Department of Molecular Genetics, The Ohio State University, Columbus, OH, USA.
Institute of Genomic Medicine, Nationwide Children's Hospital, Columbus, OH, USA.
Plant Reprod. 2024 Dec;37(4):521-534. doi: 10.1007/s00497-024-00508-8. Epub 2024 Sep 16.
The Arabidopsis KASH protein SINE3 is involved in male and female gametophyte development, likely affecting the first post-meiotic mitosis in both cases, and is required for full seed set. Linker of nucleoskeleton and cytoskeleton (LINC) complexes are protein complexes spanning the inner and outer membranes of the nuclear envelope (NE) and are key players in nuclear movement and positioning. Through their roles in nuclear movement and cytoskeletal reorganization, plant LINC complexes affect processes as diverse as pollen tube rupture and stomatal development and function. KASH proteins are the outer nuclear membrane component of the LINC complex, with conserved C-termini but divergent N-terminal cytoplasmic domains. Of the known Arabidopsis KASH proteins, SUN-INTERACTING NUCLEAR ENVELOPE PROTEIN 3 (SINE3) has not been functionally characterized. Here, we show that SINE3 is expressed at all stages of male and female gametophyte development. It is located at the NE in male and female gametophytes. Loss of SINE3 results in a female-derived seed set defect, with sine3 mutant ovules arresting at stage FG1. Pollen viability is also significantly reduced, with microspores arresting prior to pollen mitosis I. In addition, sine3 mutants have a minor male meiosis defect, with some tetrads containing more than four spores. Together, these results demonstrate that the KASH protein SINE3 plays a crucial role in male and female gametophyte development, likely affecting the first post-meiotic nuclear division in both cases.
拟南芥 KASH 蛋白 SINE3 参与雌雄配子体的发育,可能影响两种情况下第一次减数后分裂,并且是完全种子设定所必需的。核骨架和细胞骨架(LINC)复合物的链接物是跨越核膜(NE)内外膜的蛋白质复合物,是核运动和定位的关键参与者。通过其在核运动和细胞骨架重组中的作用,植物 LINC 复合物影响了各种过程,如花粉管破裂和气孔发育和功能。KASH 蛋白是 LINC 复合物的外核膜成分,具有保守的 C 末端,但发散的细胞质 N 末端。在已知的拟南芥 KASH 蛋白中,SUN-INTERACTING NUCLEAR ENVELOPE PROTEIN 3(SINE3)尚未进行功能表征。在这里,我们表明 SINE3 在雄性和雌性配子体发育的所有阶段都有表达。它位于雄性和雌性配子体的 NE 上。SINE3 的缺失导致雌性衍生的种子设定缺陷, sine3 突变体胚珠在 FG1 阶段停止。花粉活力也显著降低,花粉减数分裂 I 之前小孢子停止。此外, sine3 突变体具有轻微的雄性减数分裂缺陷,一些四分体含有超过四个孢子。总之,这些结果表明 KASH 蛋白 SINE3 在雄性和雌性配子体发育中起着至关重要的作用,可能影响两种情况下第一次减数后核分裂。