抗体和DNA探针检测海水中亚硝酸盐还原酶。

B B Ward, A R Cockcroft, K A Kilpatrick
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引用次数: 44

摘要

用从stutzeri假单胞菌(ATCC 14405)中纯化的亚硝酸盐还原酶(NiR)免疫制备了一种多克隆抗血清,并对已知反硝化菌株进行了特异性检测。该抗血清几乎是菌株特异性的,仅在一些(但不是全部)其他stutzeri菌株中识别出NiR。从水柱和沉积物环境中筛选反硝化分离物;从潮间带微生物席中分离的几株与NiR抗血清发生反应。聚丙烯酰胺凝胶的近红外活性测定表明,具有明显非常相似的近红外蛋白的菌株不与抗血清发生反应。这些结果表明,即使在密切相关的菌株中,近红外蛋白的变化也比以前所怀疑的要大。采用PCR扩增法获得了stutzeri P. (ATCC 14405) NiR结构基因721 bp区域的DNA探针,并用于反硝化菌株和分离株的筛选。与抗血清相比,探针可以与更多种类的菌株杂交,这意味着DNA探针在环境样品中可能是一种更广泛的有用和功能探针,而近红外抗血清几乎是菌株特异性的,或者最多是物种特异性的。估计了海水中酶和基因的检出限,并对天然海水中提取的DNA进行了近红外DNA检测。杂交结果表明,天然海水中1000个细胞中有1 ~ 10个细胞与NiR基因探针具有同源性。
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Antibody and DNA probes for detection of nitrite reductase in seawater.

A polyclonal antiserum was produced by immunization with nitrite reductase (NiR) purified from Pseudomonas stutzeri (ATCC 14405) and tested for specificity among known denitrifying strains. The antiserum was nearly strain-specific, identifying NiR only in some, but not all, other P. stutzeri strains. Denitrifying isolates from water column and sediment environments were also screened; several isolates from an intertidal microbial mat reacted with the NiR antiserum. Activity assays for NiR in polyacrylamide gels demonstrated that strains with apparently very similar NiR proteins did not react with the antiserum. These results imply that the NiR protein is more variable even among closely related strains than previously suspected. A DNA probe for a 721 bp region of the NiR structural gene was obtained by PCR amplification of P. stutzeri (ATCC 14405) DNA and used to screen denitrifying strains and isolates. The probe hybridized with a greater variety of strains than did the antiserum, implying that the DNA probe may be a more broadly useful and functional probe in environmental samples, whilst the NiR antiserum is nearly strain- or, at most, species-specific. Limits for detection of the enzyme and gene in seawater were estimated and NiR DNA was detected in DNA extracted from natural seawater. The hybridization data imply that in the order of 1-10 in 1000 cells in natural seawater possess homology with the NiR gene probe.

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