Samitha S N Liyanage, Brian G Bosworth, Kaylan A Martin, Kyle R Wood, Alexandra E Nowicki, Jason W Abernathy, Nithin Muliya Sankappa, Benjamin H Beck, Timothy J Bruce, Matthew K Litvak, Rex A Dunham, Luke A Roy, Xu Wang, Ian A E Butts
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Histological images of the testis assessed stages of spermatogenesis, and sperm were activated for kinematic analysis. The testis transcriptome was profiled across distinct ages, 2, 4, 7, and 9. For fish aged 2 to 10 years, those over 7 years had the largest size, with a rapid increase until age 7 and a slight increase afterwards. Absolute sperm production was affected by age, with the highest levels observed at age 6, followed by a decreasing trend. T and 11-KT did not increase after age 6, while sperm kinematics were not impacted by age. Transcriptomics identified 5220 differentially expressed genes (DEGs) in all comparisons. The most DEGs were identified at age 7 with 2261 down-regulated and 1824 up-regulated genes. Functional enrichment revealed significant changes in axoneme, motile cilium, and sperm flagellum at age 7. In contrast, immune processes were increased in the testis at age 9 with viral and bacterial defense responses. 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引用次数: 0
摘要
鲶鱼养殖是美国最大的水产养殖业,其中由通道鲶鱼,Ictalurus punctatus♀× blue Catfish, I. furcatus♂杂交的鲶鱼占收成的50%左右。先前的研究表明,个体之间的繁殖表现存在很大差异。因此,在父亲的年龄和繁殖成功之间建立联系是至关重要的。本研究对103条2 ~ 10岁雄性蓝鲶的生殖进行了调查。采集形态计量学数据,抽血定量睾酮(T)、11-酮睾酮(11-KT)、渗透压和离子。睾丸的组织学图像评估了精子发生的阶段,精子被激活进行运动学分析。睾丸转录组在不同的年龄,2、4、7和9。对于2 ~ 10岁的鱼,7岁以上的鱼尺寸最大,直到7岁迅速增加,之后略有增加。绝对精子产量受年龄影响,6岁时最高,随后呈下降趋势。T和11-KT在6岁后没有增加,而精子的运动学不受年龄的影响。转录组学在所有比较中鉴定出5220个差异表达基因(deg)。7岁时发现的deg最多,有2261个下调基因和1824个上调基因。功能富集显示7岁时轴素、活动纤毛和精子鞭毛发生了显著变化。相比之下,9岁时睾丸中的免疫过程随着病毒和细菌防御反应而增加。结果提示,养殖户应保持6 ~ 7岁雄鱼的稳定供应,以提高孵化效率。
Age-related reproductive performance and transcriptome profiling of testis in male blue catfish, Ictalurus furcatus.
Catfish farming is the largest aquaculture industry in the U.S., where hybrid catfish produced by channel catfish, Ictalurus punctatus ♀ × blue catfish, I. furcatus ♂, represent > 50% of the harvest. Previous studies indicated a high degree of variation in reproductive performance among individuals. Therefore, it is crucial to establish a connection between paternal age and reproductive success. This study investigated the reproduction of 103 blue catfish males aged 2 to 10 years. Morphometric data were collected, and blood was drawn to quantify testosterone (T), 11-ketotestosterone (11-KT), osmolality, and ions. Histological images of the testis assessed stages of spermatogenesis, and sperm were activated for kinematic analysis. The testis transcriptome was profiled across distinct ages, 2, 4, 7, and 9. For fish aged 2 to 10 years, those over 7 years had the largest size, with a rapid increase until age 7 and a slight increase afterwards. Absolute sperm production was affected by age, with the highest levels observed at age 6, followed by a decreasing trend. T and 11-KT did not increase after age 6, while sperm kinematics were not impacted by age. Transcriptomics identified 5220 differentially expressed genes (DEGs) in all comparisons. The most DEGs were identified at age 7 with 2261 down-regulated and 1824 up-regulated genes. Functional enrichment revealed significant changes in axoneme, motile cilium, and sperm flagellum at age 7. In contrast, immune processes were increased in the testis at age 9 with viral and bacterial defense responses. Results suggest that farmers should maintain consistent supplies of age 6 and 7 males to increase hatchery efficiency.
期刊介绍:
BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics.
BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.