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首页> 外文期刊>Plant Molecular Biology Reporter >Characterization of ADP-Glucose Pyrophosphorylase Encoding Genes in Source and Sink Organs of Maize
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Characterization of ADP-Glucose Pyrophosphorylase Encoding Genes in Source and Sink Organs of Maize

机译:玉米源和汇器官中ADP-葡萄糖焦磷酸化酶编码基因的表征

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摘要

ADP-glucose pyrophosphorylase catalyzes the first and limiting step in starch biosynthesis. Six cDNA sequences encoding three large subunits and three small subunits of maize AGPase from database were mined and subsequently named: agpl1, agpl2, agpl3, agps1, agps2, and agps3. To elucidate the roles of these isogenes, a comprehensive expression analysis of the gene family was conducted by quantitative real-time RT-PCR. Based on the expression patterns, the six genes can be divided into three groups: (1) steady expressers (agpl1, agps1, and agpl2), which were expressed relatively constantly both in leaf and grain; (2) tissue and development-specific expressers (agpl3 and agps2), which were expressed only in grain at middle and late development phases; (3) tissue-specific expressers (agps3), whose transcripts kept constant during grain filling and were observed only in grain. In order to clarify the effects of sugar and plant hormone on maize AGPase genes expression, a serial of treatments were used. The results showed that AGPase genes significantly differed in response to sugar and hormone inductions. Enormous transcript changes of these genes could be observed in glucose and sucrose treatments. Interestingly, synergistic effect of ABA and sucrose on these genes was observed.
机译:ADP-葡萄糖焦磷酸化酶催化淀粉生物合成中的第一步和限制性步骤。从数据库中提取了编码玉米AGPase的三个大亚基和三个小亚基的六个cDNA序列,随后命名为:agpl1,agpl2,agpl3,agps1,agps2和agps3。为了阐明这些同工异体的作用,通过定量实时RT-PCR对基因家族进行了全面的表达分析。根据表达模式,这六个基因可分为三类:(1)稳定表达子(agpl1,agps1和agpl2),它们在叶片和谷粒中都相对稳定表达。 (2)组织和发育特异性表达体(agpl3和agps2),仅在发育中期和后期才在谷物中表达; (3)组织特异性表达子(agps3),其转录本在灌浆过程中保持恒定,仅在谷物中观察到。为了阐明糖和植物激素对玉米AGPase基因表达的影响,使用了一系列处理方法。结果表明,AGPase基因对糖和激素的诱导反应显着不同。在葡萄糖和蔗糖处理中可以观察到这些基因的巨大转录变化。有趣的是,观察到ABA和蔗糖对这些基因的协同作用。

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