Feng Chao, Lorenz Jana, Dreissig Steven, Schubert Veit, Wang Baicui, Hartmann Franziska, Cuacos Maria, Fernández-Jiménez Nadia, Zhao Ziliang, Eggeling Christian, Câmara Amanda Souza, Himmelbach Axel, Heckmann Stefan
Leibniz Institute of Plant Genetics and Crop Plant Research, Seeland, Germany.
Institute of Agricultural and Nutritional Sciences, Martin-Luther-University Halle-Wittenberg, Halle (Saale), Germany.
Nat Plants. 2025 Jun 27. doi: 10.1038/s41477-025-02030-9.
The synaptonemal complex (SC) forms between homologous chromosomes during meiosis. In Arabidopsis thaliana, its central region (CR) is composed of the transverse filament protein ZYP1 and the central element proteins SCEP1 and SCEP2. Here we identify SCEP3 as a CR protein that is evolutionarily conserved across plant species. SCEP3 spatiotemporally overlaps with other CR proteins and localizes to the SC CR. The loss of SCEP3 prevents SC assembly, abolishes crossover (CO) assurance and interference, and eliminates sex-specific differences in CO rates (heterochiasmy) through increased CO in females. SCEP3 is required for a subset of COs in SC-deficient mutants, such as zyp1. Although SCEP3 physically interacts with ZYP1, it loads independently of other CR proteins. We propose that SCEP3 may associate with certain recombination intermediates, stabilizing them and/or recruiting additional factors, such as ZYP1, to a subset of these intermediates, thereby promoting and interlinking SC assembly and CO formation.
联会复合体(SC)在减数分裂过程中于同源染色体之间形成。在拟南芥中,其中心区域(CR)由横向丝蛋白ZYP1以及中心元件蛋白SCEP1和SCEP2组成。在此,我们鉴定出SCEP3是一种在植物物种间进化保守的CR蛋白。SCEP3在时空上与其他CR蛋白重叠,并定位于SC的CR区域。SCEP3的缺失会阻止SC组装,消除交叉(CO)保证和干扰,并通过增加雌性中的CO来消除CO率的性别特异性差异(异配交换)。在SC缺陷型突变体(如zyp1)中,一部分CO需要SCEP3。尽管SCEP3与ZYP1存在物理相互作用,但它独立于其他CR蛋白进行加载。我们提出,SCEP3可能与某些重组中间体结合,使其稳定和/或招募其他因子(如ZYP1)至这些中间体的一部分,从而促进并将SC组装和CO形成相互联系起来。