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Inferences on the genome structure of progenitor maize through comparative analysis of rice maize and the domesticated panicoids.

机译:通过对水稻玉米和驯化的拟南芥的比较分析推断出祖玉米的基因组结构。

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摘要

Corn and rice genetic linkage map alignments were extended and refined by the addition of 262 new, reciprocally mapped maize cDNA loci. Twenty chromosomal rearrangements were identified in maize relative to rice and these included telomeric fusions between rice linkage groups, nested insertion of rice linkage groups, intrachromosomal inversions, and a nonreciprocal translocation. Maize genome evolution was inferred relative to other species within the Panicoideae and a progenitor maize genome with eight linkage groups was proposed. Conservation of composite linkage groups indicates that the tetrasomic state arose during maize evolution either from duplication of one progenitor corn genome (autoploidy) or from a cross between species that shared the composite linkages observed in modern maize (alloploidy). New evidence of a quadruplicated homeologous segment on maize chromosomes 2 and 10, and 3 and 4, corresponded to the internally duplicated region on rice chromosomes 11 and 12 and suggested that this duplication in the rice genome predated the divergence of the Panicoideae and Oryzoideae subfamilies. Charting of the macroevolutionary steps leading to the modern maize genome clarifies the interpretation of intercladal comparative maps and facilitates alignments and genomic cross-referencing of genes and phenotypes among grass family members.
机译:通过添加262个相互映射的玉米cDNA新基因座,玉米和水稻的遗传连锁图谱比对得到扩展和完善。相对于水稻,在玉米中鉴定出20个染色体重排,其中包括水稻连锁群之间的端粒融合,水稻连锁群的嵌套插入,染色体内倒位和不可逆转位。相对于Panicoideae中的其他物种,可以推断出玉米基因组的进化,并提出了具有八个连锁基团的祖先玉米基因组。复合键合基团的保守性表明,在玉米进化过程中,四体状态是由于一个祖玉米基因组的重复(同源倍性)或共享现代玉米中观察到的复合键的物种之间的杂交(单倍体)引起的。玉米2号和10号,3号和4号四倍同源序列的新证据对应于水稻11号和12号染色体的内部重复区域,并表明水稻基因组中的这种重复早于Panicoideae和Oryzoideae亚科的发散。绘制导致现代玉米基因组的宏进化步骤的图表阐明了层间比较图的解释,并促进了草科成员之间基因和表型的比对和基因组交叉引用。

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