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食虫植物狸藻属四种水生植物捕虫器中的酶活性。

Enzymatic activities in traps of four aquatic species of the carnivorous genus Utricularia.

作者信息

Sirová Dagmara, Adamec Lubomír, Vrba Jaroslav

机构信息

Faculty of Biological Sciences, University of South Bohemia, Branišovská 31, CZ-37005 České Budějovice, Czech Republic.

Institute of Botany AS CR, Section of Plant Ecology, Dukelská 135, CZ-37982 Třeboň, Czech Republic.

出版信息

New Phytol. 2003 Sep;159(3):669-675. doi: 10.1046/j.1469-8137.2003.00834.x.

Abstract

•   Here, enzymatic activity of five hydrolases was measured fluorometrically in the fluid collected from traps of four aquatic Utricularia species and in the water in which the plants were cultured. •   In empty traps, the highest activity was always exhibited by phosphatases (6.1-29.8 µmol l  h ) and β-glucosidases (1.35-2.95 µmol l  h ), while the activities of α-glucosidases, β-hexosaminidases and aminopeptidases were usually lower by one or two orders of magnitude. Two days after addition of prey (Chydorus sp.), all enzymatic activities in the traps noticeably decreased in Utricularia foliosa and U. australis but markedly increased in Utricularia vulgaris. •   Phosphatase activity in the empty traps was 2-18 times higher than that in the culture water at the same pH of 4.7, but activities of the other trap enzymes were usually higher in the water. Correlative analyses did not show any clear relationship between these activities. •   Trap comensals (Euglena) could be partly responsible for production of some trap enzymes. The traps can produce phosphatases independently of catching prey. Taking into account the enzymatic activities in traps, phosphorus uptake from prey might be more important than that of nitrogen for the plants.

摘要

• 在此,采用荧光法测定了从四种水生狸藻属植物的捕虫囊中收集的液体以及植物培养用水中五种水解酶的酶活性。

• 在空的捕虫囊中,磷酸酶(6.1 - 29.8 μmol·l⁻¹·h⁻¹)和β - 葡萄糖苷酶(1.35 - 2.95 μmol·l⁻¹·h⁻¹)的活性始终最高,而α - 葡萄糖苷酶、β - 己糖胺酶和氨肽酶的活性通常低一到两个数量级。添加猎物(盘肠溞属)两天后,在浮囊狸藻和澳大利亚狸藻的捕虫囊中,所有酶活性均显著下降,而在普通狸藻中则显著增加。

• 在相同pH值4.7的情况下,空捕虫囊中磷酸酶的活性比培养水中的高2 - 18倍,但其他捕虫囊酶的活性通常在水中更高。相关性分析未显示这些活性之间存在任何明确的关系。

• 捕虫囊共生生物(眼虫属)可能部分参与了某些捕虫囊酶的产生。捕虫囊能够独立于捕获猎物而产生磷酸酶。考虑到捕虫囊中酶的活性,对植物而言,从猎物中摄取磷可能比摄取氮更为重要。

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