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在哺乳肉用母牛和后备肉用小母牛的七天同期发情 + 可控性宫内药物释放排卵同步方案开始时施用前列腺素F的效果。

Effects of administration of prostaglandin F at initiation of the seven-day CO-Synch+controlled internal drug release ovulation synchronization protocol for suckled beef cows and replacement beef heifers.

作者信息

Mercadante V R G, Kozicki L E, Ciriaco F M, Henry D D, Dahlen C R, Crosswhite M R, Larson J E, Voelz B E, Patterson D J, Perry G A, Funston R N, Steckler T L, Hill S L, Stevenson J S, Lamb G C

出版信息

J Anim Sci. 2015 Nov;93(11):5204-13. doi: 10.2527/jas.2015-8967.

Abstract

Two experiments were conducted to determine the effect of administering PGF at the initiation of the 7-d CO-Synch+controlled internal drug release (CIDR) fixed-timed AI (TAI) protocol on pregnancy rates of suckled beef cows and replacement heifers. Within location, cows were stratified by days postpartum (DPP), BCS, and parity (Exp. 1; = 1,551) and heifers were stratified by BCS (Exp. 2; = 999) and randomly assigned to 1 of 2 treatments: 1) CO-Synch+CIDR (100-μg injection of GnRH at CIDR insertion [d -10] with a 25-mg injection of PGF at CIDR removal [d -3] followed by injection of GnRH and TAI on d 0) or 2) PG-CO-Synch+CIDR (a 25-mg injection of PGF on d -10 of the CO-Synch+CIDR protocol). Follicle diameter and corpus luteum (CL) development were assessed on d -10 and -3, and pregnancy status was determined on d 30 to 35. Blood was collected on d -20, -10, -3, and 0 relative to TAI to determine concentrations of progesterone (P4). In Exp. 1, TAI pregnancy rates did not differ ( = 0.667) between treatments and were affected by BCS ( = 0.003) and DPP ( = 0.006). Concentrations of P4 were greater ( < 0.0001) on d -3 for CO-Synch+CIDR than for PG-CO-Synch+CIDR (4.1 ± 0.2 and 3.4 ± 0.2 ng/mL, respectively). Follicle diameter on d -3 differed ( = 0.05) between PG-CO-Synch+CIDR (13.4 ± 0.3 mm) and CO-Synch+CIDR (12.5 ± 0.3 mm) treatments. Cows with P4 > 2.5 ng/mL on d -10 had greater ( = 0.024) pregnancy rate to TAI (56.5%) compared with cows with 2.5 ng/mL < P4 > 1 (43.0%), whereas cows with P4 < 1 ng/mL were intermediate (51.6%). Cows with a CL on d -10 had greater ( = 0.012) pregnancy rates to TAI than cows without a CL (66.3 vs. 39.4%, respectively). In Exp. 2, TAI pregnancy rates did not differ ( = 0.316) between treatments. Concentrations of P4 differed ( < 0.0001) on d -3 with greater concentrations of P4 for CO-Synch+CIDR than for PG-CO-Synch+CIDR (3.75 ± 0.20 ng/mL and 3.60 ± 0.21 ng/mL, respectively). Follicle diameter was similar ( = 0.749) between treatments on d -10 and -3. Regardless of treatment, cyclic status tended ( = 0.062) to improve pregnancy rates to TAI (55 vs. 45%, for cycling and noncycling heifers, respectively). We concluded that addition of PGF to the 7-d CO-Synch+CIDR protocol decreased concentrations of P4 in cows and heifers and increased follicle diameter at CIDR removal in cows but failed to increase TAI pregnancy rates.

摘要

进行了两项试验,以确定在7天的同期发情+控制内部药物释放(CIDR)定时人工授精(TAI)方案开始时施用前列腺素F(PGF)对哺乳肉用母牛和后备小母牛妊娠率的影响。在各地点内,母牛按产后天数(DPP)、体况评分(BCS)和胎次分层(试验1;n = 1551),小母牛按BCS分层(试验2;n = 999),并随机分配到两种处理中的一种:1)同期发情+CIDR(在插入CIDR时[d -10]注射100μg促性腺激素释放激素(GnRH),在取出CIDR时[d -3]注射25mg PGF,随后在第0天注射GnRH和TAI)或2)PG-同期发情+CIDR(在同期发情+CIDR方案的第-10天注射25mg PGF)。在第-10天和-3天评估卵泡直径和黄体(CL)发育情况,并在第30至35天确定妊娠状态。在相对于TAI的第-20天、-10天、-3天和0天采集血液,以测定孕酮(P4)浓度。在试验1中,两种处理之间的TAI妊娠率没有差异(P = 0.667),且受BCS(P = 0.003)和DPP(P = 0.006)影响。同期发情+CIDR组在第-3天的P4浓度高于PG-同期发情+CIDR组(分别为4.1±0.2和3.4±0.2ng/mL,P < 0.0001)。PG-同期发情+CIDR组(13.4±0.3mm)和同期发情+CIDR组(12.5±0.3mm)在第-3天的卵泡直径存在差异(P = 0.05)。第-10天P4>2.5ng/mL的母牛与2.5ng/mL1的母牛相比,TAI妊娠率更高(分别为56.5%和43.0%,P = 0.024),而P4<1ng/mL的母牛处于中间水平(51.6%)。第-10天有CL的母牛比没有CL的母牛TAI妊娠率更高(分别为66.3%和39.4%,P = 0.012)。在试验2中,两种处理之间的TAI妊娠率没有差异(P = 0.316)。第-3天的P4浓度存在差异(P < 0.0001),同期发情+CIDR组的P4浓度高于PG-同期发情+CIDR组(分别为3.75±0.20和3.60±0.21ng/mL)。两种处理在第-10天和-3天的卵泡直径相似(P = 0.749)。无论处理如何,发情周期状态倾向于提高TAI妊娠率(发情和未发情小母牛的妊娠率分别为55%和45%,P = 0.062)。我们得出结论,在7天的同期发情+CIDR方案中添加PGF可降低母牛和小母牛的P4浓度,并增加母牛在取出CIDR时的卵泡直径,但未能提高TAI妊娠率。

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