4.2 Article

Heterosis and combining ability evaluation for growth traits of blunt snout bream (Megalobrama amblycephala) when crossbreeding three strains

期刊

CHINESE SCIENCE BULLETIN
卷 59, 期 9, 页码 857-864

出版社

SCIENCE PRESS
DOI: 10.1007/s11434-014-0115-y

关键词

Megalobrama amblycephala; Combining ability; Heterosis; Growth performance

资金

  1. Modern Agriculture Industry Technology System Construction Projects of China-Staple Freshwater Fishes Industry Technology System [CARS-46-05]
  2. National Natural Science Foundation of China [31201988]
  3. Projects of Hubei Cooperation and Exchanges [2013BHE006]
  4. Wuhan Engineering Research Center of Breeding for Wuchang Bream, National Ministry of Science and Technology Support Program [2012BAD26B00]
  5. State Key Laboratory of Freshwater Ecology and Biotechnology of China [2012FB06]
  6. Excellent Youth Foundation of Hubei Scientific Committee [2013CFA032]
  7. Fundamental Research Funds for the Central Universities [2013PY066]

向作者/读者索取更多资源

The blunt snout bream (Megalobrama amblycephala) is a major aquaculture species in the Chinese freshwater polyculture system. In this study, complete diallel crossing of three strains (i.e., Liangzi [LZ], Poyang [PY] and Yuni [YN]) was used to evaluate the combining ability and heterosis effect of intraspecific crossbreeding on the growth performance (i.e., body weight, total length, body length, body height, and Fulton's coefficient of condition). The offspring produced from the three strains were reared in a communal pond for 20 months, and nine microsatellites were used to assess their pedigree. Of the 749 offspring, 708 (94.53 %) could be assigned directly to a single parental pair. Significant differences were observed in body weight (BW) among the different combinations, indicating that the combining ability of BW from each strain was significantly different. The general combining ability (GCA) of BW from the sire was much higher than that from the dam. The GCA for the dam and sire of the LZ and YN were the largest and the smallest, respectively. The special combining ability of YNa (TM) Euro x PYa (TM), was the largest, and YNa (TM) Euro x PYa (TM), showed significantly positive heterosis effects on all F-1 growth traits, except for Fulton's condition coefficient (K) (P < 0.05). In addition, significant positive linear correlations were found between the mean BW of corresponding progeny and the H (E) of the parental generation (y = 600.7x - 29.472, r = 0.8651, P = 0.0026), H (O) (y = 1206.9x - 518.14, r = 0.7436, P = 0.0216), and the polymorphism information content (y = 1021.3x - 331.31, r = 0.8245, P = 0.0063) as determined by a correlative test. The findings obtained from the study will be important for future considerations of M. amblycephala stock improvement programs.

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