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六倍体小麦基因组中交叉事件的高分辨率图谱表明存在一种通用的重组机制。

High-Resolution Mapping of Crossover Events in the Hexaploid Wheat Genome Suggests a Universal Recombination Mechanism.

作者信息

Darrier Benoit, Rimbert Hélène, Balfourier François, Pingault Lise, Josselin Ambre-Aurore, Servin Bertrand, Navarro Julien, Choulet Frédéric, Paux Etienne, Sourdille Pierre

机构信息

Genetics, Diversity and Ecophysiology of Cereals, Institut National de la Recherche Agronomique, Université Blaise Pascal, 63000 Clermont-Ferrand, France.

Génétique Physiologie et Systèmes d'Elevage, Institut National de la Recherche Agronomique, Université de Toulouse, 31320 Castanet-Tolosan, France.

出版信息

Genetics. 2017 Jul;206(3):1373-1388. doi: 10.1534/genetics.116.196014. Epub 2017 May 22.

Abstract

During meiosis, crossovers (COs) create new allele associations by reciprocal exchange of DNA. In bread wheat ( L.), COs are mostly limited to subtelomeric regions of chromosomes, resulting in a substantial loss of breeding efficiency in the proximal regions, though these regions carry ∼60-70% of the genes. Identifying sequence and/or chromosome features affecting recombination occurrence is thus relevant to improve and drive recombination. Using the recent release of a reference sequence of chromosome 3B and of the draft assemblies of the 20 other wheat chromosomes, we performed fine-scale mapping of COs and revealed that 82% of COs located in the distal ends of chromosome 3B representing 19% of the chromosome length. We used 774 SNPs to genotype 180 varieties representative of the Asian and European genetic pools and a segregating population of 1270 F lines. We observed a common location for ancestral COs (predicted through linkage disequilibrium) and the COs derived from the segregating population. We delineated 73 small intervals (<26 kb) on chromosome 3B that contained 252 COs. We observed a significant association of COs with genic features (73 and 54% in recombinant and nonrecombinant intervals, respectively) and with those expressed during meiosis (67% in recombinant intervals and 48% in nonrecombinant intervals). Moreover, while the recombinant intervals contained similar amounts of retrotransposons and DNA transposons (42 and 53%), nonrecombinant intervals had a higher level of retrotransposons (63%) and lower levels of DNA transposons (28%). Consistent with this, we observed a higher frequency of a DNA motif specific to the DNA transposon in recombinant intervals.

摘要

在减数分裂过程中,交叉互换(COs)通过DNA的相互交换产生新的等位基因组合。在普通小麦(Triticum aestivum L.)中,COs大多局限于染色体的亚端粒区域,导致近端区域的育种效率大幅降低,尽管这些区域携带了约60 - 70%的基因。因此,识别影响重组发生的序列和/或染色体特征对于提高和驱动重组具有重要意义。利用最近发布的3B染色体参考序列以及其他20条小麦染色体的草图组装,我们对COs进行了精细定位,发现82%的COs位于3B染色体的远端,占染色体长度的19%。我们使用774个单核苷酸多态性(SNPs)对代表亚洲和欧洲基因库的180个品种以及一个由1270个F代品系组成的分离群体进行基因分型。我们观察到祖先COs(通过连锁不平衡预测)和来自分离群体的COs具有共同的位置。我们在3B染色体上划定了73个小间隔(<26 kb),其中包含252个COs。我们观察到COs与基因特征存在显著关联(分别在重组和非重组间隔中为73%和54%),并且与减数分裂期间表达的特征相关(在重组间隔中为67%,在非重组间隔中为48%)。此外,虽然重组间隔中逆转座子和DNA转座子的含量相似(分别为42%和53%),但非重组间隔中逆转座子的水平较高(63%),而DNA转座子的水平较低(28%)。与此一致的是,我们在重组间隔中观察到特定于DNA转座子的DNA基序的频率更高。

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