Sebastian J, Chandra A K, Kolattukudy P E
J Bacteriol. 1987 Jan;169(1):131-6. doi: 10.1128/jb.169.1.131-136.1987.
A phyllospheric bacterial culture, previously reported to partially replace nitrogen fertilizer (B. R. Patti and A. K. Chandra, Plant Soil 61:419-427, 1981) was found to contain a fluorescent pseudomonas which was identified as Pseudomonas putida and a Corynebacterium sp. The P. putida isolate was found to produce an extracellular cutinase when grown in a medium containing cutin, the polyester structural component of plant cuticle. The Corynebacterium sp. grew on nitrogen-free medium but could not produce cutinase under any induction conditions tested, whereas P. putida could not grow on nitrogen-free medium. When cocultured with the nitrogen-fixing Corynebacterium sp., the P. putida isolate grew in a nitrogen-free medium, suggesting that the former provided fixed N2 for the latter. These results suggest that the two species coexist on the plant surface, with one providing carbon and the other providing reduced nitrogen for their growth. The presence of cutin in the medium induced cutinase production by P. putida. However, unlike the previously studied fungal systems, cutin hydrolysate did not induce cutinase. Thin-layer chromatographic analysis of the products released from labeled apple fruit cutin showed that the extracellular enzyme released all classes of cutin monomers. This enzyme also catalyzed hydrolysis of the model ester substrates, p-nitrophenyl esters of fatty acids, and optimal conditions were determined for a spectrophotometric assay with p-nitrophenyl butyrate as the substrate. It did not hydrolyze triacyl glycerols, indicating that the cutinase activity was not due to a nonspecific lipase. It showed a broad pH optimum between 8.0 and 10.5 with 3H-labeled apple cutin as the substrate.(ABSTRACT TRUNCATED AT 250 WORDS)
一种叶际细菌培养物,先前有报道称其可部分替代氮肥(B. R. 帕蒂和A. K. 钱德拉,《植物与土壤》61:419 - 427,1981年),经发现含有一种荧光假单胞菌,鉴定为恶臭假单胞菌以及一种棒杆菌属细菌。发现恶臭假单胞菌分离株在含有角质(植物角质层的聚酯结构成分)的培养基中生长时会产生一种胞外角质酶。棒杆菌属细菌能在无氮培养基上生长,但在任何测试的诱导条件下都不能产生角质酶,而恶臭假单胞菌不能在无氮培养基上生长。当与固氮棒杆菌属细菌共培养时,恶臭假单胞菌分离株能在无氮培养基中生长,这表明前者为后者提供了固定的N₂。这些结果表明这两个物种在植物表面共存,一个为另一个的生长提供碳源,另一个提供还原态氮。培养基中角质的存在诱导恶臭假单胞菌产生角质酶。然而,与先前研究的真菌系统不同,角质水解产物不会诱导角质酶产生。对标记的苹果果实角质释放的产物进行薄层色谱分析表明,胞外酶释放出所有类别的角质单体。这种酶还催化了模型酯底物——脂肪酸对硝基苯酯的水解,并确定了以对硝基苯丁酸为底物的分光光度测定的最佳条件。它不水解三酰甘油,表明角质酶活性并非由非特异性脂肪酶引起。以³H标记的苹果角质为底物时,其最适pH范围较宽,在8.0至10.5之间。(摘要截短于250字)