Qin Qinbo, Wang Yude, Wang Juan, Dai Jing, Xiao Jun, Hu Fangzhou, Luo Kaikun, Tao Min, Zhang Chun, Liu Yun, Liu Shaojun
Key Laboratory of Protein Chemistry and Developmental Biology of the State Education Ministry of China, College of Life Sciences, Hunan Normal University, Changsha, People's Republic of China.
Key Laboratory of Protein Chemistry and Developmental Biology of the State Education Ministry of China, College of Life Sciences, Hunan Normal University, Changsha, People's Republic of China
Biol Reprod. 2014 Oct;91(4):93. doi: 10.1095/biolreprod.114.122283. Epub 2014 Aug 27.
The establishment of the tetraploid organism is difficult but useful in genetics and breeding. In the present study, we have artificially established an autotetraploid fish line (F2-F8) derived from the distant hybridization of Carassius auratus red var. (RR, 2n = 100) (female) × Megalobrama amblycephala (BB, 2n = 48) (male). The autotetraploid line (F2-F8) possess four sets of chromosomes from red crucian carp (RRRR, 4n = 200) and produce diploid ova and diploid sperm, which maintains the formation of the autotetraploid line. The F2 of the autotetraploid fish result from the fertilization of the autodiploidy diploid eggs and diploid sperm from the females and males of F1 hybrids (RRBB, 4n = 148), which exhibit abnormal chromosome behavior during meiosis as revealed by gynogenesis and backcrossing. This is the first report concerning the establishment of an autotetraploid fish line derived from distant hybridization. The autotetraploid fish line provides an important gamete source for the production of triploids and tetraploids. The autotetraploid fish line also provides an ideal system to investigate the poorly understood mechanisms that drive diploidization in autotetraploids and to study the hybrid progenies' characteristics, including the appearance of new traits that promote a diversity of traits and facilitate adaptation.
四倍体生物的建立虽然困难,但在遗传学和育种方面却很有用。在本研究中,我们人工建立了一个同源四倍体鱼系(F2 - F8),该鱼系源自红鲫(RR,2n = 100)(雌性)×团头鲂(BB,2n = 48)(雄性)的远缘杂交。该同源四倍体系(F2 - F8)拥有来自红鲫的四组染色体(RRRR,4n = 200),并产生二倍体卵子和二倍体精子,这维持了同源四倍体系的形成。同源四倍体鱼的F2代是由F1代杂种(RRBB,4n = 148)的雌雄个体产生的同源二倍体二倍体卵子和二倍体精子受精而来,通过雌核发育和回交发现,它们在减数分裂过程中表现出异常的染色体行为。这是关于通过远缘杂交建立同源四倍体鱼系的首次报道。该同源四倍体鱼系为三倍体和四倍体的生产提供了重要的配子来源。该同源四倍体鱼系还提供了一个理想的系统,用于研究驱动同源四倍体二倍体化的尚不清楚的机制,并研究杂交后代的特征,包括促进性状多样性和适应的新性状的出现。