韩国土鸡父系端粒长度与子代生产性能的关系

Bo Gyeong Kim, S. Sohn
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摘要

以韩国土鸡为试验对象,研究了端粒长度对繁殖性能的影响、端粒长度与子代的关系以及端粒长度与子代生产性能的关系。以22只鸡和329只鸡子代为试验对象,分析了其育性、胚胎死亡率、孵化率等父代繁殖性能和成活率、体重、增重等子代生产性能。利用淋巴细胞进行定量荧光原位杂交,分析端粒长度。不同端粒长度鸡的育性、胚胎死亡率和孵化率均无显著差异(P0.05)。父亲端粒长组的后代表现出相对较差的生长性能。父本端粒长度与子代生长性能呈显著负相关(P0.05)。由此可见,父本端粒长度与繁殖性能、子代存活率和子代端粒长度均存在较弱的相关性。而父本端粒长度与子代生长性能呈负相关。这种结果可能是由于胚胎早期端粒重编程导致端粒长度的再延长,以及出生后随着年龄的增长,端粒缩短的程度不同。
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Association between Paternal Telomere Length and Offspring Production Performance in Korean Native Chickens
The effect of paternal telomere length on reproductive performance, relationship between paternal and offspring telomere length, and association between paternal telomere length and offspring production performance were investigated in Korean native chickens. Using 22 paternal chickens and 329 offspring, the paternal reproductive performance such as fertility, embryo mortality, and hatchability, as well as the offspring production performance such as survival rate, body weight, and weight gain were analyzed. Telomere length was analyzed through quantitative fluorescence in situ hybridization using lymphocytes. No significant differences were observed in fertility, embryo mortality, and hatchability between paternal chicken telomere lengths ( P<0.05 ). These results indicate that paternal telomere length had a weak negative correlation with fertility and embryonic death rate but a weak positive correlation with hatchability. The correlation coefficient between paternal telomere length and offspring survival rate was r=0.17 ( P>0.05 ). The group of offspring with long paternal telomeres showed relatively poor growth performance. Moreover, a significant negative correlation was estimated between paternal telomere length and offspring growth performance ( P<0.05 ). The correlation coefficient between paternal and offspring telomere lengths was r=0.075 ( P>0.05 ). In conclusion, there was a weak association between paternal telomere length and reproductive performance, offspring survival rate, and offspring telomere length, respectively. However, paternal telomere length and offspring growth performance showed a negative relationship. Such results could be due to the re-extension of telomere length by telomere reprogramming in the early embryonic stage and the different degree of telomere shortening between individuals with increasing age after birth.
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