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Effects of ROS progenitors on the sporophytic development of maize microspores

机译:ROS祖细胞对玉米小孢子孢子发育的影响

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The sporophytic development of maize microspores was investigated in anther culture under oxidative stress conditions. The oxidative stress was induced using ROS progenitors such as paraquat (Pq) and menadione (Men), methionine combined with riboflavin (Men+Rib) and tert-butylhydroperoxide (t-BHP). All the ROS progenitors reduced the anther response and the number of surviving microspores, which was manifested in a decrease of the number of microspore-derived structures (MDS) in 7- and 30-day-old cultured maize anthers. The ROS progenitors also reduced the regeneration potential of MDS. Numerous abnormal cell divisions and progeny cell degradation could be observed during the development of microspores treated with paraquat, menadione and methionine+riboflavin. Intense nuclear condensation was also found in 7-day-old microspores treated with menadione and paraquat. Moreover, menadione significantly delayed the formation of microspore-derived structures and increased the proportion of embryos. Although a less drastic effect on microspore development was observed in the t-BHP treatment, it increased the ratio of calli in the microspore-derived structures.
机译:在氧化胁迫条件下,在花药培养中研究了玉米小孢子的孢子发育。使用百草枯(Pq)和甲萘醌(Men),蛋氨酸结合核黄素(Men + Rib)和叔丁基过氧化氢(t-BHP)等ROS祖细胞诱导了氧化应激。所有ROS祖细胞均降低了花药反应和存活的小孢子数量,这表现为7天和30天培养的玉米花药的小孢子衍生结构(MDS)数量减少。 ROS祖细胞也降低了MDS的再生潜力。在百草枯,甲萘醌和蛋氨酸+核黄素处理的小孢子形成过程中,可以观察到许多异常的细胞分裂和子代细胞降解。在经过甲萘醌和百草枯处理的7天龄小孢子中也发现了强烈的核凝聚。此外,甲萘醌显着延迟了微孢子衍生结构的形成,并增加了胚胎的比例。尽管在t-BHP处理中观察到对小孢子发育的影响不大,但它增加了小孢子衍生结构中愈伤组织的比例。

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