State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, China.
J Exp Bot. 2021 Jun 22;72(13):4871-4887. doi: 10.1093/jxb/erab181.
Reproductive development is a crucial process during plant growth. The structural maintenance of chromosome (SMC) 5/6 complex has been studied in various species. However, there are few studies on the biological function of SMC6 in plant development, especially during reproduction. In this study, knocking out of both AtSMC6A and AtSMC6B led to severe defects in Arabidopsis seed development, and expression of AtSMC6A or AtSMC6B could completely restore seed abortion in the smc6a-/-smc6b-/-double mutant. Knocking down AtSMC6A in the smc6b-/- mutant led to defects in female and male development and decreased fertility. The double mutation also resulted in loss of cell viability, and caused embryo and endosperm cell death through vacuolar cell death and necrosis. Furthermore, the expression of genes involved in embryo patterning, endosperm cellularisation, DNA damage repair, cell cycle regulation, and DNA replication were significantly changed in the albino seeds of the double mutant. Moreover, we found that the SMC5/6 complex may participate in the SOG1 (SUPPRESSOR OF GAMMA RESPONSE1)-dependent DNA damage repair pathway. These findings suggest that both AtSMC6A and AtSMC6B are functionally redundant and play important roles in seed and gametophyte development through maintaining chromosome stability in Arabidopsis.
生殖发育是植物生长过程中的一个关键过程。结构维持染色体(SMC)5/6 复合物已在各种物种中进行了研究。然而,关于 SMC6 在植物发育中的生物学功能,特别是在生殖过程中的作用,研究甚少。在这项研究中,敲除 AtSMC6A 和 AtSMC6B 导致拟南芥种子发育严重缺陷,而 AtSMC6A 或 AtSMC6B 的表达可以完全恢复 smc6a-/-smc6b-/-双突变体中的种子败育。在 smc6b-/-突变体中敲低 AtSMC6A 导致雌性和雄性发育缺陷,并降低育性。双突变还导致细胞活力丧失,并通过液泡细胞死亡和坏死导致胚胎和胚乳细胞死亡。此外,双突变体白化种子中涉及胚胎模式形成、胚乳细胞化、DNA 损伤修复、细胞周期调控和 DNA 复制的基因表达显著改变。此外,我们发现 SMC5/6 复合物可能参与 SOG1(SUPPRESSOR OF GAMMA RESPONSE1)依赖性 DNA 损伤修复途径。这些发现表明,AtSMC6A 和 AtSMC6B 均具有功能冗余性,通过维持拟南芥染色体稳定性,在种子和配子体发育中发挥重要作用。