畜牧兽医学报 ›› 2024, Vol. 55 ›› Issue (11): 4912-4924.doi: 10.11843/j.issn.0366-6964.2024.11.012

• 遗传育种 • 上一篇    下一篇

五指山猪MYH基因家族结构变异对背最长肌肌纤维性状的影响

任钰为(), 王峰, 孙瑞萍, 张艳, 刘海隆, 林燕宁, 洪玲玲, 黄潇仙, 晁哲*()   

  1. 海南省农业科学院畜牧兽医研究所 海南省热带动物繁育与疫病研究重点实验室,海口 571100
  • 收稿日期:2024-04-02 出版日期:2024-11-23 发布日期:2024-11-30
  • 通讯作者: 晁哲 E-mail:renyuwei@hnaas.org.cn;chaozhe@hnaas.org.cn
  • 作者简介:任钰为(1986-),女,湖北宜昌人,副研究员,博士,主要从事畜禽基因组和遗传育种研究,E-mail: renyuwei@hnaas.org.cn
  • 基金资助:
    国家重点研发计划青年科学家项目(2022YFF1001300);海南省农业科学院院本级科研项目(HAAS2023RCQD04);海南省自然科学基金青年基金项目(324QN351)

Effect of Structural Variation of MYH Gene Family on Longissimus Dorsi Muscle Fiber of Wuzhishan Pigs

Yuwei REN(), Feng WANG, Ruiping SUN, Yan ZHANG, Hailong LIU, Yanning LIN, Lingling HONG, Xiaoxian HUANG, Zhe CHAO*()   

  1. Key Laboratory of Tropical Animal Breeding and Disease Research, Institute of Animal Science and Veterinary Medicine, Hainan Academy of Agricultural Sciences, Haikou 571100, China
  • Received:2024-04-02 Online:2024-11-23 Published:2024-11-30
  • Contact: Zhe CHAO E-mail:renyuwei@hnaas.org.cn;chaozhe@hnaas.org.cn

摘要:

旨在通过探究五指山猪背最长肌MYH基因家族结构变异(SVs)对背最长肌肌纤维性状的影响,为深入理解肌纤维生长规律和分子机制提供基础。研究对象为五指山猪,采用大白猪作为对照组。屠宰前一周将3头五指山猪(4月龄母猪,平均体重14.2 kg)和3头大白猪(4月龄母猪,平均体重58.0 kg)饲养在相同的环境中,饲喂充足的食物和水,所有猪饥饿处理24 h之后屠宰。采集6头猪背最长肌组织,提取完整DNA,PacBio平台建库测序,每个样本测序大约40 Gb,测序数据与参考基因组(Sscrofa 11.1)比对,使用Sniffles和PBSV软件的默认参数检测SVs,过滤条件:50 bp≤SVs≤10 kb;提取每头猪背最长肌总RNA,转录组测序,计算基因表达量;统计五指山猪和大白猪SVs在染色体上分布位置和数目,比较五指山猪相对于大白猪SVs差异,筛选五指山猪特异性SVs,构建五指山猪MYH基因家族系统发育树,预测结构域,分析MYH基因表达量与肌纤维指标相关性。结果表明:1)五指山猪共有7个特异性MYH基因,主要分布在第3、5、6、12、13号染色体,第12号染色体包含3个MYH基因;2)系统进化树显示,五指山猪7个MYH基因分化为2个分支,分别编码非肌肉肌球蛋白和肌肉肌球蛋白,MYH9与MYH11基因、MYH1与MYH4基因同源性最高;7个MYH基因都包含结构域Motor domain,5个MYH基因包含结构域Myosin-N,MYH基因头部结构域(Myosin-N和Motor domain)相对保守,中间和尾部结构域差异较大;其中五指山猪MYH1、MYH4和MYH9基因包含SVs而大白猪没有SVs,皮尔森系数统计表明,MYH基因是否包含SVs可能与基因表达量相关;综合转录组测序和Q-PCR试验,检测这3个MYH基因的表达量与肌纤维指标相关性,MYH1基因表达量与肌纤维密度和数量正相关,MYH4基因表达量与肌纤维密度和数量负相关,MYH9基因表达量与肌纤维密度负相关,与直径正相关。综上所述,五指山猪第12号染色体上特异性MYH基因最多;MYH基因家族主要分化为非肌肉肌球蛋白和肌肉肌球蛋白2个分支;MYH蛋白头部结构域相对保守,中间和尾部结构域差异可能是造成MYH基因家族分化的主要原因;MYH1、MYH4和MYH9基因表达量均与肌纤维密度相关,可能通过调控背最长肌肌纤维密度影响肌肉生长发育。本研究不仅扩展了肌纤维生长发育的分子机制相关内容,也为优化结构变异有关的遗传育种模式提供借鉴。

关键词: 五指山猪, 肌纤维, 结构变异, 蛋白结构域, 相关性

Abstract:

The study aimed to explore the effect of structural variation (SVs) in MYH gene family on muscle growth for longissimus dorsi muscle (LDM) of Wuzhishan pigs, and to provide a theoretical basis for further understanding of the rule and molecular mechanism of muscle growth. The study subjects were Wuzhishan pigs, and Large White pigs were used as control group. Three Wuzhishan pigs (4-month-old sows, average weight was 14.2 kg) and three Large White pigs (4-month-old sows, average weight was 58.0 kg) were raised in the same environment for one week before slaughter, fed sufficient food and water, and all pigs were starved for 24 hours before slaughter. LDM of 6 pigs were collected, complete DNA was extracted, library was built and sequenced by PacBio platform, the sequencing data of each sample was about 40 Gb. The sequencing data was aligned to reference genome. Filter condition: 50 bp≤SVs≤10 kb; Total RNA was extracted from longissimus dorsi muscle of each pig, transcriptome sequencing was performed, and gene expression was calculated. The distribution position and number of SVs on chromosomes of Wuzhishan pig and Large White pigs were counted, the specific SVs of Wuzhishan pigs were screened, and the phylogenetic tree of MYH gene family was constructed, the structure domains were predicted, and the correlation between MYH gene expression and muscle fiber indicators was analyzed. The results showed as follows: 1) There were 7 specific MYH genes in Wuzhishan pigs, which were mainly distributed in chromosomes 3, 5, 6, 12 and 13, and chromosome 12 contained 3 MYH genes; 2) Phylogenetic tree showed that 7 MYH genes of Wuzhishan pigs differentiated into 2 branches, encoding non-muscle myosin and muscle myosin respectively, MYH9 and MYH11 genes, MYH1 and MYH4 genes had the highest homology; All 7 MYH genes contained the Motor domain, and 5 MYH genes contain the Myosin-N domain. The head domain of MYH gene (Myosin-N and Motor domain) was relatively conservative, and the middle and tail domain of MYH gene were different. The MYH1, MYH4 and MYH9 genes of Wuzhishan pigs contained SVs, while those of Large White pigs did not. Pearson coefficient statistics showed that the existence of SVs in MYH genes might be related to gene expression. The correlation between the expression levels of these three MYH genes and muscle fiber indexes was detected by both RNA-seq and Q-PCR. MYH1 gene expression was positively correlated with muscle fiber density and number, MYH4 gene expression was negatively correlated with muscle fiber density and number, MYH9 gene expression was negatively correlated with muscle fiber density and positively correlated with diameter. In summary, the largest number of MYH genes distributed on chromosome 12, the MYH gene family is mainly divided into two branches: non-muscle myosin and muscle myosin. The head domain is relatively conservative, and the difference between the middle and tail domain may be the main reason for the differentiation of MYH gene family. The expression levels of MYH1, MYH4 and MYH9 genes were significantly correlated with muscle fiber density, indicating that these genes might affect LDM growth through regulating the muscle fiber density. This study not only expands the content of molecular mechanism of muscle growth and development, but also provides reference for optimizing genetic breeding model related to structural variation.

Key words: Wuzhishan pigs, muscle fiber, structural variations, protein domains, correlations

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