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Transcriptome-based identification and expression characterization of RgABCC transporters in Rehmannia glutinosa

机译:RGABCC转运蛋白RGABC CLUTINOSA的转录物鉴定及表达表达

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ABCC multidrug resistance-associated proteins (ABCCs/MRPs), a subfamily of ABC transporters, are involved in multiple physiological processes. Although these proteins have been characterized in some plants, limited efforts have been made to address their possible roles in Rehmannia glutinosa , a medicinal plant. Here, we scanned R . glutinosa transcriptome sequences and identified 18 RgABCC genes by in silico analysis. Sequence alignment revealed that the RgABCCs were closely phylogenetically related and highly conserved with other plant ABCCs/MRPs. Subcellular localization revealed that most of the RgABCCs were deposited in vacuoles and a few in plasma membranes. Tissue-specific expression of the RgABCCs indicated significant specific accumulation patterns, implicating their roles in the respective tissues. Differential temporal expression patterns of the RgABCCs exhibited their potential roles during root development. Various abiotic stress and hormone treatment experiments indicated that some RgABCCs could be transcriptionally regulated in roots. Furthermore, the transcription of several RgABCCs in roots was strongly activated by cadmium (Cd), suggesting possible roles under heavy metal stresses. Functional analysis of RgABCC1 heterologous expression revealed that it may increase the tolerance to Cd in yeast, implying its Cd transport activity. Our study provides a detailed inventory and molecular characterization of the RgABCCs and valuable information for exploring their functions in R . glutinosa .
机译:ABCC多药抗性相关蛋白(ABCC / MRPS),ABC转运蛋白的亚家族,参与多种生理过程。虽然这些蛋白质已经表征了一些植物,但已经有限的努力来解决其在Rehmannia Glutinosa,药用植物中可能的作用。在这里,我们扫描了r。谷氨酸转录组序列并通过硅分析确定了18个RGABCC基因。序列比对显示RGABCCS与其他植物ABCCS / MRPS密切相关和高度保守。亚细胞定位表明,大多数RGABCC沉积在真空中和少量血浆膜中沉积。 RGABCC的组织特异性表达表明了显着的特异性累积模式,暗示了它们在各种组织中的作用。 RGABCC的差分时间表达模式在根部发育过程中表现出它们的潜在作用。各种非生物胁迫和激素处理实验表明,一些RGABCC可以在根中进行转录调节。此外,通过镉(CD)强烈地激活了几个RGABCC的转录,表明在重金属应力下可能的作用。 RGABCC1异源表达的功能分析显示,它可能会增加酵母中CD的耐受性,暗示其CD传输活性。我们的研究提供了RGABCCS的详细库存和分子表征,以及用于探索其r的有价值的信息。谷氨酸。

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