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来自野油菜黄单胞菌野油菜致病变种的超氧化物歧化酶基因及其在细菌与植物相互作用过程中的表达

A gene for superoxide dismutase from Xanthomonas campestris pv. campestris and its expression during bacterial-plant interactions.

作者信息

Smith S G, Wilson T J, Dow J M, Daniels M J

机构信息

Sainsbury Laboratory, John Innes Centre, Norwich, UK.

出版信息

Mol Plant Microbe Interact. 1996 Sep;9(7):584-93. doi: 10.1094/mpmi-9-0584.

Abstract

A recombinant plasmid selected from a library of Xanthomonas campestris pv. campestris genomic DNA by functional complementation of a superoxide dismutase (SOD)-deficient strain of Escherichia coli contained a gene encoding the major SOD activity of X. campestris pv. campestris. Inhibition and renaturation studies suggested that manganese was the metal cofactor for this SOD. Examination of the nucleotide sequence of an active subclone revealed a 612-bp open reading frame that encodes a protein with high amino acid sequence homology to a range of SOD enzymes. The sod gene was mutagenized with Tn5-lacZ. None of the insertions that abolished SOD-conferring activity were in the correct orientation for lacZ expression. Repeated attempts to introduce these insertions into the chromosome of X. campestris pv. campestris were unsuccessful and it was concluded that the sod gene may be essential for viability. In order to monitor the expression of the sod gene, a sod-gus transcriptional fusion was constructed. Expression of the sod gene varied according to the growth stage of the organism in culture. In planta, the sod gene was induced within 3 to 4 h of inoculation, with similar kinetics during compatible and incompatible interactions with turnip and pepper, respectively.

摘要

通过对超氧化物歧化酶(SOD)缺陷型大肠杆菌菌株进行功能互补,从野油菜黄单胞菌野油菜致病变种基因组DNA文库中筛选出的一个重组质粒,含有一个编码野油菜黄单胞菌野油菜致病变种主要SOD活性的基因。抑制和复性研究表明,锰是该SOD的金属辅因子。对一个活性亚克隆的核苷酸序列进行检查,发现一个612 bp的开放阅读框,其编码的蛋白质与一系列SOD酶具有高度的氨基酸序列同源性。用Tn5-lacZ对sod基因进行诱变。所有消除SOD活性的插入片段都没有以正确的方向用于lacZ表达。多次尝试将这些插入片段导入野油菜黄单胞菌野油菜致病变种的染色体均未成功,得出结论:sod基因可能对生存力至关重要。为了监测sod基因的表达,构建了一个sod-gus转录融合体。sod基因的表达根据培养物中生物体的生长阶段而变化。在植物体内,接种后3至4小时内sod基因被诱导,在与芜菁和辣椒的亲和性和非亲和性相互作用中分别具有相似的动力学。

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