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首页> 外文期刊>Aquaculture Research >Growth, salinity tolerance and microsatellite analysis of the F reciprocal hybrids of Oreochromis niloticusxSarotherodon galilaeus at different salinities
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Growth, salinity tolerance and microsatellite analysis of the F reciprocal hybrids of Oreochromis niloticusxSarotherodon galilaeus at different salinities

机译:不同盐度下尼罗罗非鱼x Sarotherodon galilaeus F倒数杂种的生长,耐盐性和微卫星分析

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摘要

Oreochromisniloticus (O), the sixth generation of Genetic Improvement of Farmed Tilapia, shows rapid growth but poor salt tolerance, while Sarotherodon galilaeus (S) exhibits opposite traits. To combine the traits, F progeny was obtained through artificial fertilization. Fertile F produced F by natural spawning. The mean survival times, the median survival time (ST) or the survival rate of hybrids was greater than O. niloticus in a gradual or an acute salinity change. Plasma osmolarity, [Na] and [Cl] of the hybrids fluctuated in 32 g Lp# water during a 24-h period, but eventually reached levels similar to fish in freshwater. O. niloticus[female symbol]xS. galilaeus[male symbol] (OS F) or S. galilaeus[female symbol]xO. niloticus[male symbol] (SO F) showed the fastest growth at 22.5 g Lp#, equal to about 78.2% or 69.7% of O. niloticus at 0 and 3.87 or 3.45 times that of S. galilaeus at their individual optimum growth. Growth in OS F was 12% faster than SO F. Microsatellite analysis showed that F had more alleles, a higher polymorphism information content and greater observed and expected heterozygosity than O. or S. Population differentiation was not detected between F and F. All the results indicated that F could be exploited for commercial production under saline conditions.
机译:养殖罗非鱼遗传改良的第六代Oreochromisniloticus(O)显示出快速生长,但耐盐性差,而Sarotherodon galilaeus(S)表现出相反的性状。为了结合这些性状,通过人工受精获得了F子代。肥沃的F通过自然产卵产生F。在逐渐或急性盐度变化中,平均存活时间,中位存活时间(ST)或杂种的存活率大于尼罗罗非鱼。杂种的血浆渗透压,[Na]和[Cl]在24小时内在32 g Lp#的水中波动,但最终达到与淡水鱼相似的水平。 O. niloticus [女性符号] xS。 galilaeus [男性符号](OS F)或S. galilaeus [女性符号] xO。 niloticus [男性符号](SO F)在22.5 g Lp#时表现出最快的生长,在其各自的最佳生长条件下,分别为0.和3.87或3.45倍于gal.euilaus的78.2%或69.7%。 OS F的生长比SO F快12%。微卫星分析表明,F具有比O.或S更多的等位基因,更高的多态性信息含量以及更高的观察到的和期望的杂合性。在F和F之间未检测到群体分化。结果表明F可在盐条件下用于商业生产。

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