减数分裂
生物
倍性
遗传学
减数分裂II
姐妹染色单体
染色体分离
着丝粒
染色体
二价(发动机)
绒毡层
细胞生物学
小孢子
植物
花粉
基因
化学
雄蕊
有机化学
金属
作者
Huiqi Fu,Jiaqi Zhong,Jiayi Zhao,Li Huo,Chong Wang,Dexuan Ma,Wenjing Pan,Limin Sun,Ziming Ren,Tianyi Fan,Ze Wang,Wenyi Wang,X. Lei,Guanghui Yu,Jing Li,Yan Zhu,Danny Geelen,Bing Liu
摘要
Summary Ultraviolet (UV) radiation influences development and genome stability in organisms; however, its impact on meiosis, a special cell division essential for the delivery of genetic information across generations in eukaryotes, has not yet been elucidated. In this study, by performing cytogenetic studies, we reported that UV radiation does not damage meiotic chromosome integrity but attenuates centromere‐mediated chromosome stability and induces unreduced gametes in Arabidopsis thaliana . We showed that functional centromere‐specific histone 3 (CENH3) is required for obligate crossover formation and plays a role in the protection of sister chromatid cohesion under UV stress. Moreover, we found that UV specifically alters the orientation and organization of spindles and phragmoplasts at meiosis II, resulting in meiotic restitution and unreduced gametes. We determined that UV‐induced meiotic restitution does not rely on the UV Resistance Locus8‐mediated UV perception and the Tapetal Development and Function1‐ and Aborted Microspores‐dependent tapetum development, but possibly occurs via altered JASON function and downregulated Parallel Spindle1. This study provides evidence that UV radiation influences meiotic genome stability and gametophytic ploidy consistency in flowering plants.
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