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Oleuropein-Specific-β-Glucosidase Activity Marks the Early Response of Olive Fruits (Olea europaea) to Mimed Insect Attack 被引量:1
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作者 Antonia Spadafora Silvia Mazzuca +3 位作者 Francesca Fiorella Chiappetta Attilio Parise Enzo Perri Anna Maria Innocenti 《Agricultural Sciences in China》 CAS CSCD 2008年第6期703-712,共10页
Olive fruits are seriously deteriorated by pre and postharvest damage due to the attack of insects, such as Bactrocera olaea, which strongly alters the quality of olives. Defence response in olive fruits injured both ... Olive fruits are seriously deteriorated by pre and postharvest damage due to the attack of insects, such as Bactrocera olaea, which strongly alters the quality of olives. Defence response in olive fruits injured both by pathogens and by mechanical damages has been associated with the enzyme β-glucosidase, which specifically hydrolyses oleuropein, producing highly reactive aldehyde molecules. In situ detection of ^-glucosidase activity in olive fruit tissues following injury, which simulates Bactrocera oleae punctures, is reported. The assay was performed in two cultivars showing different degrees of susceptibilities to fly infestation. In both cultivars, the histochemical assay for β-glucosidase showed that within 20 min after the injury, a strong ^-glucosidase activity could be observed in the damaged tissues. Thereafter a progressive enzyme inactivation occurred starting from tissues around the boundary of the injury with decrease of the enzyme activity and stopped after 3 h. Whereas the mass of active cells reached a distance of (300±50) μm from the edge of the injury. Biochemical analyses showed that in extracts of the injured fruit, β-glucosidase activity rapidly increased within 20 min from injury, thereafter decreasing and reaching values comparable with those in intact fruits. Following puncture, the oleuropein contents did not change significantly in the high susceptibility cultivar, whereas it rapidly decreased in the cultivar showing low susceptibility. The results strongly suggest that olive fruits susceptible towards fly infestation could be related to the ability of the oleuropein-degrading-β-glucosidase to produce the highly reactive molecules in the damaged tissues. As a consequence of puncture, high level of peroxidase activity was detected. This feature also suggested that this enzyme could play a key role in the defence response against insect injuries. 展开更多
关键词 β-glucosidase (EC 3.2.1.21) OLEUROPEIN Olea europaea Bactrocera oleae infestation cultivar resistance
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Enzymatic activities and kinetic properties of β-glucosidase from selected white rot fungi
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作者 Priscilla M. Mfombep Zachary N. Senwo Omoanghe S. Isikhuemhen 《Advances in Biological Chemistry》 2013年第2期198-207,共10页
Beta-glucosidase is among the suite of enzymes produced by white rot fungi (WRF) to biodegrade plant biomass. This study investigated the enzymatic activities and kinetic properties of β-glucosidase from seventeen WR... Beta-glucosidase is among the suite of enzymes produced by white rot fungi (WRF) to biodegrade plant biomass. This study investigated the enzymatic activities and kinetic properties of β-glucosidase from seventeen WRF comprised of the following species from various geographical locations: Pleurotus ostreatus, Auricularia auricular, Polyporus squamosus, Trametes versicolor, Lentinula edodes, and Grifola frondosa. All the WRF studied showed β-glucosidase activities. Significant variations in protein and carbohydrate contents were also recorded. Beta-glucosidase activities after 30 min of incubation ranged from 6.4 μg (T. versicolor) to 225 μg (G. frondosa). The calculated kinetic constant (Km) ranged from 0.47 μM (A. auricular-1120) to 719 μM (L. edodes-7). The Vmax depending on the kinetic transformation model ranged from 0.21 μg·min-1 (T. versicolor) to 9.70 μg·min-1 (G. frondosa-28). Beta-glucosidase activities also exhibited pH optima between 3.5 and 5.0 while temperature optima were between 60°C and 70°C with some media exhibiting a secondary temperature peak at 90°C attributable to the presence of thermostable isoenzyme. WRF if appropriately screened and purified can be harnessed to potentially improve the bio-conversion of cellulose to glucose and also facilitate efficient plant biomass biodegradation and production of useful plant bio-products. 展开更多
关键词 WHITE ROT FUNGI Β-glucosidase EC 3.2.1.21 ENZYMATIC Activities KINETIC Properties Plant Biomass
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纤维二糖诱导阻遏真菌合成纤维素酶的特异性基础 被引量:3
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作者 艾云灿 孟繁梅 +1 位作者 高培基 Christian P KUBICEK 《中山大学学报(自然科学版)》 CAS CSCD 北大核心 2000年第3期73-77,共5页
定量比较研究黑曲霉 (Aspergillusniger)AMS11和里氏木霉 (Trichodermareesei)QM94 14细胞内、细胞外及细胞质膜结合态 β 葡萄糖苷酶 (βGLase ,EC 3 2 1 2 1)同工酶对 17 5mmol/LD (+) 纤维二糖 ([α]2 0n +35°) 转化作用 ,旨... 定量比较研究黑曲霉 (Aspergillusniger)AMS11和里氏木霉 (Trichodermareesei)QM94 14细胞内、细胞外及细胞质膜结合态 β 葡萄糖苷酶 (βGLase ,EC 3 2 1 2 1)同工酶对 17 5mmol/LD (+) 纤维二糖 ([α]2 0n +35°) 转化作用 ,旨在揭示多亚细胞定位 βGLase功能差异及物种特异性基础 .结果发现两菌株中胞内和胞外 βGLase都只能水解之产生葡萄糖 ,而质膜结合态βGLase则按一定比例同时将其水解生成葡萄糖和转糖基生成龙胆二糖 ,且菌株AMS11的转化能力都比QM94 14的强 .观察到“葡萄糖亏损”现象 ,暗示该转化过程存在基于葡萄糖耗损的代谢过程偶联 .提出由多亚细胞定位的 βGLase同工酶介导诱导物形成与转化的“亚调控网络”模型 ,解释同一浓度纤维二糖对不同物种具有诱导或阻遏效应差异的生理学基础 . 展开更多
关键词 诱导 阻遏效应 纤维二糖 真菌 纤维素酶
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