Poompramun Chotima, Hennequet-Antier Christelle, Thumanu Kanjana, Sinpru Panpradub, Pengsanthia Saknarin, Molee Wittawat, Molee Amonrat, Le Bihan-Duval Elisabeth, Juanchich Amélie
School of Animal Technology and Innovation, Institute of Agricultural Technology, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.
INRAE, Université de Tours, BOA, 37380 Nouzilly, France.
Animals (Basel). 2021 Oct 15;11(10):2977. doi: 10.3390/ani11102977.
Here, molecular pathways and genes involved in the feed efficiency (FE) and thigh-meat quality of slow-growing Korat chickens were investigated. Individual feed intake values and body weights were collected weekly to the calculate feed conversion ratios (FCR) and residual feed intake. The biochemical composition and meat quality parameters were also measured. On the basis of extreme FCR values at 10 weeks of age, 9 and 12 birds from the high and the low FCR groups, respectively, were selected, and their transcriptomes were investigated using the 8 × 60 K Agilent chicken microarray. A weighted gene co-expression network analysis was performed to determine the correlations between co-expressed gene modules and FE, thigh-meat quality, or both. Groups of birds with different FE values also had different nucleotide, lipid, and protein contents in their thigh muscles. In total, 38 modules of co-expressed genes were identified, and 12 were correlated with FE and some meat quality traits. A functional analysis highlighted several enriched functions, such as biological processes, metabolic processes, nucleotide metabolism, and immune responses. Several molecular factors were involved in the interactions between FE and meat quality, including the assembly competence domain, baculoviral IAP repeat containing 5, cytochrome c oxidase assembly factor 3, and myosin light chain 9 genes.
在此,我们研究了参与慢速生长的呵叻鸡饲料效率(FE)和大腿肉品质的分子途径及基因。每周收集个体采食量和体重数据以计算饲料转化率(FCR)和剩余采食量。还测定了生化组成和肉质参数。基于10周龄时的极端FCR值,分别从高FCR组和低FCR组中挑选了9只和12只鸡,并使用8×60 K安捷伦鸡微阵列对其转录组进行研究。进行了加权基因共表达网络分析,以确定共表达基因模块与FE、大腿肉品质或两者之间的相关性。不同FE值的鸡群其大腿肌肉中的核苷酸、脂质和蛋白质含量也不同。总共鉴定出38个共表达基因模块,其中12个与FE和一些肉质性状相关。功能分析突出了几个富集功能,如生物过程、代谢过程、核苷酸代谢和免疫反应。FE与肉质之间的相互作用涉及几个分子因子,包括装配能力结构域、含杆状病毒IAP重复序列5、细胞色素c氧化酶装配因子3和肌球蛋白轻链9基因。