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Expression analysis of the Arabidopsis CP12 gene family suggests novel roles for these proteins in roots and floral tissues

机译:拟南芥CP12基因家族的表达分析表明这些蛋白质在根和花组织中的新作用

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The chloroplast protein CP12 has been shown to regulate the activity of two Calvin cycle enzymes, phosphoribulokinase (PRK) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH), by the reversible formation of a multiprotein complex. In Arabidopsis there are three CP12 genes, CP12-1, CP12-2, and CP12-3, and expression analysis suggested that the function of these proteins may not be restricted to the Calvin cycle. Reverse transcription-PCR analysis was used here to investigate further the expression patterns of the three CP12 Arabidopsis genes together with the genes encoding plastid GAPDH (GAPA-1 and GAPB), PRK (PRK), and plastid NAD-dependent GAPDH (GAPCp1 and GAPCp2) during development, in response to changes in light, temperature, and anaerobic conditions. Expression of the CP12-2 gene was similar to that of the Calvin cycle enzymes PRK and GAPDH. However, this was not the case for CP12-1 and -3 which were both expressed in roots. Analysis of transgenic Arabidopsis lines expressing CP12::GUS fusion constructs revealed that the CP12 genes display different spatiotemporal expression patterns. The CP12-1 gene was expressed in root tips whilst CP12-3::GUS expression was evident throughout the root tissue. The most unexpected finding was that all three CP12 genes were expressed in floral tissues; CP12-1 and CP12-2 expression was detected in the sepals and the style of the flower, while in contrast CP12-3::GUS expression was restricted to the stigma and anthers. Taken together, the data suggest that the redox-sensitive CP12 proteins may have a wider role in non-photosynthetic plastids, throughout the plant life cycle.
机译:已显示叶绿体蛋白CP12通过可逆形成多蛋白复合物来调节两种加尔文循环酶磷酸二磷酸激酶(PRK)和甘油醛-3-磷酸脱氢酶(GAPDH)的活性。在拟南芥中,有三个CP12基因CP12-1,CP12-2和CP12-3,表达分析表明这些蛋白质的功能可能不限于Calvin循环。此处使用逆转录PCR分析来进一步研究这三个CP12拟南芥基因的表达模式,以及编码质体GAPDH(GAPA-1和GAPB),PRK(PRK)和质体NAD依赖性GAPDH(GAPCp1和GAPCp2 ),以适应光照,温度和厌氧条件的变化。 CP12-2基因的表达类似于卡尔文循环酶PRK和GAPDH的表达。但是,CP12-1和-3都不是根部表达的情况。表达CP12 :: GUS融合构建体的转基因拟南芥品系的分析表明,CP12基因显示出不同的时空表达模式。 CP12-1基因在根尖表达,而CP12-3 :: GUS表达在整个根组织中都很明显。最出乎意料的发现是,所有三个CP12基因均在花组织中表达。在萼片和花的样式中检测到CP12-1和CP12-2的表达,而相反,CP12-3 :: GUS的表达限于柱头和花药。综上所述,数据表明,在整个植物生命周期中,氧化还原敏感的CP12蛋白在非光合质体中的作用可能更大。

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