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佛罗里达州图利、塞内波尔和婆罗门公牛与安格斯母牛杂交的F1代小母牛的耐热性

Heat tolerance in Tuli-, Senepol-, and Brahman-sired F1 Angus heifers in Florida.

作者信息

Hammond A C, Chase C C, Bowers E J, Olson T A, Randel R D

机构信息

Subtropical Agricultural Research Station, ARS, USDA, Brooksville, FL 34601-4672, USA.

出版信息

J Anim Sci. 1998 Jun;76(6):1568-77. doi: 10.2527/1998.7661568x.

Abstract

We investigated heat tolerance and growth rate in two trials under ambient conditions in central Florida. Trial 1 (1994) involved 38 Brahman (B), 21 Senepol (S), 19 B x Angus (A), 20 S x A, and 20 Tuli (T) x A heifers. Trial 2 (1995) involved 13 A, 35 B, 30 S, 23 B x A, 17 S x A, and 28 T x A heifers. Measurements were made on three consecutive weeks during the hotter and cooler seasons of each year and included rectal temperature (RT, degrees C), respiration rate (RR, bpm), temperament score (TS; 1 = very docile, 5 = very aggressive), blood packed-cell volume (PCV), and plasma cortisol concentration (CORT). Data for RT were transformed (log10 [RT - 37]) before analysis. On the hottest date in Trial 1, log10 RT was not different between B (.39 +/- .011) and B x A (.37 +/- .016) or between T x A (.35 +/- .015) and B x A, but log10 RT was lower (P < .05) in S x A (.30 +/- .015) than in either S (.35 +/- .015) or T x A. On all dates in Trial 1, RR was lower (P < .05 to .001) and PCV was higher (P < .05 to .001) in B than in B x A. There were few differences in TS except on two dates when B scored higher (P < .01 to .001) than B x A, and these differences were associated with higher (P < .05) CORT in B than in B x A. Using initial BW as a covariate, adjusted ADG (kg) of T x A (.52 +/- .023) was not different from adjusted ADG of B x A (.57 +/- .024) or S x A (.54 +/- .023). On the hottest date in Trial 2, log10 RT and RR were higher (P < .001) in A (.59 +/- .017, 74 +/- 2.7) than in B (.47 +/- .010, 39 +/- 1.6), S (.42 +/- .011, 50 +/- 1.8), and crossbred heifers (.47 +/- .011, 60 +/- 1.8; .43 +/- .014, 55 +/- 2.4; and .50 +/- .012, 48 +/- 2.0 for T x A, S x A and B x A, respectively), and RR was higher (P < .001) in B x A than in B. On the coolest date in Trial 2, RR was slightly lower in B (32 +/- .5) than in A(34 +/- .7, P < .01) and B x A (36 +/- .6, P < .001) and was associated with higher PCV in B than in A. On both dates, TS and CORT were higher (P < .01) in B than in A. In Trial 2, adjusted ADG (kg) was higher (P < .01) in B (.43 +/- .017) than in A (.32 +/- .033), higher (P < .001) in S (.45 +/- .018) than in A, and higher (P < .001) in crossbreds (B x A [.53 +/- .023] + S x A [.44 +/- .025] + T x A [.46 +/- .019]) than in A. These data indicate that heat tolerance in F1 crosses of tropically adapted breeds (Tuli, Senepol, Brahman) with a temperate breed (Angus) is similar to heat tolerance displayed by purebred tropical breeds (Senepol, Brahman).

摘要

我们在佛罗里达州中部的环境条件下进行了两项试验,研究耐热性和生长速率。试验1(1994年)涉及38头婆罗门牛(B)、21头塞内波尔牛(S)、19头婆罗门牛×安格斯牛(A)杂交母牛、20头塞内波尔牛×安格斯牛杂交母牛和20头图利牛(T)×安格斯牛杂交母牛。试验2(1995年)涉及13头安格斯牛、35头婆罗门牛、30头塞内波尔牛、23头婆罗门牛×安格斯牛杂交母牛、17头塞内波尔牛×安格斯牛杂交母牛和28头图利牛×安格斯牛杂交母牛。在每年较热和较凉爽季节的连续三周进行测量,包括直肠温度(RT,摄氏度)、呼吸频率(RR,次/分钟)、性情评分(TS;1 = 非常温顺,5 = 非常好斗)、血液红细胞压积(PCV)和血浆皮质醇浓度(CORT)。RT数据在分析前进行了转换(log10 [RT - 37])。在试验1最热的日期,婆罗门牛(.39 ±.011)和婆罗门牛×安格斯牛杂交母牛(.37 ±.016)之间的log10 RT没有差异,图利牛×安格斯牛杂交母牛(.35 ±.015)和婆罗门牛×安格斯牛杂交母牛之间也没有差异,但塞内波尔牛×安格斯牛杂交母牛(.30 ±.015)的log10 RT低于塞内波尔牛(.35 ±.015)或图利牛×安格斯牛杂交母牛(P <.05)。在试验1的所有日期,婆罗门牛的RR较低(P <.05至.001),PCV较高(P <.05至.001)。TS差异很少,只有两个日期婆罗门牛的得分高于婆罗门牛×安格斯牛杂交母牛(P <.01至.001),这些差异与婆罗门牛的CORT高于婆罗门牛×安格斯牛杂交母牛(P <.05)有关。以初始体重作为协变量,图利牛×安格斯牛杂交母牛(.52 ±.023)的调整后平均日增重(ADG,千克)与婆罗门牛×安格斯牛杂交母牛(.57 ±.024)或塞内波尔牛×安格斯牛杂交母牛(.54 ±.023)的调整后平均日增重没有差异。在试验2最热的日期,安格斯牛(.59 ±.017,74 ± 2.7)的log10 RT和RR高于婆罗门牛(.47 ±.010,39 ± 1.6)、塞内波尔牛(.42 ±.011,50 ± 1.8)和杂交母牛(图利牛×安格斯牛杂交母牛、塞内波尔牛×安格斯牛杂交母牛和婆罗门牛×安格斯牛杂交母牛分别为.47 ±.011,60 ± 1.8;.43 ±.014,55 ± 2.4;和.50 ±.012,48 ± 2.0),婆罗门牛×安格斯牛杂交母牛的RR高于婆罗门牛(P <.001)。在试验2最凉爽的日期,婆罗门牛(32 ±.5)的RR略低于安格斯牛(34 ±.7,P <.01)和婆罗门牛×安格斯牛杂交母牛(36 ±.6,P <.001),且与婆罗门牛的PCV高于安格斯牛有关。在这两个日期,婆罗门牛的TS和CORT均高于安格斯牛(P <.01)。在试验2中,婆罗门牛(.43 ±.017)的调整后ADG高于安格斯牛(.32 ±.033)(P <.01),塞内波尔牛(.45 ±.018)的调整后ADG高于安格斯牛(P <.001),杂交母牛(婆罗门牛×安格斯牛杂交母牛[.53 ±.023] + 塞内波尔牛×安格斯牛杂交母牛[.44 ±.025] + 图利牛×安格斯牛杂交母牛[.46 ±.019])的调整后ADG高于安格斯牛(P <.001)。这些数据表明,热带适应品种(图利牛、塞内波尔牛、婆罗门牛)与温带品种(安格斯牛)的F1杂交后代的耐热性与纯种热带品种(塞内波尔牛、婆罗门牛)的耐热性相似。

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