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根瘤菌调节伸展蛋白基因在根毛中的特异性表达。

Rhizobia modulate root-hair-specific expression of extensin genes.

作者信息

Arsenijević-Maksimović I, Broughton W J, Krause A

机构信息

L.B.M.P.S., Université de Genève, Chambésy/Genève, Switzerland.

出版信息

Mol Plant Microbe Interact. 1997 Jan;10(1):95-101. doi: 10.1094/MPMI.1997.10.1.95.

DOI:10.1094/MPMI.1997.10.1.95
PMID:9002273
Abstract

Three cDNAs (ext3, ext127, and ext26), originally isolated by differential screening from a root-hair cDNA library of Vigna unguiculata, were found to encode extensin-like cell wall proteins. Transcripts homologous to these cDNAs were only detected in root hairs where mRNA levels decreased 1 day after inoculation with rhizobia. This coincided with the onset of root-hair deformation, the first morphological step in the Rhizobium-legume interaction. Decreases in transcript levels following inoculation with wild-type Rhizobium sp. NGR234 were more pronounced than with NGR delta nodABC, a mutant deficient in Nod-factor production. Inoculation with a rhizobial strain carrying a mutation in a gene encoding a transcriptional activator for nod genes (NGR delta nodD1) did not repress mRNA levels, indicating that a second nodulation signal may be present that is nodD dependent. Application of purified NodNGR factors only affected transcript levels of ext3. The genomic locus of the gene homologous to ext26 (Ext26G) was cloned. In the 5' flanking region, several potential TATA boxes and CAP signals were identified. Part of the promoter region shares homology with the Pisum sativum seed lectin promoter and the Nicotiana tabacum nitrate reductase promoter region. Nonetheless, the function of these homologous regions in gene regulation is unknown.

摘要

通过差异筛选从豇豆根毛cDNA文库中最初分离出的三个cDNA(ext3、ext127和ext26),被发现编码类伸展蛋白细胞壁蛋白。与这些cDNA同源的转录本仅在根毛中检测到,接种根瘤菌1天后mRNA水平下降。这与根毛变形的开始相吻合,根毛变形是根瘤菌与豆科植物相互作用的第一个形态学步骤。接种野生型根瘤菌NGR234后转录本水平的下降比接种缺乏结瘤因子产生的突变体NGR delta nodABC更明显。接种携带nod基因转录激活因子基因突变的根瘤菌菌株(NGR delta nodD1)不会抑制mRNA水平,表明可能存在第二个依赖于nodD的结瘤信号。应用纯化的NodNGR因子仅影响ext3的转录本水平。克隆了与ext26同源的基因(Ext26G)的基因组位点。在5'侧翼区域,鉴定出几个潜在的TATA盒和CAP信号。启动子区域的一部分与豌豆种子凝集素启动子和烟草硝酸还原酶启动子区域具有同源性。尽管如此,这些同源区域在基因调控中的功能尚不清楚。

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