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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Defective reproductive organ morphology and function in domestic rooster embryonically exposed to o,p '-DDT or ethynylestradiol
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Defective reproductive organ morphology and function in domestic rooster embryonically exposed to o,p '-DDT or ethynylestradiol

机译:胚胎暴露于o,p'-DDT或乙炔雌二醇的家养公鸡中生殖器官的形态和功能不良

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摘要

Environmental pollutants with estrogenic activity have a potential to disrupt estrogen-dependent developmental processes. The objective of this study was to investigate if embryonic exposure to the environmental estrogens o,p'-DDT (1-(2-chlorophenyl)-1-(4-chlorophenyl)-2,2,2-trichloroethane; 37, 75, 150 or 300 mu g/g egg) and EE2 (17alpha-ethynyl estradiol; 60 ng/g egg) affects the reproductive system in domestic roosters. Following egg injection on Embryonic Day 4, the newly hatched chicks were sexed by cloacal inspection. A skewed phenotypic sex ratio with over-representation of chicks deemed as females was observed in the groups exposed to the three highest doses of o,p'-DDT but not in the EE2-exposed group. Normal sex ratios were observed in all groups at adulthood. However, a cloacal deformation seemed to remain in the adult roosters, causing an abnormal semen flow upon semen collection. Semen yield was significantly reduced in both o,p'-DDT-exposed and EE2-exposed birds, whereas semen quality was unaffected. When killed, deformations of the left testis were found in all treatment groups. Image analysis revealed a reduced seminiferous tubular area in the roosters exposed to the two highest doses of o,p'-DDT. Embryonic exposure to o,p'-DDT caused decreased comb weight and right-spur diameter, while EE2 only affected right-spur diameter. In conclusion, this study shows that embryonic exposure to estrogenic compounds can induce permanent effects in male birds. The effects of the two studied compounds were partly similar but o,p'-DDT also induced alterations not seen in the EE2-treated birds.
机译:具有雌激素活性的环境污染物有可能破坏依赖雌激素的发育过程。这项研究的目的是调查胚胎是否暴露于环境雌激素o,p'-DDT(1-(2-氯苯基)-1-(4-氯苯基)-2,2,2-三氯乙烷; 37,75, 150或300μg / g鸡蛋)和EE2(17α-乙炔基雌二醇; 60 ng / g鸡蛋)影响家禽的生殖系统。在胚胎第4天注射卵后,通过泄殖腔检查对刚孵出的雏鸡进行性别鉴定。在暴露于o,p'-DDT三种最高剂量的组中,观察到表型性别比例偏高,认为小鸡被视为雌性,但在暴露于EE2的组中则没有。在成年期所有组中均观察到正常的性别比。然而,成年雄鸡似乎仍存在泄殖腔变形,导致精液收集时精液异常流动。暴露于o,p'-DDT的家禽和暴露于EE2的家禽的精液产量均显着降低,而精液质量未受影响。杀死后,在所有治疗组中均发现左睾丸变形。图像分析显示,暴露于两种最高剂量的o,p'-DDT的公鸡的生曲小管面积减少。胚胎暴露于o,p'-DDT导致梳齿重量和右突径减小,而EE2仅影响右突径。总之,这项研究表明,胚胎暴露于雌激素化合物可以诱导雄性鸟类产生永久性影响。两种研究化合物的作用部分相似,但o,p'-DDT也诱导了在EE2处理的禽类中未见的改变。

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