Swaggerty Christina L, Pevzner Igal Y, Ferro Pamela J, Crippen Tawni L, Kogut Michael H
United States Department of Agriculture, Agricultural Research Services, Southern Plains Agricultural Research Center, 2881 F & B Road, College Station, TX 77845, USA.
Avian Pathol. 2003 Oct;32(5):483-8. doi: 10.1080/0307945031000154071.
We recently showed that in vitro heterophil functional efficiency in commercial broiler chickens is genetically controlled and may be a sex-associated trait. To further characterize the genetic mechanism(s) of heterophil functional efficiency, we wanted to determine whether the feathering gene, present on the Z sex chromosome, contributes to heterophil functional efficiency. Heterophils from two pairs of broiler lines were evaluated; each pair contained a fast feather (FF) (lines A and X) and a slow feather (SF) line (lines B and Y). On days 1 and 4 post-hatch, heterophils isolated from two sets of pure line broilers (A and B, and X and Y) were evaluated for their ability to (1) phagocytize Salmonella enteritidis, and (2) exhibit bactericidal activity against S. enteritidis. On days 1 and 4 post-hatch, heterophils isolated from the FF lines were statistically (P < or = 0.02) more proficient at phagocytizing S. enteritidis than heterophils from SF lines. Bactericidal activity was also statistically (p < or = 0.02) greater on day 1 post-hatch in the heterophils isolated from FF lines compared to heterophils isolated from SF lines. These data indicate that the presence of the FF gene locus on the Z sex chromosome contributes to heterophil function and may contribute to the early innate immune competence of a flock.
我们最近发现,商品肉鸡体外嗜异性白细胞功能效率受基因控制,可能是一种与性别相关的性状。为了进一步描述嗜异性白细胞功能效率的遗传机制,我们想确定存在于Z性染色体上的羽速基因是否对嗜异性白细胞功能效率有影响。对两对肉鸡品系的嗜异性白细胞进行了评估;每对包含一个快羽(FF)品系(A系和X系)和一个慢羽(SF)品系(B系和Y系)。在孵化后第1天和第4天,对从两组纯系肉鸡(A和B,以及X和Y)分离的嗜异性白细胞进行了以下能力评估:(1)吞噬肠炎沙门氏菌,以及(2)对肠炎沙门氏菌表现出杀菌活性。在孵化后第1天和第4天,从FF品系分离的嗜异性白细胞在吞噬肠炎沙门氏菌方面比从SF品系分离的嗜异性白细胞在统计学上更熟练(P≤0.02)。与从SF品系分离的嗜异性白细胞相比,在孵化后第1天从FF品系分离的嗜异性白细胞的杀菌活性在统计学上也更高(p≤0.02)。这些数据表明,Z性染色体上FF基因座的存在有助于嗜异性白细胞功能,可能有助于鸡群早期的先天免疫能力。