Calderini Ornella, Chang Song B, de Jong Hans, Busti Alessandra, Paolocci Francesco, Arcioni Sergio, de Vries Sacco C, Abma-Henkens Marleen H C, Lankhorst Renè M Klein, Donnison Iain S, Pupilli Fulvio
Institute of Plant Genetics CNR, Perugia via della madonna alta 130, 06128 Perugia, Italy.
Theor Appl Genet. 2006 Apr;112(6):1179-91. doi: 10.1007/s00122-006-0220-7. Epub 2006 Feb 7.
Apomixis in plants is a form of clonal reproduction through seeds. A BAC clone linked to apomictic reproduction in Paspalum simplex was used to locate the apomixis locus on meiotic chromosome preparations. Fluorescent in situ hybridisation revealed the existence of a single locus embedded in a heterochromatin-poor region not adjacent to the centromere. We report here for the first time information regarding the sequencing of a large DNA clone from the apomixis locus. The presence of two genes whose rice homologs were mapped on the telomeric part of the long arm of rice chromosome 12 confirmed the strong synteny between the apomixis locus of P. simplex with the related area of the rice genome at the map level. Comparative analysis of this region with rice as representative of a sexual species revealed large-scale rearrangements due to transposable elements and small-scale rearrangements due to deletions and single point mutations. Both types of rearrangements induced the loss of coding capacity of large portions of the "apomictic" genes compared to their rice homologs. Our results are discussed in relation to the use of rice genome data for positional cloning of apomixis genes and to the possible role of rearranged supernumerary genes in the apomictic process of P. simplex.
植物无融合生殖是一种通过种子进行的克隆繁殖形式。利用一个与单穗雀稗无融合生殖相关的BAC克隆,在减数分裂染色体标本上定位无融合生殖基因座。荧光原位杂交显示,在一个远离着丝粒、异染色质较少的区域存在一个单一基因座。我们在此首次报告了来自无融合生殖基因座的一个大型DNA克隆的测序信息。两个基因的存在,其水稻同源基因定位于水稻第12号染色体长臂的端粒部分,这在图谱水平上证实了单穗雀稗无融合生殖基因座与水稻基因组相关区域之间存在很强的共线性。以水稻作为有性生殖物种的代表,对该区域进行比较分析,结果显示由于转座元件导致了大规模重排,以及由于缺失和单点突变导致了小规模重排。与它们的水稻同源基因相比,这两种类型的重排都导致了大部分“无融合生殖”基因编码能力的丧失。我们结合利用水稻基因组数据进行无融合生殖基因的定位克隆,以及重排的额外基因在单穗雀稗无融合生殖过程中可能发挥的作用,对我们的结果进行了讨论。