Matheus S. Lucca, Ivan C. Bustamante-Filho, Rafael R. Ulguim, Rafael D. F. Gianluppi, Joseph A. M. Evaristo, Fábio C. S. Nogueira, Luís F. S. M. Timmers, Ana P. G. Mellagi, Ivo Wentz, Fernando P. Bortolozzo
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引用次数: 0
摘要
公猪精浆(SP)蛋白质与精子在 17°C 下的耐冷却性差异有关。然而,有关按精液保存能力和体内繁殖力分类的公猪精浆蛋白质的信息仍然缺乏。因此,本研究旨在评估按精液保存能力分类的公猪精浆蛋白质组和生育力的假定生物标志物。与低保存率(LP)公猪相比,高保存率(HP)公猪的射精在5天内都表现出更高的渐进运动性。LP 公猪(89.7%)和 HP 公猪(88.4%)的射精在产仔率上没有差异。LP 公猪出生的仔猪总数(14.0 ± 0.2)低于 HP 公猪(14.8 ± 0.2; p
Proteomic analysis of boar seminal plasma: Putative markers for fertility based on capacity of semen preservation at 17°C
Boar seminal plasma (SP) proteins were associated with differences on sperm resistance to cooling at 17°C. However, information about seminal plasma proteins in boars classified by capacity of semen preservation and in vivo fertility remains lacking. Thus, the objective was to evaluate the SP proteome in boars classified by capacity of semen preservation and putative biomarkers for fertility. The ejaculates from high-preservation (HP) showed higher progressive motility during all 5 days than the low-preservation (LP) boars. There was no difference for farrowing rate between ejaculates from LP (89.7%) and HP boars (88.4%). The LP boars presented lower total piglets born (14.0 ± 0.2) than HP (14.8 ± 0.2; p < 0.01). A total of 257 proteins were identified, where 184 were present in both classes of boar, and 41 and 32 were identified only in LP and HP boars, respectively. Nine proteins were differently expressed: five were more abundant in HP (SPMI, ZPBP1, FN1, HPX, and C3) and four in LP boars (B2M, COL1A1, NKX3-2, and MPZL1). The HP boars had an increased abundance of SP proteins related to sperm resistance and fecundation process which explains the better TPB. LP boars had a higher abundance of SP proteins associated with impaired spermatogenesis.
期刊介绍:
Molecular Reproduction and Development takes an integrated, systems-biology approach to understand the dynamic continuum of cellular, reproductive, and developmental processes. This journal fosters dialogue among diverse disciplines through primary research communications and educational forums, with the philosophy that fundamental findings within the life sciences result from a convergence of disciplines.
Increasingly, readers of the Journal need to be informed of diverse, yet integrated, topics impinging on their areas of interest. This requires an expansion in thinking towards non-traditional, interdisciplinary experimental design and data analysis.