两种体色草鱼杂交F1代生长、肌肉营养成分及皮肤转录组比较分析

COMPARATIVE ANALYSIS OF GROWTH, MUSCLE NUTRIENT COMPOSITION, AND SKIN TRANSCRIPTOME IN F1 HYBRIDS OF CTENOPHARYNGODON IDELLA WITH TWO DIFFERENT BODY COLORS

  • 摘要: 为探究两种不同体色三组草鱼家系F1代生长性能、肌肉品质以及体色相关基因表达的特征, 本研究通过构建金色草鱼(♀)×金色草鱼(♂) Ctenopharyngodon idella var.gold (♀)×C. idella var.gold (♂) F1代(GG)、金色草鱼(♀)×普通体色草鱼(♂) C. idella var.gold (♀)×C. idella (♂) F1代(GB)及普通体色草鱼(♀)×普通体色草鱼(♂) C. idella (♀)×C. idella (♂) F1代(BB)三个家系, 借助形态学、营养学测定方法和RNA-seq技术对其生长特性、肌肉品质和皮肤转录组特征进行了系统分析发现: (1)生长性能方面, GG家系在增重率和特定生长率方面显著高于BB和GB家系(P<0.05), 呈现GG>BB>GB的趋势; (2)肌肉品质方面, GG家系具有显著较高的水分含量(P<0.05)和显著较低的粗脂肪含量(P<0.05), 且二十碳五烯酸(EPA)+二十二碳六烯酸(DHA)含量、氨基酸总量(TAA)、必需氨基酸总量(TEAA)和呈味氨基酸总量(TDAA)均显著高于BB和GB家系(P<0.05); (3)蛋白质质量评价方面, GG家系的氨基酸评分(AAS)、化学评分(CS)和必需氨基酸指数(EAAI)均高于BB家系和GB家系; (4)转录组分析方面, GG和BB间及GB和BB间的差异表达基因(DEGs)显著富集于ATP代谢过程、核苷一磷酸代谢过程及嘌呤核苷一磷酸代谢过程、线粒体、血红素结合、四吡咯结合和氧化还原酶活性等GO功能条目及氧化磷酸化和细胞黏附分子等通路, 并筛选获得cdk4、mt-atp6、csf1r、xdhsox9b等与草鱼体色形成相关的DEGs。结果表明, GG家系在生长性能和肌肉品质均显著优于GB和BB家系, 且获得两种体色差异相关基因, 为阐明体色变异的遗传分子机制和金色草鱼选育提供了科学依据。

     

    Abstract: To investigate the growth performance, muscle quality, and expression characteristics of body color-related genes in the F1 generation of three grass carp (Ctenopharyngodon idella) families with two different body colors, this study established three F1 families: Ctenopharyngodon idella var. gold (♀)×C. idella var.gold (♂) (GG), C. idella var.gold (♀)×C. idella (♂) (GB), and C. idella (♀)×C. idella (♂) (BB), and systematically evaluated their growth traits, muscle quality, and skin transcriptome profiles through morphometric, nutritional, and RNA-seq analyses. Key findings revealed that: (1) The GG family exhibited significantly higher weight gain rate and specific growth rate compared to the BB and GB families (P<0.05), showing a trend of GG>BB>GB; (2) Muscle composition analysis revealed significantly higher moisture and lower crude fat content in the GG family (P<0.05), along with elevated levels of eicosapentaenoic acid (EPA) + docosahexaenoic acid (DHA), total amino acids (TAA), total essential amino acids (TEAA), and total delicious amino acids (TDAA) compared to BB and GB families (P<0.05); (3) Protein quality assessment indicated higher amino acid score (AAS), chemical score (CS), and essential amino acid index (EAAI) in GG family than those in BB and GB families; (4) transcriptome analysis identified differentially expressed genes (DEGs) between GG/BB and GB/BB, which were significantly enriched in GO terms such as ATP metabolic process, mononucleotide metabolic process, purine nucleoside monophosphate metabolic process, mitochondrion, heme binding, tetrapyrrole binding, and oxidoreductase activity, as well as pathways including oxidative phosphorylation and cell adhesion molecules. DEGs related to body color formation in grass carp, such as cdk4, mt-atp6, csf1r, xdh, and sox9b, were identified. In conclusion, the GG family exhibits superior growth performance and nutritional profile compared to the GB and BB families, and the identification of body color-related genes provides a scientific basis for deciphering the molecular mechanisms and advancing the selective breeding of golden grass carp.

     

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