González G, Comas C, Confalonieri V, Naranjo C A, Poggio L
Instituto Fitotécnico de Santa Catalina FCAF, UNLP - CIGen CONICET-UNLP-CIC C.C. 4, 1836 Llavallol, Buenos Aires, Argentina.
Chromosome Res. 2006;14(6):629-35. doi: 10.1007/s10577-006-1072-3. Epub 2006 Sep 14.
In this study we have analysed and compared the genomic composition, meiotic behaviour, and meiotic affinities of Zea perennis and Zea mays ssp. mays. To do so we studied the parental taxa and the interspecific hybrid Zea perennis x Zea mays ssp. mays, using classical cytogenetic methods, as well as GISH and FISH. GISH enabled us to recognize the genomic source of each chromosome involved in the meiotic configurations of this hybrid, and established the genomic affinities between their parental species. The results obtained here reinforce the hypothesis of the amphiploid origin of Zea perennis and, together with previous research, indicate that the chromosomes with divergent repetitive sequences in maize and Zea luxurians could be the remnants of a relict parental genome not shared with Zea perennis.
在本研究中,我们分析并比较了多年生玉米(Zea perennis)和玉米(Zea mays ssp. mays)的基因组组成、减数分裂行为及减数分裂亲和力。为此,我们使用经典细胞遗传学方法以及基因组原位杂交(GISH)和荧光原位杂交(FISH)技术,研究了亲本类群以及种间杂种多年生玉米×玉米。GISH使我们能够识别该杂种减数分裂构型中每条染色体的基因组来源,并确定其亲本物种之间的基因组亲和力。此处获得的结果强化了多年生玉米双二倍体起源的假说,并且与先前的研究一起表明,玉米和繁茂玉米(Zea luxurians)中具有不同重复序列的染色体可能是未与多年生玉米共享的残余亲本基因组。