首页> 外文期刊>Journal of Plant Growth Regulation >MYB Transcription Factors and a Putative Flavonoid Transporter ABCC-Like are Differentially Expressed in Radiata Pine Seedlings Exposed to Inclination
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MYB Transcription Factors and a Putative Flavonoid Transporter ABCC-Like are Differentially Expressed in Radiata Pine Seedlings Exposed to Inclination

机译:MyB转录因子和推定的类黄酮转运蛋白样品在暴露于倾斜的radiata松树幼苗中差异表达

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Abstract The response to inclination in plants is a well-studied biological process where hormones have been implicated in the modulation of vertical growth restoration. Studies on the involvement of auxins in differential growth of plant stems have resulted in the hypothesis that differential growth in stem tissue is due to unequal auxin re-distribution. It is known that flavonoids affect auxin distribution, but how the intracellular flavonoid concentration is controlled during the gravitropic response is unknown, especially in tree species. Due to the relationship between auxin, flavonoids, and transport during the response to inclination, genes coding for the control of flavonoid levels were identified and transcriptionally characterized in the transcriptome of pine seedlings exposed to inclination. Four MYB transcripts and one transcript encoding a transporter called PrMRP1 were identified and confirmed using qPCR. PrMRP1 has a high identity with specific transporters of flavonoids; its subcellular localization by fusion with green fluorescent protein and transient expression in tobacco was analyzed, confirming its location in the vacuolar membrane. These results suggest the involvement of MYBs and this transporter in regulating the distribution of flavonoids on the upper side of the stem at early stages of inclination.
机译:摘要植物对倾斜的反应是一个被广泛研究的生物学过程,激素参与了垂直生长恢复的调节。关于生长素参与植物茎差异生长的研究已经导致了茎组织差异生长是由于生长素重新分布不均所致的假说。众所周知,类黄酮会影响生长素的分布,但在向重力反应期间如何控制细胞内类黄酮的浓度尚不清楚,尤其是在树种中。由于生长素、类黄酮和倾斜反应期间的运输之间的关系,在暴露于倾斜的松树幼苗的转录组中,识别并转录表征了控制类黄酮水平的编码基因。四个MYB转录本和一个编码一种叫做PrMRP1的转运体的转录本被鉴定并用qPCR确认。PrMRP1与类黄酮的特定转运蛋白具有高度一致性;通过与绿色荧光蛋白融合并在烟草中瞬时表达,分析其亚细胞定位,确定其在液泡膜中的位置。这些结果表明,MYBs和这种转运体参与调节倾斜早期茎上部类黄酮的分布。

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