Darrier Benoit, Colas Isabelle, Rimbert Hélène, Choulet Frédéric, Bazile Jeanne, Sortais Aurélien, Jenczewski Eric, Sourdille Pierre
UMR 1095 Genetics, Diversity and Ecophysiology of Cereals, 5, INRAE-Université Clermont-Auvergne, Chemin de Beaulieu, 63000 Clermont-Ferrand, France.
Syngenta, Toulouse Innovation Centre 12 Chemin de l'Hobit, 31790 Saint-Sauveur, France.
Plants (Basel). 2022 Aug 31;11(17):2281. doi: 10.3390/plants11172281.
Understanding meiotic crossover (CO) variation in crops like bread wheat ( L.) is necessary as COs are essential to create new, original and powerful combinations of genes for traits of agronomical interest. We cytogenetically characterized a set of wheat aneuploid lines missing part or all of chromosome 3B to identify the most influential regions for chiasma formation located on this chromosome. We showed that deletion of the short arm did not change the total number of chiasmata genome-wide, whereas this latter was reduced by ~35% while deleting the long arm. Contrary to what was hypothesized in a previous study, deletion of the long arm does not disturb the initiation of the synaptonemal complex (SC) in early meiotic stages. However, progression of the SC is abnormal, and we never observed its completion when the long arm is deleted. By studying six different deletion lines (missing different parts of the long arm), we revealed that at least two genes located in both the proximal (C-3BL2-0.22) and distal (3BL7-0.63-1.00) deletion bins are involved in the control of chiasmata, each deletion reducing the number of chiasmata by ~15%. We combined sequence analyses of deletion bins with RNA-Seq data derived from meiotic tissues and identified a set of genes for which at least the homoeologous copy on chromosome 3B is expressed and which are involved in DNA processing. Among these genes, eight (CAP-E1/E2, DUO1, MLH1, MPK4, MUS81, RTEL1, SYN4, ZIP4) are known to be involved in the recombination pathway.
了解面包小麦(Triticum aestivum L.)等作物减数分裂交叉(CO)变异很有必要,因为交叉对于创造具有农艺学意义性状的新的、原始且强大的基因组合至关重要。我们通过细胞遗传学方法对一组缺失3B染色体部分或全部的小麦非整倍体系进行了表征,以确定该染色体上对交叉形成影响最大的区域。我们发现,短臂缺失并未改变全基因组交叉的总数,而缺失长臂时,交叉总数减少了约35%。与先前研究中的假设相反,长臂缺失并不会干扰减数分裂早期联会复合体(SC)的起始。然而,SC的进展是异常的,当长臂缺失时,我们从未观察到其完成。通过研究六个不同的缺失系(缺失长臂的不同部分),我们发现至少两个位于近端(C-3BL2-0.22)和远端(3BL7-0.63-1.00)缺失区间的基因参与交叉的控制,每个缺失都会使交叉数量减少约15%。我们将缺失区间的序列分析与来自减数分裂组织的RNA-Seq数据相结合,鉴定出一组基因,其中至少3B染色体上的同源拷贝表达,且这些基因参与DNA加工。在这些基因中,有八个(CAP-E1/E2、DUO1、MLH1、MPK4、MUS81、RTEL1、SYN4、ZIP4)已知参与重组途径。