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Litter size and piglet traits of gilts with different prolactin receptor genotypes

机译:不同催乳素受体基因型小母猪的产仔数和仔猪性状

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Seventy-seven Large White x Meishan F2 crossbred gilts with prolactin receptor (PRLR) genotype AA (n = 26), AB (n = 36) and 1313 (n = 15) were compared for teat number (FTm), age at first estrus, gestation length (GL), litter size, and litter means of functional teat number (FTp), birthweight (BW), and pre-weaning growth rate (GR). Own placental information was available for 88% of 620 live-born piglets (62 gilts), since placentae were labeled during farrowing. The effect of PRLR genotype of the mother on average placenta weight (PLW) and placenta efficiency (EFF = BWIPLW), was therefore, also analyzed. PRLR genotype significantly (P < 0.05) affected age at first estrus and, as a result (since the gilts were inseminated at a fixed estrus number), age and bodyweight at insemination. Furthermore, PRLR genotype affected total number of piglets born (TNB, P = 0.056) and number of piglets born alive (NBA, P = 0.072), but it did not affect (P > 0.3) GL, BW or GR, neither before nor after correction for litter size. BB gilts were significantly younger at first estrus and younger and lighter at insemination than AA gilts (P < 0.05). AA gilts had larger TNB (P = 0.047) and tended to have a larger NBA (P = 0.062) than BB gilts. TNB was 11.4 +/- 0.7, 10.8 +/- 0.6, and 8.8 +/- 0.9; NBA was 11.1 +/- 0.6, 10.5 +/- 0.6, and 8.7 +/- 0.9; BW was 1309 +/- 40,1277 +/- 34, and 1290 +/- 53 g; and GL was 113.6 +/- 0.3, 113.8 +/- 0.3, and 113.5 +/- 0.4 days for AA, AB and BB gilts, respectively. The effects on litter size and age at first estrus are independent effects. PRLR affected PLW (P = 0.050) and EFF (P = 0.066), resulting in a difference between AA and BB gilts. PLW was 160 9, 181 7 and 196 +/- 11 g and EFF was 7.6 +/- 0.2, 7.3 +/- 0,2 and 6.7 +/- 0.3 for AA (n = 19), AB (11 = 29) and 1313 (n = 14) gilts, respectively. After correction for TNB, the differences disappeared. Functional teat number of the AA, AB and BB gilts was 15.35 +/- 0.22, 15.53 +/- 0.18, and 15.60 +/- 0.29, respectively, and was not affected by PRLR genotype (P = 0.7). Functional teat number of piglets from AA, AB and 1313 mothers was 14.20 +/- 0. 10, 14.37 +/- 0.08, and 14.63 +/- 0.13, respectively. Piglets from BB mothers had on average larger numbers of functional teats compared to piglets from AA mothers (P = 0.028). In conclusion, PRLR gene is a major gene or marker for age at first estrus, litter size, and litter average of number of functional teats in the Large White x Meishan F2 crossbred gilts studied. The favorable allele for litter size (A allele) is the unfavorable allele for age at first estrus and for litter mean of functional teat number.
机译:比较具有泌乳素受体(PRLR)基因型AA(n = 26),AB(n = 36)和1313(n = 15)的77头大白x眉山F2杂交后备母猪的乳头数(FTm),初发年龄,妊娠长度(GL),产仔数以及功能性奶头数(FTp),出生体重(BW)和断奶前生长率(GR)的产仔平均值。 620头活产仔猪(62头母猪)中有88%拥有自己的胎盘信息,因为在分娩过程中对胎盘进行了标记。因此,还分析了母亲的PRLR基因型对平均胎盘重量(PLW)和胎盘效率(EFF = BWIPLW)的影响。 PRLR基因型显着影响(P <0.05)初发期的年龄,结果(由于小母猪以固定的发情期进行授精),年龄和体重。此外,PRLR基因型影响出生的仔猪总数(TNB,P = 0.056)和存活的仔猪数量(NBA,P = 0.072),但没有影响(P> 0.3)GL,BW或GR,既没有影响,也没有影响校正垫料尺寸后。 BB小母猪的发情期比AA小母猪明显年轻,并且在授精时更年轻,更轻(P <0.05)。 AA后备母猪的TNB较大(P = 0.047),而NBA(P = 0.062)往往比BB后备母猪更大。 TNB为11.4 +/- 0.7、10.8 +/- 0.6和8.8 +/- 0.9; NBA是11.1 +/- 0.6、10.5 +/- 0.6和8.7 +/- 0.9; BW为1309 +/- 40,1277 +/- 34和1290 +/- 53 g; AA,AB和BB母猪的GL分别为113.6 +/- 0.3、113.8 +/- 0.3和113.5 +/- 0.4天。初发期对产仔数和年龄的影响是独立的影响。 PRLR影响了PLW(P = 0.050)和EFF(P = 0.066),导致AA和BB后备母猪之间存在差异。 AA(n = 19),AB(11 = 29)的PLW为160 9、181 7和196 +/- 11 g,EFF为7.6 +/- 0.2、7.3 +/- 0.2和6.7 +/- 0.3和1313(n = 14)个小母猪。校正TNB后,差异消失了。 AA,AB和BB小母猪的功能奶头数分别为15.35 +/- 0.22、15.53 +/- 0.18和15.60 +/- 0.29,并且不受PRLR基因型的影响(P = 0.7)。来自AA,AB和1313位母亲的仔猪的功能奶头数量分别为14.20 +/- 0。10、14.37 +/- 0.08和14.63 +/- 0.13。与来自AA母亲的仔猪相比,来自BB母亲的仔猪平均具有更多的功能性乳头(P = 0.028)。总之,PRLR基因是研究的大白x眉山F2杂交后备母猪初发期,产仔数和功能奶头平均产仔数的主要基因或标记。产仔数的有利等位基因(A等位基因)是在发情初期和功能性奶头数的产仔均数方面不利的等位基因。

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