生物
减数分裂细胞
减数分裂
小孢子
遗传学
突变体
拟南芥
染色体分离
绒毡层
粘蛋白
细胞生物学
染色体
花粉
基因
雄蕊
植物
作者
Thamalampudi Venkata Reddy,Jagreet Kaur,Bhavna Agashe,Venkatesan Sundaresan,Imran Siddiqi
出处
期刊:Development
[The Company of Biologists]
日期:2003-10-28
卷期号:130 (24): 5975-5987
被引量:66
摘要
Progression through the meiotic cell cycle is an essential part of the developmental program of sporogenesis in plants. The duet mutant of Arabidopsis was identified as a male sterile mutant that lacked pollen and underwent an aberrant male meiosis. Male meiocyte division resulted in the formation of two cells instead of a normal tetrad. In wild type, male meiosis extends across two successive bud positions in an inflorescence whereas in duet, meiotic stages covered three to five bud positions indicating defective progression. Normal microspores were absent in the mutant and the products of the aberrant meiosis were uni- to tri-nucleate cells that later degenerated, resulting in anthers containing largely empty locules. Defects in male meiotic chromosome organization were observed starting from diplotene and extending to subsequent stages of meiosis. There was an accumulation of meiotic structures at metaphase 1, suggesting an arrest in cell cycle progression. Double mutant analysis revealed interaction with dyad, a mutation causing chromosome cohesion during female meiosis. Cloning and molecular analysis of DUET indicated that it potentially encodes a PHD-finger protein and shows specific expression in male meiocytes. Taken together these data suggest that DUET is required for male meiotic chromosome organization and progression.
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