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生长素诱导型SAUR-AC1基因的特性分析,用作拟南芥的分子遗传工具。

Characterization of the auxin-inducible SAUR-AC1 gene for use as a molecular genetic tool in Arabidopsis.

作者信息

Gil P, Liu Y, Orbović V, Verkamp E, Poff K L, Green P J

机构信息

Michigan State University-Department of Energy Plant Research Laboratory, East Lansing 48824-1312.

出版信息

Plant Physiol. 1994 Feb;104(2):777-84. doi: 10.1104/pp.104.2.777.

Abstract

The small auxin up RNA (SAUR) genes were originally characterized in soybean, where they encode a set of unstable transcripts that are rapidly induced by auxin. In this report, the isolation of a SAUR gene, designated SAUR-AC1, from Arabidopsis thaliana (L.) Heynh. ecotype Columbia is described. The promoter of the SAUR-AC1 gene contains putative regulatory motifs conserved among soybean SAUR promoters, as well as sequences implicated in the regulation of other genes in response to auxin. The transcribed region is approximately 500 bp in length and contains no introns. Highly conserved sequences located within the SAUR-AC1 transcript include the central portion of the coding region and a putative mRNA instability sequence (DST) located in the 3' untranslated region. Accumulation of SAUR-AC1 mRNA is readily induced by natural and synthetic auxins and by the translational inhibitor cycloheximide. Moreover, several auxin- and gravity-response mutants of Arabidopsis exhibit decreased accumulation of the SAUR-AC1 mRNA in elongating etiolated seedlings. In particular, in the axr2-1 mutant the SAUR-AC1 transcript accumulates to less than 5% of wild-type levels. These studies indicate that SAUR-AC1 will be a useful probe of auxin-induced gene expression in Arabidopsis and will facilitate the functional analysis of both transcriptional and posttranscriptional regulatory elements.

摘要

小生长素上调RNA(SAUR)基因最初是在大豆中被鉴定出来的,它们编码一组不稳定的转录本,这些转录本会被生长素迅速诱导。在本报告中,描述了从拟南芥(L.)Heynh.生态型哥伦比亚中分离出一个名为SAUR-AC1的SAUR基因。SAUR-AC1基因的启动子包含在大豆SAUR启动子中保守的假定调控基序,以及与其他基因响应生长素调控相关的序列。转录区域长度约为500 bp,不包含内含子。SAUR-AC1转录本中高度保守的序列包括编码区的中部和位于3'非翻译区的一个假定的mRNA不稳定序列(DST)。SAUR-AC1 mRNA的积累很容易被天然和合成生长素以及翻译抑制剂环己酰亚胺诱导。此外,拟南芥的几个生长素和重力响应突变体在伸长的黄化幼苗中SAUR-AC1 mRNA的积累减少。特别是,在axr2-1突变体中,SAUR-AC1转录本的积累量不到野生型水平的5%。这些研究表明,SAUR-AC1将是拟南芥中生长素诱导基因表达的有用探针,并将有助于对转录和转录后调控元件进行功能分析。

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