Department of Marine Biology and Ecology, Institute of Oceanography, University of Gdansk, M. Piłsudskiego 46 Av, 81378, Gdynia, Poland.
Department of Marine Biotechnology, Institute of Oceanography, University of Gdansk, M. Piłsudskiego 46 Av, 81-378, Gdynia, Poland.
J Appl Genet. 2022 Feb;63(1):133-139. doi: 10.1007/s13353-021-00669-6. Epub 2021 Nov 13.
Somatic growth is considered to affect pace of the telomere attrition in vertebrates. As normally developed and dwarf fish differ in the body size we have decided to compare telomere length in the rainbow trout (Oncorhynchus mykiss) with normal growth and with growth reduced due to the dwarf condition. Examined 1-year-old fish with normal and dwarf appearance were siblings originated from androgenetic fully homozygous doubled haploid (DH) line of rainbow trout. Particular dwarf individuals had body deformities such as humpback, kyphosis, and lordosis. Somatic cells of examined rainbow trout had an average telomere length between 17 and 20 kb, comparable in females and males. Dwarf rainbow trout exhibited significantly lower body length and weight than their normally developed siblings even though no differences in the telomere length were found between these fishes. Statistical analysis did not exhibit any correlation between body size and the telomere length. Equal length of telomeres observed in the studied normal and dwarf rainbow trout suggests morphological and physiological differences in fish with different growth rates do not affect dynamics of telomeric DNA. Or any variation in the telomere length might have been levelled by telomerase that in rainbow trout is active in all tissues irrespective of the individual developmental stage.
体生长被认为会影响脊椎动物端粒磨损的速度。由于正常发育的和侏儒型鱼类在体型上存在差异,我们决定比较虹鳟(Oncorhynchus mykiss)中具有正常生长和因侏儒症而减少生长的端粒长度。检查了具有正常和侏儒外观的 1 岁鱼,它们是源自虹鳟完全同源双倍单倍体(DH)系的同卵双胞胎。特定的侏儒个体有驼背、脊柱后凸和脊柱前凸等身体畸形。检查的虹鳟体细胞的端粒平均长度在 17 到 20kb 之间,雌雄之间相当。尽管在这些鱼类中没有发现端粒长度的差异,但侏儒虹鳟的体长和体重明显低于其正常发育的兄弟姐妹。统计分析没有显示出身体大小和端粒长度之间的任何相关性。在研究的正常和侏儒虹鳟中观察到的等长端粒表明,生长速度不同的鱼类在形态和生理上的差异不会影响端粒 DNA 的动态。或者,端粒长度的任何变化可能已经被端粒酶平衡了,端粒酶在虹鳟中在所有组织中都是活跃的,而与个体发育阶段无关。