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Organic matter in aquatic environments consists mostly of large compounds which cannot be taken up and utilized directly by microbial cells. Prior to incorporation, polymeric materials undergo degradation by cell-bound and extracellular enzymes produced by these microbes; in fact, such enzymatic mobilization and transformation is the key process which regulates the turnover of organic as well as inorganic compounds in aquatic environments. This volume brings together studies on enzymatic degradation processes from disciplines as diverse as water and sediment research, bacterial and algal aquatic ecophysiology, eutrophication, and nutrient cycling and biogeochemistry, in both freshwater and marine ecosystems. Its scope extends from fundamental research exploring the contribution of microbial enzymatic processes to whole ecosystem functioning to practical applications in water biotechnology. The first comprehensive publication providing an overview of this emerging field of enzymology, Microbial Enzymes in Aquatic Environments will be of great interest to ecologists and microbiologists alike.
Includes book reviews and abstracts.
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A far-sighted analysis of the problem of America's shortage of fresh water
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There is a fantastic array of vegetables you can grow in your garden, and not all of them are annuals. In Perennial Vegetables the adventurous gardener will find information, tips, and sound advice on less common edibles that will make any garden a perpetual, low-maintenance source of food. Imagine growing vegetables that require just about the same amount of care as the flowers in your perennial beds and borders--no annual tilling and potting and planting. They thrive and produce abundant and nutritious crops throughout the season. It sounds too good to be true, but in Perennial Vegetables author and plant specialist Eric Toensmeier (Edible Forest Gardens) introduces gardeners to a world of...