4.7 Article

OsRAD51 Plays a Vital Role in Promoting Homologous Recombination in Rice Meiosis

Journal

Publisher

MDPI
DOI: 10.3390/ijms23179906

Keywords

OsRAD51; OsDMC1; DSB repair; homologous recombination; meiosis

Funding

  1. National Natural Science Foundation of China [31701070, 31872859]
  2. Natural Science Foundation of Jiangsu province [BK20200951]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)

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The mechanisms of OsRAD51 and OsDMC1 in rice meiosis are still unknown. In this study, mutant plants for Osrad51a1, Osrad51a2, Osdmc1a, and Osdmc1b were obtained through CRISPR/Cas9, and it was found that OsRAD51A1 and OsRAD51A2 are functionally redundant in rice fertility. The study also suggests that OsRAD51 and OsDMC1 may functionally depend on each other and play important roles in meiotic recombination during meiosis in rice.
Meiotic recombination plays a pivotal role in achieving accurate chromosomal segregation and increasing genetic diversity. In the homologous recombination pathway, the detailed mechanisms of how OsRAD51 and OsDMC1 work in rice meiosis remain to be explored. Here, we obtained different types of mutants for Osrad51a1, Osrad51a2, Osdmc1a, and Osdmc1b through CRISPR/Cas9. Both Osrad51a1 and Osrad51a2 exhibited normal vegetative growth and fertility. Osrad51 (Osrad51a1 Osrad51a2) mutant plants show normal vegetative growth but exhibit complete sterility, indicating that OsRAD51A1 and OsRAD51A2 are functionally redundant in rice fertility. In contrast to the wild type, Osrad51 chromosomes are not paired perfectly at pachytene and synaptonemal complex (SC) formation is deficient. Moreover, univalents and multivalent associations were observed at metaphase I, chromosome fragments presented at anaphase I, and crossover formation is basically suppressed in Osrad51 pollen mother cells (PMCs). OsRAD51 foci emerge at leptotene and disappear from late pachytene and chromosome localization of OsRAD51 depends on the formation of double-strand breaks (DSBs). Most OsRAD51 foci can co-localize with OsDMC1 signals. OsRAD51 is essential for the loading of OsDMC1 onto chromosomes, and vice versa. In addition, both OsRAD51 and OsDMC1 can interact with OsFIGL1 and OsBRCA2, two important components in rice meiosis. Moreover, the Osrad51 Osdmc1 (Osrad51a1 Osrad51a2 Osdmc1a Osdmc1b) quadruple mutant PMCs exhibited similar defective phenotypes as Osrad51 in homologous pairing, synapsis, and DSB repair. Taken together, our results suggest that the recombinases DMC1 and RAD51 may functionally depend on each other and play important roles in meiotic recombination during meiosis in rice.

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