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논문명(한글), 논문명(영문), 성과주관부서, 품목코드, 학술지명, 주저자, 연도, 성과적용일, 첨부파일, 내용으로 구성된 글 상세입니다.
논문명(한글) |
A transcriptomic analysis of skeletal muscle tissues reveals promising candidate genes and pathways accountable for different daily weight gain in Hanwoo cattle |
논문명(영문) |
A transcriptomic analysis of skeletal muscle tissues reveals promising candidate genes and pathways accountable for different daily weight gain in Hanwoo cattle |
성과주관부서 |
국립축산과학원 축산생명환경부 동물유전체과 |
품목코드 |
생명공학 / 유전자 기능 및 제어 / 유전자발현조절 |
학술지명 |
Scientific Reports |
주저자 |
Sheet Sunirmal |
성과년도 |
2024 |
성과적용일 |
2024년04월 |
<P><B>Abstract</B><P>Cattle traits like average daily weight gain (ADG) greatly impact profitability. Selecting based on ADG considering genetic variability can lead to economic and genetic advancements in cattle breeding. This study aimed to unravel genetic influences on ADG variation in Hanwoo cattle at the skeletal muscle transcriptomic level. RNA sequencing was conducted on longissimus dorsi (LD), semimembranosus (SB), and psoas major (PM) muscles of 14 steers assigned to same feed, grouped by low (≤ 0.71 kg) and high (≥ 0.77 kg) ADG. At P ≤ 0.05 and log2fold > 1.5, the distinct pattern of gene expression was identified with 184, 172, and 210 differentially expressed genes in LD, SB, and PM muscles, respectively. Tissue-specific responses to ADG variation were evident, with myogenesis and differentiation associated JAK-STAT signaling pathway and prolactin signaling pathways enriched in LD and SB muscles, while adipogenesis-related PPAR signaling pathways were enriched in PM muscle. Key hub genes (<I>AXIN2</I>, <I>CDKN1A</I>, <I>MYC</I>, <I>PTGS2</I>, <I>FZD5</I>, <I>SPP1</I>) were upregulated and functionally significant in muscle growth and differentiation. Notably, <I>DPP6</I>, <I>CDKN1A</I>, and <I>FZD5</I> emerged as possible candidate genes linked to ADG variation. These findings enhance our understanding of genetic factors behind ADG variation in Hanwoo cattle, illuminating skeletal muscle mechanisms influencing ADG.</P></P>