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Genes Encoding Cucumber Full-Size ABCG Proteins Show Different Responses to Plant Growth Regulators and Sclareolide

机译:编码黄瓜全尺​​寸ABCG蛋白的基因对植物生长调节剂和香紫苏内酯显示不同的反应

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摘要

Full-size members of the ABCG (ATP-binding cassette, subfamily G) subfamily of ABC transporters have been found only in plants and fungi. The plant genes encoding full-size ABCGs identified so far appeared to be differentially regulated under various environmental constraints, plant growth regulators, and microbial elicitors, indicating a broad functional role of these proteins in plant responses to abiotic and biotic stress. Nevertheless, the structure and physiological function of full-size ABCGs in many plant species are still unknown. We have recently identified 16 genes encoding full-size ABCG proteins in cucumber and found that the transcripts of two of them, CsABCG36 (CsPDR8) and CsABCG40 (CsPDR12), are most abundant in roots and are significantly affected by phytohormones and auxin herbicide. In this study, we analyzed the structure and phylogeny of all the full-size cucumber ABCG transporters and studied the organ expression profiles of the remaining 14 CsABCG genes. In addition, we investigated the effect of different plant growth regulators and the diterpene sclareolide on CsABCG expression in cucumber roots. Until now, the full-size plant ABCG transporters have been grouped into five different clusters. The new phylogenetic analysis of full-size ABCGs from model plants and cucumber clustered these proteins into six different subgroups. Interestingly, the expression profiles of cucumber ABCG genes assigned to the same clusters were not correlated, suggesting functional diversification or different regulatory mechanisms of the full-size cucumber ABCG proteins.Electronic supplementary materialThe online version of this article (doi:10.1007/s11105-015-0956-9) contains supplementary material, which is available to authorized users.
机译:仅在植物和真菌中发现了ABC转运蛋白ABCG(ATP结合盒,G亚科)亚科的全尺寸成员。迄今为止,鉴定出的编码全尺寸ABCG的植物基因似乎在各种环境限制,植物生长调节剂和微生物引发剂的作用下受到不同的调节,表明这些蛋白质在植物对非生物和生物胁迫的反应中具有广泛的功能。然而,在许多植物物种中全尺寸ABCG的结构和生理功能仍然未知。我们最近在黄瓜中鉴定了16个编码全尺寸ABCG蛋白的基因,发现其中两个CsABCG36(CsPDR8)和CsABCG40(CsPDR12)的转录本在根中含量最高,并且受到植物激素和植物生长素除草剂的影响。在这项研究中,我们分析了所有全尺寸黄瓜ABCG转运蛋白的结构和系统发育,并研究了其余14个CsABCG基因的器官表达谱。此外,我们调查了不同植物生长调节剂和二萜香紫苏内酯对黄瓜根中CsABCG表达的影响。到目前为止,全尺寸植物ABCG运输车已分为五个不同的集群。对来自模型植物和黄瓜的全尺寸ABCG进行的新系统发育分析将这些蛋白质分为六个不同的亚组。有趣的是,分配给相同簇的黄瓜ABCG基因的表达谱不相关,表明全尺寸黄瓜ABCG蛋白的功能多样化或不同的调节机制。电子补充材料本文的在线版本(doi:10.1007 / s11105-015) -0956-9)包含补充材料,授权用户可以使用。

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