧能力。本研究对于今后深入研究此功能基因的作用机制及培育适于盐碱水域养殖的鱼类新品种具有重要的意义。

    Abstract:

    Saline-alkaline water use has broadened the development of Chinese fisheries. Breeding new varieties ofalkaline-resistant fish is a fundamental task, and elucidating fish alkaline-resistant mechanisms, identifying candidategenes, and exploring their functions are crucial. Decoding genome information promotes the use of molecular markersand selection of candidate genes. Leuciscus waleckii (Dybowski) is highly tolerant to high salinity and alkalinity andsurvives in Dali Lake (Inner Mongolia) with alkalinity up to 53.57 mmol/L (pH 9.6). Therefore, this fish species is agood subject to investigate the evolutionary mechanism of high salinity and alkalinity adaptation. L. waleckii in DaliLake differ from their freshwater counterparts because they are characterized by a breeding migration in which theyspawn in freshwater and grow in alkaline water. Marked differences are observed during acute-phase alkaline tolerancebetween the alkaline population from Dali Lake and the freshwater population from the Songhuajiang River, indicatingthe genetic heritability of alkaline tolerance. However, the mechanism of high tolerance to alkalinity remains unknown,and very few physiological and genetic studies have been performed. Thus, we prepared a hybrid F2 system (alkalineDali Leuciscus × freshwater Songhua Leuciscus). A large number of candidate genes are associated with alkaline-resistance traits, and microsatellites, single nucleotide polymorphisms, and other molecular markers have been appliedin fish population genetics studies. We used the gene recombination principle to select molecular markers closelyrelated to alkaline-resistance traits and located functional genes using molecular markers. In this study, we examinedand genotyped alkaline tolerance in 77 hybrid F2 individuals using 39 simple sequence repeat (SSR) markers, including19 expressed sequence tag EST-SSRs. The individuals were divided into three groups of 43, 20, and 14 individualsbased on their alkaline tolerance. Fisher’s exact probability test was used to examine the associations between markersand the trait. The results showed that two markers were strongly linked to alkaline tolerance (P<0.05), and one was anEST-SSR. Sequence alignment of that EST-SSR showed that it was highly homologous with the hypoxia inducible factorHIF-3 gene of Wuchang bream (Megalobrama amblycephala) and the HIF-4 gene of grass carp (Ctenopharyngodonidellus). These genes are involved in the response to hypoxia and increased hypoxia tolerance in fish. The approachwas to select a functional gene using molecular markers, localize the functional gene, and narrow the range ofcandidate genes to lay the foundation for breeding new varieties of alkaline-resistant fish. In-depth study of this functionalgene will be conducted in the future. Our results suggest further analyses of candidate alkaline-responsive genes,which will help in the understanding of teleost adaptation under extreme environmental stress and ultimately benefitfuture breeding for an alkaline-tolerant fish strain.

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王楠,常玉梅,唐然,何强,张利民,梁利群.瓦氏雅罗鱼耐碱性状相关分子标记的筛选[J].中国水产科学,2015,22(6):1105-1114
WANG Nan, CHANG Yumei, TANG Ran, HE Qiang, ZHANG Limin, LIANG Liqun. Screening microsatellite markers associated with alkaline tolerance in Leuciscus waleckii[J]. Journal of Fishery Sciences of China,2015,22(6):1105-1114

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  • 在线发布日期: 2015-11-26
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