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481.
The polyphenols present in brown seaweed tissue may seriously affect aerobic microbial degradation, particularly the alginate present. Laminaria hyperborea stipes, harvested at 59 °N off the Norwegian coast in autumn, were degraded at different levels of polyphenols in aerated batch reactors at 35 °C and pH 7. This was achieved by manipulating the relative amounts of peripheral tissue, by removing or adding the mechanically peeled outer phenolic layer, using standardized inocula already adapted to L. hyperborea degradation. The degradation of organic matter was clearly depressed by increasing the amount of peripheral tissue. Alginate lyase activity was also negatively correlated to the amount of peripheral tissue loaded, presumably due to the release of reactive polyphenols. The total digestion rates of alginate were reduced by more than a factor of two at enhanced amounts of peripheral tissue. The guluronic content of extracted Na-alginate increased during the degradation, despite the presence of significant amounts of guluronate specific alginate lyase activity. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   
482.
The new species Squamarina scopulorum Haugan & Timdal (sect. Petroplaca ) is described from Norway. It differs from the sympatric and morphologically closely similar species S. magnussonii and S. pachylepidea mainly in the color of the apothecial disc and in the thallus chemistry. The delimitation of the genus Squamarina and the family Squamarinaceae are briefly discussed.  相似文献   
483.
484.
The taxonomy of the lichens Acarospora intricata and A. wahlenbergii is discussed, A. wahlenbergii is lectotypified, and the Scandinavian distribution of the two species is revised. The species differ in the type of paraphyses, the shape of the apothecia, and thallus chemistry. Two chemical strains of A. intricata , a psoromic acid strain and an acid deficient strain, are recorded. Psoromic acid is new to the Acarosporaceae.  相似文献   
485.
Diflubenzuron is a potent inhibitor of chitin synthesis, with potential use against salmon lice infestations. The absorption, distribution and elimination of the substance in Atlantic salmon was examined after a single, oral dose of 75 mg/kg body weight. The kinetic properties were studied by whole-body autoradiography, liquid scintillation counting and thin layer chromatography, using a 14C-labelled isotope of the substance. The drug was poorly absorbed from the intestine, but reached a concentration of more than 4 µg/g in the mucus layer of the skin 2 days after administration. If maintained for several days, this concentration is probably sufficient to control all moulting stages of sea lice in Atlantic salmon. The main route of excretion was via the bile.  相似文献   
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