Université Paris-Saclay, INRAE, AgroParisTech, Institute Jean-Pierre Bourgin for Plant Sciences (IJPB), 78000, Versailles, France.
Université Paris-Saclay, AgroParisTech, INRAE, UMR Agronomie, 91120, Palaiseau, France.
Nat Commun. 2024 Jul 16;15(1):5964. doi: 10.1038/s41467-024-50169-4.
Meiotic rapid prophase chromosome movements (RPMs) require connections between the chromosomes and the cytoskeleton, involving SUN (Sad1/UNC-84)-domain-containing proteins at the inner nuclear envelope (NE). RPMs remain significantly understudied in plants, with respect to their importance in the regulation of meiosis. Here, we demonstrate that Arabidopsis thaliana meiotic centromeres undergo rapid (up to 500 nm/s) and uncoordinated movements during the zygotene and pachytene stages. These centromere movements are not affected by altered chromosome organization and recombination but are abolished in the double mutant sun1 sun2. We also document the changes in chromosome dynamics and nucleus organization during the transition from leptotene to zygotene, including telomere attachment to SUN-enriched NE domains, bouquet formation, and nucleolus displacement, all of which were defective in sun1 sun2. These results establish A. thaliana as a model species for studying the functional implications of meiotic RPMs and demonstrate the mechanistic conservation of telomere-led RPMs in plants.
减数分裂前期快速染色体运动(RPMs)需要染色体与细胞骨架之间的连接,涉及内核膜(NE)中的 SUN(Sad1/UNC-84)结构域蛋白。就其在减数分裂调控中的重要性而言,植物中 RPMs 的研究仍严重不足。在这里,我们证明拟南芥减数分裂着丝粒在合线期和粗线期经历快速(高达 500nm/s)和不协调的运动。这些着丝粒运动不受染色体组织和重组改变的影响,但在 sun1 sun2 双突变体中被消除。我们还记录了从细线期到合线期的染色体动力学和核组织的变化,包括端粒与富含 SUN 的 NE 域的附着、花束形成和核仁位移,所有这些在 sun1 sun2 中均有缺陷。这些结果确立了拟南芥作为研究减数分裂 RPMs 功能意义的模式物种,并证明了植物中端粒引导的 RPMs 的机制保守性。