4.2 Article

Degradation properties of various macromolecules of cultivable psychrophilic bacteria from the deep-sea water of the South Pacific Gyre

期刊

EXTREMOPHILES
卷 20, 期 5, 页码 663-671

出版社

SPRINGER JAPAN KK
DOI: 10.1007/s00792-016-0856-4

关键词

Cold-adapted enzymes; Deep-sea water; Screening; South Pacific Gyre (SPG); alpha-Amylase

资金

  1. National Natural Science Foundation of China [41276141]
  2. National High Technology Research and Development Program of China (863 Programs) [2013AA092103]

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The deep-sea water of the South Pacific Gyre (SPG, 20A degrees S-45A degrees S) is a cold and ultra-oligotrophic environment that is the source of cold-adapted enzymes. However, the characteristic features of psychrophilic enzymes derived from culturable microbes in the SPG remained largely unknown. In this study, the degradation properties of 174 cultures from the deep water of the SPG were used to determine the diversity of cold-adapted enzymes. Thus, the abilities to degrade polysaccharides, proteins, lipids, and DNA at 4, 16, and 28 A degrees C were investigated. Most of the isolates showed one or more extracellular enzyme activities, including amylase, chitinase, cellulase, lipase, lecithinase, caseinase, gelatinase, and DNase at 4, 16, and 28 A degrees C. Moreover, nearly 85.6 % of the isolates produced cold-adapted enzymes at 4 A degrees C. The psychrophilic enzyme-producing isolates distributed primarily in Alteromonas and Pseudoalteromonas genera of the Gammaproteobacteria. Pseudoalteromonas degraded 9 types of macromolecules but not cellulose, Alteromonas secreted 8 enzymes except for cellulase and chitinase. Interestingly, the enzymatic activities of Gammaproteobacteria isolates at 4 A degrees C were higher than those observed at 16 or 28 A degrees C. In addition, we cloned and expressed a gene encoding an alpha-amylase (Amy2235) from Luteimonas abyssi XH031(T), and examined the properties of the recombinant protein. These cold-active enzymes may have huge potential for academic research and industrial applications. In addition, the capacity of the isolates to degrade various types of organic matter may indicate their unique ecological roles in the elemental biogeochemical cycling of the deep biosphere.

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