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首页> 外文期刊>Aquatic Microbial Ecology >Cell-surface proteolytic activity of photosynthetic dinoflagellates
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Cell-surface proteolytic activity of photosynthetic dinoflagellates

机译:光合藻鞭毛藻的细胞表面蛋白水解活性

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We used the artificial substrate L-leucine 7-amido-4-methyl-coumarin (Leu-AMC) to measure leucine aminopeptidase (LAP) of dinoflagellates. Axenic cultures of Alexandrium tamarense, Heterocapsa triquetra and Prorocentrum minimum had considerable LAP. associated with the cell surface. In non-axenic cultures of Akashiwo, sanguinea, Gonyaulax grindleyi, Gyrodinium uncatenum, Karlodinium micrum and P. minimum, 60 to 99% of the total LAP activity was found in the > 5 mum fraction, indicating association with the dinoflagellates rather than with bacteria. At 20degreesC, estimated activity ranged from 0.04 pmol cell(-1) h(-1) in the smallest species, K. micrum, to 2.56 pmol cell(-1) h(-1) in the largest species, G. grindleyi. Activity per cell could be predicted from cell size. During a mixed species dinoflagellate bloom in the Choptank River, a tributary of the Chesapeake Bay, total LAP activity was positively correlated with dinoflagellate concentration. In 'red-water' samples, up to 76% of LAP activity was in the > 2 mum fraction. We calculate that in red-water events, dinoflagellates may account for 50% or more of the in situ LAP activity. Cell-surf ace proteases may play a role in nutrition of mixotrophic dinoflagellates by providing amino acids for assimilation. Alternatively, released amino acids may be degraded by cell-surface amino acid oxidases to provide ammonium which can be taken up as a source of nitrogen.
机译:我们使用人工底物L-亮氨酸7-氨基-4-甲基香豆素(Leu-AMC)来测定壬鞭毛酸盐的亮氨酸氨基肽酶(LAP)。 tamarense亚历山大草,Heterocapsa triquetra和Prorocentrum Minimum的无性培养具有相当大的LAP。与细胞表面相关。在Akashiwo,sanguinea,Gonyaulax grindleyi,Gyrodinium uncatenum,Karldiumnium micrum和P.p.的非树胶培养物中,总LAP活性的60%至99%发现在> 5的妈妈部分中,这表明与鞭毛而不是细菌有关。在20℃下,估计的活性范围从最小种K. micrum的0.04 pmol cell(-1)h(-1)到最大种G. grindleyi的2.56 pmol cell(-1)h(-1)。可以从细胞大小预测每个细胞的活性。在切萨皮克湾的一条支流乔普坦克河中混合鞭毛藻的盛放过程中,总的LAP活性与鞭毛藻的浓度呈正相关。在“红水”样品中,> 2的妈妈部分中高达76%的LAP活性。我们计算出在红水事件中,鞭毛鞭毛虫可能占原位LAP活性的50%或更多。细胞表面蛋白酶可以通过提供氨基酸进行同化来在营养营养性鞭毛藻的营养中发挥作用。或者,释放的氨基酸可被细胞表面氨基酸氧化酶降解以提供可被吸收为氮源的铵。

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