Mecchia Martín A, Ochogavía Ana, Pablo Selva Juan, Laspina Natalia, Felitti Silvina, Martelotto Luciano G, Spangenberg Germán, Echenique Viviana, Pessino Silvina C
Laboratorio Central de Investigaciones, Facultad de Ciencias Agrarias de la Universidad Nacional de Rosario, Parque Villarino, S2125ZAA Zavalla, Santa Fe, Argentina.
J Plant Physiol. 2007 Aug;164(8):1051-61. doi: 10.1016/j.jplph.2006.07.002. Epub 2006 Aug 17.
Molecular markers were used to analyze the genomic structure of an euploid series of Eragrostis curvula, obtained after a tetraploid dihaploidization procedure followed by chromosome re-doubling with colchicine. Considerable levels of genome polymorphisms were detected between lines. Curiously, a significant number of molecular markers showed a revertant behavior following the successive changes of ploidy, suggesting that genome alterations were specific and conferred genetic structures characteristic of a given ploidy level. Genuine reversion was confirmed by sequencing. Cluster analysis demonstrated grouping of tetraploids while the diploid was more distantly related with respect to the rest of the plants. Polymorphic revertant sequences involved mostly non-coding regions, although some of them displayed sequence homology to known genes. A revertant sequence corresponding to a P-type adenosine triphosphatase was found to be differentially represented in cDNA libraries obtained from the diploid and a colchiploid, but was not found expressed in the original tetraploid. Transcriptome profiling of inflorescence followed by real-time polymerase chain reaction validation showed 0.34% polymorphic bands between apomictic tetraploid and sexual diploid plants. Several of the polymorphic sequences corresponded to known genes. Possible correlation between the results observed here and a recently reported genome-wide non-Mendelian inheritance mechanism in Arabidopsis thaliana are discussed.
利用分子标记分析了弯叶画眉草整倍体系列的基因组结构,该系列是通过四倍体双单倍体化程序,然后用秋水仙素进行染色体加倍获得的。在品系间检测到相当程度的基因组多态性。奇怪的是,相当数量的分子标记在倍性连续变化后表现出回复行为,这表明基因组改变是特定的,并赋予了给定倍性水平的遗传结构特征。通过测序证实了真正的回复。聚类分析表明四倍体聚为一组,而二倍体与其他植物的亲缘关系较远。多态性回复序列大多涉及非编码区,尽管其中一些与已知基因显示出序列同源性。发现一个与P型三磷酸腺苷酶对应的回复序列在从二倍体和秋水仙素处理的多倍体获得的cDNA文库中有差异表达,但在原始四倍体中未发现其表达。对花序进行转录组分析,随后通过实时聚合酶链反应验证,结果显示无融合生殖四倍体和有性二倍体植物之间有0.34%的多态性条带。其中一些多态性序列对应于已知基因。本文讨论了这里观察到的结果与最近报道的拟南芥全基因组非孟德尔遗传机制之间可能的相关性。