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拟南芥At ACO3基因的表达对抵御非生物胁迫影响的研究进展
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作者 吴昊 李娟 《现代农业研究》 2024年第8期63-66,共4页
乌头酸酶(Aconitase,ACO)是参与三羧酸循环中柠檬酸可逆异构化过程的关键酶,这种酶有3种亚型(ACO1,ACO2,ACO3),其中ACO3发挥主要的作用。有研究发现,乌头酸酶基因At ACO3还对提高模式植物拟南芥(Arabidopsis thaliana)应对非生物胁迫具... 乌头酸酶(Aconitase,ACO)是参与三羧酸循环中柠檬酸可逆异构化过程的关键酶,这种酶有3种亚型(ACO1,ACO2,ACO3),其中ACO3发挥主要的作用。有研究发现,乌头酸酶基因At ACO3还对提高模式植物拟南芥(Arabidopsis thaliana)应对非生物胁迫具有重要的生物学功能。本文着重论述了At ACO3在提高植物的抗寒性、抗旱性、抗金属胁迫、抗氧化胁迫等方面的作用,为深入研究植物ACO3基因和进一步开发植物抗逆功能基因提供参考价值。 展开更多
关键词 拟南芥 At aco3 非生物胁迫 功能
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Movement of ACC oxidase 3 mRNA from seeds to flesh promotes fruit ripening in apple
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作者 Ting Wang Yi Zheng +8 位作者 Chen Xu Yulin Deng Xinyi Hao Zicheng Chu Ji Tian Yi Wang Xinzhong Zhang Zhenhai Han Ting Wu 《Molecular Plant》 SCIE CSCD 2024年第8期1221-1235,共15页
Xenia,the phenomenon in which the pollen genotype directly affects the phenotypic characteristics of maternal tissues(i.e.,fruit ripening),has applications in crop production and breeding.However,the underlying molecu... Xenia,the phenomenon in which the pollen genotype directly affects the phenotypic characteristics of maternal tissues(i.e.,fruit ripening),has applications in crop production and breeding.However,the underlying molecular mechanism has yet to be elucidated.Here,we investigated whether mobile mRNAs from the pollen affect the ripening and quality-related characteristics of the fruit using cross-pollination between distinct Malus domestica(apple)cultivars.We demonstrated that hundreds of mobile mRNAs originating fromthe seeds are deliveredto thefruit.Wefoundthat themovementof one of these mRNAs,AcC oxidase 3(MdAco3),is coordinated with fruit ripening.Salicylic acid treatment,which can cause plasmodesmal closure,blocks MdAcO3 movement,indicating that MdAcO3 transcripts may move through the plasmodesmata.To assess the role of mobile MdAcO3 transcripts in apple fruit,we created MdACO3-GFP-expressing apple seeds using MdACO3-GFP-overexpressing pollen for pollination and showed that MdACO3 transcripts in the transgenic seeds move to the flesh,where they promote fruit ripening.Furthermore,we demonstrated that MdAco3 can be transported from the seeds to fruit in the fleshy-fruited species tomato and strawberry.These results underscore the potential of mobile mRNAs from seeds to influence fruit characteristics,providing an explanation for the xenia phenomenon.Notably,our findings highlight the feasibility of leveraging diverse pollen genomic resources,without resorting to genome editing,to improve fruitquality. 展开更多
关键词 fruit ripening XENIA aco3 mobile RNA seed(to flesh)
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应用WJ-3ACO_2细胞培养箱与825-A型厌氧菌培养罐对淋球菌培养效果的观察
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作者 佟艳 黄英龙 《中国卫生检验杂志》 CAS 2009年第5期1180-1180,共1页
关键词 WJ-3ACO2细胞培养箱与825-A型厌氧菌培养罐 淋球菌 培养效果
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