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利古里亚海(地中海西北部)沙滩上的酶活性。

Enzymatic activity on sandy beaches of the Ligurian Sea (NW Mediterranean).

作者信息

Misic C, Fabiano M

机构信息

Dipartimento per lo Studio del Territorio e delle sue Risorse, Università di Genova, C.so Europa 26, 16132 Genova, Italy.

出版信息

Microb Ecol. 2005 May;49(4):513-22. doi: 10.1007/s00248-004-0033-7. Epub 2005 Jul 28.

Abstract

Enzymatic activity was measured on two beaches of the Ligurian Sea (NW Mediterranean) during late spring and summer 2003. The detected activities (leucine aminopeptidase, beta-glucosidase, alpha-glucosidase, and beta-N-acetylglucosaminidase) were related to the available organic substrates (proteins and carbohydrates) and to the bacterial community (expressed in terms of abundance, biomass, and frequency of cell division). The very low chlorophyll a concentrations (never higher than 40 ng g(-1)) suggested that heterotrophic microorganisms play a major role in the beach ecosystem. Enzymatic activities devoted to organic matter degradation were lower in the emerged part of the beaches and higher in the sites covered, permanently or temporarily, by seawater, suggesting that sea action enlivens the degradation processes. Leucine aminopeptidase ranged from 0.26 to 13.02 nmol g(-1)h(-1), and beta-glucosidase (the most expressed glycolytic enzyme) from 0.03 to 4.51 nmol g(-1)h(-1). Strong changes in the proteolytic/glycolytic activity ratio were observed, with a sudden rise in glycolysis during summer, leading to ratio values from about 30 down to 1. Thus, beaches were identified as preferential degradation sites, where very refractory compounds such as cellulose may also be efficiently processed.

摘要

2003年春末和夏季,在利古里亚海(地中海西北部)的两个海滩上测定了酶活性。检测到的活性(亮氨酸氨肽酶、β-葡萄糖苷酶、α-葡萄糖苷酶和β-N-乙酰氨基葡萄糖苷酶)与可用有机底物(蛋白质和碳水化合物)以及细菌群落(以丰度、生物量和细胞分裂频率表示)有关。极低的叶绿素a浓度(从未高于40 ng g(-1))表明异养微生物在海滩生态系统中起主要作用。致力于有机物降解的酶活性在海滩的露出部分较低,而在永久或临时被海水覆盖的区域较高,这表明海水作用促进了降解过程。亮氨酸氨肽酶的活性范围为0.26至13.02 nmol g(-1)h(-1),β-葡萄糖苷酶(表达最丰富的糖酵解酶)的活性范围为0.03至4.51 nmol g(-1)h(-1)。观察到蛋白水解/糖酵解活性比有强烈变化,夏季糖酵解突然增加,导致该比值从约30降至1。因此,海滩被确定为优先降解地点,在这里,诸如纤维素等非常难降解的化合物也可能被有效处理。

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