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The tissue-specific and developmentally regulated expression patterns of the SAUR41 subfamily of SMALL AUXIN UP RNA genes

机译:小AUXIN UP RNA基因SAUR41家族的组织特异性和发育调控表达模式

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摘要

The plant hormone auxin modulates cell proliferation and cell expansion in part by changing gene expression. Among the three primary auxin response gene families, Aux/IAA, GH3 and SAUR, the function of SAUR genes remains unclear. SAUR transcripts were initially identified in epidermal and cortical cells of elongating tissues and thus were supposed to regulate cell expansion downstream of auxin transport and auxin signaling. Recent studies have proposed that SAUR proteins are able to modulate auxin transport and cell expansion by an unknown mechanism. We present our work on the SAUR41 subfamily genes of Arabidopsis (SAUR41, SAUR40, SAUR71 and SAUR72). Similar to the fusion protein between SAUR41 and EGFP, both SAUR40-EGFP and SAUR71-EGFP were identified in the cytoplasm of all types of root tip cells. This result indicated that the subcellular location pattern of SAUR proteins among the members of the same subfamily could be similar to each other, although the overall location pattern of SAUR proteins appeared to be highly diverse. SAUR41 was distinctively expressed in the quiescent center and cortex/endodermis initials of root stem cell niches and in the endodermis of hypocotyls, whereas SAUR71 and SAUR72 were expressed in the steles of young roots and hypocotyls. In addition, SAUR71 was differentially expressed during stomatal formation. The tissue-specific and developmentally regulated expression patterns of the SAUR41 subfamily genes imply that SAUR transcripts or SAUR proteins might serve as signal molecules to ensure the coordination of cell proliferation and cell expansion. Finally, Arabidopsis seedlings expressing TAP (tandem affinity peptide) tagged SAUR41 displayed phenotypes, indicating that it was rational to use the TAP approach for identification of potential binding partners of SAUR41 proteins.
机译:植物激素生长素部分地通过改变基因表达来调节细胞增殖和细胞扩增。在三个主要的生长素应答基因家族,即Aux / IAA,GH3和SAUR中,SAUR基因的功能尚不清楚。 SAUR转录本最初是在伸长组织的表皮和皮质细胞中鉴定的,因此可以调节生长素转运和生长素信号传导下游的细胞扩增。最近的研究提出SAUR蛋白能够通过未知的机制调节生长素的运输和细胞扩增。我们介绍了关于拟南芥的SAUR41亚家族基因(SAUR41,SAUR40,SAUR71和SAUR72)的工作。与SAUR41和EGFP之间的融合蛋白相似,在所有类型的根尖细胞的细胞质中都鉴定出SAUR40-EGFP和SAUR71-EGFP。该结果表明,尽管SAUR蛋白的总体定位模式似乎高度多样化,但同一亚科成员之间的SAUR蛋白的亚细胞定位模式可能彼此相似。 SAUR41在根干细胞壁ni的静止中心和皮层/内胚层的首字母以及下胚轴的内胚层中有明显表达,而SAUR71和SAUR72在幼根和下胚轴的碑石中有表达。此外,SAUR71在气孔形成过程中差异表达。 SAUR41亚家族基因的组织特异性和发育受调控的表达模式暗示 SAUR 转录本或SAUR蛋白可能充当信号分子,以确保细胞增殖和细胞扩增的协调。最后,表达TAP(串联亲和肽)标记的SAUR41的拟南芥幼苗表现出表型,表明使用TAP方法鉴定SAUR41蛋白的潜在结合伴侣是合理的。

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