Chen Song, Wang Jing, Liu ShaoJun, Qin QinBo, Xiao Jun, Duan Wei, Luo KaiKun, Liu JinHui, Liu Yun
College of Life Sciences, Hunan Normal University, Changsha, 410081, China.
Sci China C Life Sci. 2009 Aug;52(8):733-8. doi: 10.1007/s11427-009-0079-3. Epub 2009 Aug 29.
An improved triploid crucian carp (ITCC) was produced by crossing improved tetraploids (G1xAT, male symbol) with improved red crucian carp (IRCC, female symbol), which were obtained by distant crossing and gynogenesis. The biological characteristics of ITCC, including the number and karyotype of chromosomes, gonadad and pituitary structures, phenotype, and growth rate are reported. ITCC possessed 150 chromosomes with the karyotype 33m+51sm+33st+33t. In the breeding season, both ovary-like and testis-like gonads of ITCC were unable to produce normal mature gametes. The ultrastructure of the pituitary of ITCC showed that most of the endocrine granules in gonadotrophic hormone (GTH) cells had not been released, providing endocrinological evidence for the sterility of ITCC. Compared with triploid crucian carp (TCC) produced by mating Japanese crucian carp with allotetraploid hybrids, ITCC not only retained the excellent traits of fast growth rate and sterility, but also acquired improved morphological characteristics, including higher body, shorter tail and smaller head.
通过将远缘杂交和雌核发育获得的改良四倍体(G1xAT,♂)与改良红鲫(IRCC,♀)杂交,培育出了改良三倍体鲫(ITCC)。本文报道了ITCC的生物学特性,包括染色体数目和核型、性腺和垂体结构、表型以及生长速率。ITCC拥有150条染色体,核型为33m+51sm+33st+33t。在繁殖季节,ITCC的卵巢样和睾丸样性腺均无法产生正常成熟配子。ITCC垂体的超微结构显示,促性腺激素(GTH)细胞中的大多数内分泌颗粒未释放,为ITCC的不育提供了内分泌学证据。与日本鲫与异源四倍体杂交种交配产生的三倍体鲫(TCC)相比,ITCC不仅保留了生长速率快和不育的优良性状,还获得了改良的形态特征,包括更高的体型、更短的尾巴和更小的头部。