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鲫鱼(Carassius auratus)饲料转化率的数量性状位点定位。

Quantitative trait loci mapping for feed conversion efficiency in crucian carp (Carassius auratus).

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China.

University of Chinese Academy of Sciences, Beijing, 100039, China.

出版信息

Sci Rep. 2017 Dec 5;7(1):16971. doi: 10.1038/s41598-017-17269-2.

Abstract

QTL is a chromosomal region including single gene or gene clusters that determine a quantitative trait. While feed efficiency is highly important in aquaculture fish, little genetic and genomic progresses have been made for this trait. In this study, we constructed a high-resolution genetic linkage map in a full-sib F1 family of crucian carp (Carassius auratus) consisting of 113 progenies with 8,460 SNP markers assigning onto 50 linkage groups (LGs). This genetic map spanned 4,047.824 cM (0.478 cM/marker) and covered 98.76% of the crucian carp genome. 35 chromosome-wide QTL affecting feed conversion efficiency (FCE, 8 QTL), relative growth rate (RGR, 9 QTL), average daily gain (ADG, 13 QTL) and average daily feed intake (ADFI, 5 QTL) were detected on 14 LGs, explaining 14.0-20.9% of the phenotypic variations. In LGs of LG16, LG25, LG36 and LG49, several QTL affecting different traits clustered together at the identical or close regions of the same linkage group. Seven candidate genes, whose biological functions may involve in the energy metabolism, digestion, biosynthesis and signal transduction, were identified from these QTL intervals by comparative genomics analysis. These results provide a basis for elucidating genetic mechanism of feed efficiency and potential marker-assisted selection in crucian carp.

摘要

QTL 是一个包括单个基因或基因簇的染色体区域,它决定了一个数量性状。虽然饲料效率在水产养殖鱼类中非常重要,但在这个性状方面,遗传和基因组进展甚微。在这项研究中,我们构建了一个由 113 个后代组成的全同胞 F1 鲫鱼(Carassius auratus)高密度遗传连锁图谱,该图谱包含 8460 个 SNP 标记,分配到 50 个连锁群(LG)上。这个遗传图谱跨越了 4047.824cM(0.478cM/标记),覆盖了鲫鱼基因组的 98.76%。在 14 个 LG 上检测到 35 个影响饲料转化率效率(FCE,8 个 QTL)、相对生长率(RGR,9 个 QTL)、平均日增重(ADG,13 个 QTL)和平均日采食量(ADFI,5 个 QTL)的全基因组 QTL,解释了 14.0-20.9%的表型变异。在 LG16、LG25、LG36 和 LG49 的 LG 上,一些影响不同性状的 QTL在同一连锁群的相同或接近区域聚集在一起。通过比较基因组学分析,从这些 QTL 区间中鉴定出了 7 个候选基因,其生物学功能可能涉及能量代谢、消化、生物合成和信号转导。这些结果为阐明鲫鱼饲料效率的遗传机制和潜在的标记辅助选择提供了基础。

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