Comparative analysis of intermuscular bones in fish of different ploidies

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作者
Ling Li
ZeZhou Zhong
Ming Zeng
ShaoJun Liu
Yi Zhou
Jun Xiao
Jun Wang
Yun Liu
机构
[1] Hunan Normal University,Key Laboratory of Protein Chemistry and Developmental Biology of Ministry of Education of China, College of Life Sciences
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intermuscular bone; epineural bone; epipleural bone; morphology; genetic breeding;
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摘要
We documented the number, morphology, and distribution of intermuscular bones in five fishes of different ploidy: Carassius auratus (Abbr.WCC, 2n=100), Carassius auratus variety PengZe (Abbr.PZCC, 3n=150), improved triploid crucian carp (Abbr.ITCC, 3n=150), improved red crucian carp (Carassius auratus red var., Abbr.IRCC, ♀, 2n=100), and improved allotetraploids (Abbr.G×AT, ♂, 4n=200). The number of intermuscular bones in WCC, PZCC, and G×AT ranged from 78 to 83 ([inline-graphic not available: see fulltext]), 80 to 86 ([inline-graphic not available: see fulltext]=84), and 77 to 84 ([inline-graphic not available: see fulltext] =82), respectively. The numbers in ITCC and IRCC were significantly lower, ranging from 77 to 82 ([inline-graphic not available: see fulltext] =79) and 58 to 77 ([inline-graphic not available: see fulltext]=71), respectively. The average number of intermuscular bones in each sarcomere, ranked in order from highest to lowest, was 0.721 (WCC), 0.673 (PZCC), 0.653 (G×AT), 0.633 (ITCC), and 0.608 (IRCC). There was no difference between ITCC and G×AT or between G×AT and PZCC. However, the average number of intermuscular bones in the sarcomeres of ITCC, WCC, and PZCC differed significantly, as did that of IRCC and the four other kinds of fish. The intermuscular bone of these five fishes was divided into seven shape categories, non-forked (卜), one-end-unequal-bi-fork (卜), one-end-equal-bi-fork (Y), one-end-multi-fork, two-end-bi-fork, two-end-multi-fork, and tree-branch types. Generally, the morphological complexity was higher in the anterior intermuscular bones than in the posterior body. The number of intermuscular bones was similar but not equal between the left and right sides of the body. ITCC had significantly fewer intermuscular bones than either WCC or PZCC, making it of greater commercial value. Additionally, IRCC and ITCC had fewer intermuscular bones than WCC. Our observations are significant in both fish bone developmental biology and genetic breeding.
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页码:341 / 350
页数:9
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