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Comparative genetic differences for the phosphoglucomutase and trehalase loci were surveyed in larval and adult blackfly populations of the onchocerciasis vectors Simulium yahense Vajime and Dunbar, and S.sanctipauli Vajime and Dunbar. Genotype frequencies for each stage and all populations were at Hardy-Weinberg equilibrium, indicating that S.yahense and S.sanctipauli remain genetically distinct. S.yahense populations from three different locations were found to be genotypically comparable. The larval population of S.yahense found in closest proximity to a S.sanctipauli population was found to express the phosphoglucomutase allele 1.33, characteristic of S.sanctipauli, with significantly greater frequency than other larval populations of S.yahense. This may constitute evidence of limited genetic introgression of S.sanctipauli with the S.yahense population.  相似文献   
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Two different trehalose-hydrolysing activities, known as acid or non-regulatory trehalases, and neutral or regulatory trehalases, have been recognised in a number of fungal species. The true role of these apparently redundant hydrolases remained obscure for many years. However, recent evidence suggests that neutral trehalases would be specialised in the mobilisation of cytosolic trehalose, while acid trehalases would only hydrolyse extracellular trehalose. Results obtained with Mucor rouxii, a Zygomycete initially thought to posses only neutral trehalase activity, reinforced this hypothesis. M. rouxii grows efficiently in trehalose as the sole carbon source. Trehalose-grown or carbon-starved cells exhibit a high trehalase activity of optimum pH 4.5, bound to the external surface of the cell wall, in contrast with the neutral (pH 6.5) trehalase, which occurs in the cytosol. Other differences between the neutral and the acid trehalases are the temperature optimum (35°C and 45°C, respectively) and thermal stability (half-life of 2.5 min and 12 min at 45°C, respectively). The neutral trehalase, but not the acid trehalase, is activated in vitro by cAMP-dependent phosphorylation, stimulated by Ca2+, and inhibited by EDTA. It shows maximal activity at germination and decreases as growth proceeds. In contrast the activity of the acid trehalase is totally repressed in glucose-grown cultures and increases upon exhaustion of the carbon source, and is strongly induced by extracellular trehalose.  相似文献   
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高温对家蚕三品系血淋巴中糖水平的影响(英文)   总被引:1,自引:0,他引:1  
家蚕Bombyx mori的两个二化性品系热耐受型NB4D2和热敏感型CSR2均适合于温带气候,而多化性的PM(Pure Mysore) 品系适合于热带气候,将这3种品系5龄幼虫分别置于32℃和36℃的高温下,观察高温对其5龄幼虫至蛹期血淋巴中糖含量及海藻糖酶活性的影响。结果表明: PM幼虫和蛹的死亡率均小于NB4D2和CSR2。在蜕皮期间血淋巴海藻糖水平较高,而葡萄糖水平及海藻糖酶活性较低。32℃和36℃的高温下,幼虫蜕皮期间血淋巴中糖含量及海藻糖酶活性仅在其各自的水平上表现为小幅度的增加。蜕皮后幼虫血淋巴中海藻糖含量显著下降,而葡萄糖含量和海藻糖酶活性显著上升。在较高温度下,蜕皮后幼虫血淋巴中海藻糖含量下降幅度更大,而葡萄糖含量及海藻糖酶活性上升水平也更加显著。25±1℃下取食幼虫血淋巴中葡萄糖含量显著下降,海藻糖含量显著上升;3℃和36℃下PM 和NB4D2取食幼虫血淋巴葡萄糖和海藻糖含量以及海藻糖酶活性增加,而CSR2均减少或降低。吐丝幼虫血淋巴中葡萄糖含量及海藻糖酶活性显著下降,海藻糖小幅度下降。而在较高温度下,耐热型PM 和NB4D2吐丝家蚕血淋巴糖含量含量和海藻糖酶活性明显增加,而热敏感型CSR2的则明显下降。这3种品系蛹发育期的血淋巴糖含量及海藻糖酶活性均下降。在两较高温度下,PM蛹期血淋巴糖和海藻糖酶活性增加,而NB4D2 36℃时增加幅度小于32℃时。对于CSR2,32℃时观察到其血淋巴葡萄糖含量增加,但当环境温度增加到36℃时其血淋巴葡萄糖含量降至正常水平下。然而,当CSR2的蛹置于32℃和36℃时血淋巴海藻糖含量及其酶活性下降,且36℃时下降幅度更大。因此,桑蚕对高温的适应取决于家蚕的品系及发育阶段,并可通过其血淋巴糖及海藻糖酶活性水平进行验证。  相似文献   
16.
The processes of accumulation and mobilization of carbohydrate stores in eggs of Rhodnius prolixus were analyzed. During oogenesis, the total amounts of glycogen, glucose, and trehalose increased with an accumulation of proteins, especially when oocytes grew from 1.0 to 1.5 mm in length. At 2.0 mm length, when oocytes were ready for oviposition, nutrient reserves did not increase appreciably and trehalose content decreased. Mating did not affect the final content of carbohydrates or proteins in oocytes of mated and virgin females. A trehalase activity was detected in follicles containing vitellogenic oocytes, 1.0 and 1.5 mm length, in both mated and virgin females. This activity was extremely low in chorionated, 2.0-mm oocytes. After oviposition, glycogen content decreased in fertilized eggs, but not in unfertilized ones, and some was present in newly hatched nymphs. Glucose content remained constant in unfertilized eggs, but increased in fertilized ones, while total protein amount was constant in both groups after egg laying.  相似文献   
17.
海藻糖降解酶抑制因子的研究   总被引:1,自引:0,他引:1  
研究了一系列因素对食尼古丁节杆菌D-97胞内海藻糖降解酵的抑制作用,发现有效霉素(井冈霉素)和乙酸能有效抑制海藻糖降解酶的活性,抑制率最大分别达到87.13%和85.16%.同时研究了它们对海藻糖转化率的影响,发现有效霉素能提高海藻糖转化率,最大增幅达17.44%,而乙酸却降低了转化率。  相似文献   
18.
Trehalose is the main blood sugar of insects, and the enzyme trehalase is involved in energy metabolism and controlling trehalose levels in cells. Two forms (soluble and membrane-bound) of trehalase and the corresponding genes (NlTre-1 and NlTre-2) were identified from the brown planthopper, Nilaparvata lugens. Both NlTre-1 and NlTre-2 contain trehalase signature motifs, and NlTre-2 contains a putative transmembrane domain. Comparison of trehalase activity and gene mRNA level at different developmental stages, or following application of 20-hydroxyecdysone (20E), suggests that NlTre-1 and NlTre-2 encode a soluble trehalase and a membrane-bound trehalase respectively. Soluble trehalase activity accounted for the majority of total trehalase activity in N. lugens. Only soluble trehalase activity and NlTre-1 mRNA level could be induced by 20E. Additionally, only soluble trehalase activity was significantly higher in macropterous individuals than in brachypterous morphs. These results indicate that only soluble trehalase is differentially expressed between macropterous and brachypterous individuals and is more responsive to hormone stimulus.  相似文献   
19.
飞蝗可溶型海藻糖酶基因的序列分析及mRNA表达特性   总被引:2,自引:0,他引:2  
海藻糖酶是海藻糖代谢过程中的一个关键酶, 在昆虫发育和能量调节中具有重要作用, 为进一步探讨海藻糖酶基因的功能, 本文分析了飞蝗Locusta migratoria一可溶型海藻糖酶基因的氨基酸序列并对其mRNA表达特性进行了研究。结果表明: 该海藻糖酶(TRE, GenBank登录号: FJ795020)不含有跨膜结构。系统进化树分析结果显示, 该酶与大豆蚜Aphis glycines、 豌豆蚜Acyrthosiphon pisum、 褐飞虱Nilaparvata lugens和灰飞虱Laodelphax striatella可溶型海藻糖酶具有较近的亲缘关系, 因此我们将该酶的基因命名为LmTre-1。对该基因在不同组织和发育时期表达量的荧光定量 PCR 分析表明: LmTre-1在卵发育前期、 中期的表达量都很低, 卵发育后期表达量显著提高; LmTre-1在5龄若虫和成虫被检测的组织部位中均有表达, 在体壁中的表达量最高, 其次是在脂肪体、 肌肉、 气管、 精巢及卵巢中; 5龄飞蝗刚蜕皮后LmTre-1在体壁中的表达量较高, 随着生长发育其表达量逐渐降低; LmTre-1在成虫发育期体壁中稳定高表达。LmTre-1的mRNA表达特性与几丁质合成酶1基因非常相似, 据此推测该基因可能与体壁几丁质的合成相关。本研究为深入探讨该基因的生理功能提供了重要的基础数据, 并为以海藻糖酶为杀虫靶标的农药筛选奠定实验基础。  相似文献   
20.
【目的】研究一种植物源化合物栗精碱对棉铃虫Helicoverpa armigera(Hübner)5龄幼虫中肠组织可溶型海藻糖酶的活体和离体抑制效果,初步探索其抑制作用。【方法】经过离子交换层析和疏水层析从棉铃虫5龄幼虫中肠组织分离纯化得到可溶型海藻糖酶,通过凝胶过滤层析确定其分子量。分别用不同浓度的抑制剂进行离体和活体抑制研究,得出栗精碱对可溶型海藻糖酶的抑制率和抑制中浓度(IC50),并采用Lineweaver-Burk和Dixon作图法分析抑制类型。【结果】棉铃虫中肠可溶型海藻糖酶比活力为2.022 U/mg,回收率为67.57%,纯化倍数为23.84,分子量约为67 k Da。离体抑制研究表明,3.75,7.5,15和30μmol/L的栗精碱对可溶型海藻糖酶的抑制率分别为42.00%,50.30%,58.32%和67.33%;抑制中浓度(IC50)为7.32μmol/L。通过LineweaverBurk和Dixon作图法,确定栗精碱是棉铃虫中肠组织可溶型海藻糖酶的一种有效的竞争性抑制剂,Ki值为4.9μmol/L。活体抑制研究表明,分别注射浓度为30,15和7.5μmol/L栗精碱10和20 h后,棉铃虫中肠可溶型海藻糖酶活性被显著抑制(P0.05)。相应地,注射后随着时间的延长,血淋巴海藻糖含量连续增加。而注射栗精碱20 h后,血淋巴葡萄糖浓度显著下降,使棉铃虫的能量供给出现障碍。【结论】结果表明,栗精碱是棉铃虫中肠可溶型海藻糖酶的一种有效的抑制剂,可为下一步开发有效的棉铃虫杀虫剂提供理论支持。  相似文献   
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