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利用 Q-FISH 分析评估二倍体和三倍体虹鳟鱼中的端粒动态。

Telomere Dynamics in the Diploid and Triploid Rainbow Trout () Assessed by Q-FISH Analysis.

机构信息

Department of Marine Biology and Ecology, Institute of Oceanography, Faculty of Oceanography and Geography, University of Gdansk, M. Piłsudskiego 46 Av, 81378 Gdynia, Poland.

Department of Salmonid Research, Inland Fisheries Institute in Olsztyn, Rutki, 10719 Olsztyn, Poland.

出版信息

Genes (Basel). 2020 Jul 13;11(7):786. doi: 10.3390/genes11070786.

Abstract

Changes of telomere length with age were assessed in diploid and triploid rainbow trout ) females in the cross-sectional study using Q-FISH technique. Triploid trout as sterile do not invest an energy in gametogenesis and continue to grow, whereas fertile diploid individuals suffer from declines in growth and survival during sexual maturation. However, triploid and diploid specimens exhibited similar patterns of telomere dynamics. Telomere length in the embryos, larvae and one-year-old juveniles did not change significantly. In the second year after hatching, subadults exhibited substantially shortened telomeres, while significant increase of the telomere length was reported in the three-year-old adults. On the other hand, correlation between telomere length and body size was observed in the triploid, but not in the diploid rainbow trout. Telomere shortening observed in two-year-old subadults may have been associated with the premature period of the fast growth in rainbow trout. Similar pattern of the telomere dynamics reported in the fertile diploids and sterile triploids indicated processes related to reproduction did not affect telomere dynamics in this species. Unexpected increase of the telomere length reported during the third year of life confirmed that in rainbow trout telomeric DNA shortens and lengthens, depending on the developmental stage.

摘要

采用 Q-FISH 技术,在横断研究中评估了二倍体和三倍体虹鳟鱼雌性个体随年龄增长的端粒长度变化。三倍体虹鳟鱼由于不育,不会在配子发生上投入能量,而是继续生长,而有生育能力的二倍体个体在性成熟期间会经历生长和存活的下降。然而,三倍体和二倍体标本表现出相似的端粒动力学模式。胚胎、幼虫和一岁幼鱼的端粒长度没有显著变化。在孵化后第二年,亚成体的端粒明显缩短,而在三岁的成体中报告了端粒长度的显著增加。另一方面,在三倍体中观察到端粒长度与体型之间的相关性,但在二倍体中没有。在两岁的亚成体中观察到的端粒缩短可能与虹鳟鱼快速生长的早期阶段有关。在有生育能力的二倍体和不育的三倍体中报告的相似端粒动力学模式表明,与繁殖相关的过程不会影响该物种的端粒动力学。在生命的第三年报告的端粒长度的意外增加证实了在虹鳟鱼中,端粒 DNA 会根据发育阶段缩短和延长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee3f/7397301/4099ea89c1df/genes-11-00786-g001.jpg

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