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The Maize Ab10 Meiotic Drive System Maps to Supernumerary Sequences in a Large Complex Haplotype

机译:玉米Ab10减数分裂驱动系统映射到大型复杂单倍型中的多余序列。

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摘要

The meiotic drive system on maize abnormal chromosome 10 (Ab10) is contained within a terminal domain of chromatin that extends the long arm of Ab10 to ∼1.3 times the size of normal chromosome 10L. Ab10 type I (Ab10-I) does not recombine with normal chromosome 10 (N10) over an ∼32-cM terminal region of the long arm. Comparative RFLP mapping demonstrates that multiple independent rearrangements are responsible for the current organization of Ab10-I, including a set of nested inversions and at least one long supernumerary segment at the end of the chromosome. Four major meiotic drive functions, i.e., the recombination effect, smd3, 180-bp neocentromere activity, and the distal tip function, all map to the distal supernumerary segment. TR-1-mediated neocentromere activity (the fifth known drive function) is nonessential in the type II variant of Ab10 and maps to a central region that may include a second supernumerary insertion. Both neocentromere activity and the recombination effect behave as dominant gain-of-function mutations, consistent with the view that meiotic drive involves new or alien gene products. These and other data suggest that the Ab10 meiotic drive system was initially acquired from a related species and that a complex haplotype evolved around it.
机译:玉米异常染色体10(Ab10)上的减数分裂驱动系统包含在染色质的末端结构域中,该结构域将Ab10的长臂延伸至正常染色体10L大小的〜1.3倍。 I型Ab10(Ab10-I)在长臂的〜32-cM末端区域不与正常的10号染色体(N10)重组。比较的RFLP映射表明,多个独立的重排是Ab10-I当前结构的原因,包括一组嵌套的倒位和在染色体末端的至少一个长的多余片段。四个主要的减数分裂驱动功能,即重组效应,smd3、180 bp的新着丝粒活性和远端末端功能,都映射到远端多余的节段。 TR-1介导的新着丝粒活性(第五种已知的驱动功能)在Ab10的II型变体中是不必要的,并映射到可能包含第二个多余数字插入的中央区域。新着丝粒活性和重组作用均表现为主要的功能获得性突变,这与减数分裂驱动涉及新的或外来基因产物的观点一致。这些和其他数据表明,Ab10减数分裂驱动系统最初是从相关物种获得的,并且围绕它进化出了复杂的单倍型。

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