Ncube Keabetswe T, Dzomba Edgar F, Rosen Ben D, Schroeder Stephen G, Van Tassell Curt P, Muchadeyi Farai C
Biotechnology Platform, Agricultural Research Council, Pretoria, South Africa.
Discipline of Genetics, School of Life Sciences, University of Kwa-Zulu Natal, Scottsville, South Africa.
Front Genet. 2022 Aug 22;13:811193. doi: 10.3389/fgene.2022.811193. eCollection 2022.
Growth and carcass quality are economically important traits in goat production. This study investigated differentially expressed genes from the caprine pituitary gland transcriptome of South African indigenous goat breeds of varying growth performances and carcass quality parameters. Tissues were harvested from the pituitary gland of three South African Boer goats and three village ecotype goats all raised under similar conditions simulating intensive commercial production systems. Three additional tissues were harvested from village ecotype goats that were raised extensively on village farms. Between breed differences were investigated by comparing differential gene expression among three South African Boer and three village goats that were both raised under intensive commercial production system at a research farm. Within-breed differences were investigated by comparing differential gene expression among three village goats raised under extensive conditions (on-farm in Pella, S.A. village farming community) and three village goats raised under intensive commercial production system (at ARC research farm in Pretoria, South Africa. Total RNA was isolated from the pituitary gland of 36-week-old animals () and sequenced individually in triplicates. An average of 28,298,512 trimmed, and quality-controlled reads/animal were mapped to the goat genome () using HiSat2 software. Transcript assembly and quantification yielded 104 differentially expressed genes for village goats raised under extensive system and 62 for village goats raised under the intensive production system at the false discovery rate (FRD) of ≤0.05 and a fold change of ≥2. Growth-related genes such as and were highly expressed within breeds raised under both production systems. Conversely, growth-related genes such as and genes were highly expressed between breeds raised under similar production systems. Ballgown analysis revealed a high expression of and in the intensively raised compared to extensively raised goats. Both genes were also highly expressed in the village goats when compared to the Boer. The differential gene expression data provided insights into genes and molecular mechanisms associated with growth and growth development in goats.
生长性能和胴体品质是山羊生产中具有重要经济意义的性状。本研究调查了南非不同生长性能和胴体品质参数的本土山羊品种垂体转录组中的差异表达基因。从三只南非布尔山羊和三只乡村生态型山羊的垂体中采集组织,所有山羊均在模拟集约化商业生产系统的相似条件下饲养。另外从在乡村农场粗放饲养的乡村生态型山羊中采集了三个额外的组织样本。通过比较在研究农场集约化商业生产系统下饲养的三只南非布尔山羊和三只乡村山羊之间的差异基因表达,研究了品种间差异。通过比较在粗放条件下(南非佩拉村农业社区的农场)饲养的三只乡村山羊和在集约化商业生产系统下(南非比勒陀利亚的农业研究理事会农场)饲养的三只乡村山羊之间的差异基因表达,研究了品种内差异。从36周龄动物的垂体中分离总RNA,并单独进行三次重复测序。使用HiSat2软件将平均28,298,512条经过修剪和质量控制的 reads/动物映射到山羊基因组。转录本组装和定量分析显示,在错误发现率(FDR)≤0.05且倍数变化≥2的情况下,粗放饲养系统下的乡村山羊有104个差异表达基因,集约化生产系统下的乡村山羊有62个差异表达基因。在两种生产系统下饲养的品种内,与生长相关的基因如 和 高表达。相反,在相似生产系统下饲养的品种间,与生长相关的基因如 和 高表达。Ballgown分析显示,与粗放饲养的山羊相比,集约化饲养的山羊中 和 表达较高。与布尔山羊相比,这两个基因在乡村山羊中也高表达。差异基因表达数据为山羊生长和生长发育相关的基因及分子机制提供了见解。