首页> 美国卫生研究院文献>Journal of Insect Science >In Vitro and In Vivo Effects of α-Amylase Inhibitor From Avena sativa Seeds on Life History and Physiological Characteristics of Sitotroga cerealella (Lepidoptera: Gelechiidae)
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In Vitro and In Vivo Effects of α-Amylase Inhibitor From Avena sativa Seeds on Life History and Physiological Characteristics of Sitotroga cerealella (Lepidoptera: Gelechiidae)

机译:燕麦(Avena sativa)种子中α-淀粉酶抑制剂的体外和体内作用对谷粉拟鳞蛾生活史和生理特性的影响

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摘要

The inhibitory effects of Avena sativa L. seed extract were studied on life history and some physiological aspects of Sitotroga cerealella (Olivier; Lepidoptera: Gelechiidae). The inhibition of α-amylase activity in vitro by A. sativa proteinaceous extract suggested its potential antimetabolic effect on S. cerealella larvae. Although, chronic ingestion of A. sativa inhibitor (I10: 0.108 mg protein/artificial seed) did not show significant reduction of the growth and development of S. cerealella. However, a delay in the developmental time of immature stages was detected when S. cerealella larvae were continuously fed on I30 and I50 concentrations (0.429 and 1.11 mg protein/artificial seed, respectively) of the inhibitor. The highest realized fecundity was recorded for females which came from larvae fed on I10 concentration (102.46 ± 2.50 eggs/female), and the lowest fecundity was observed for females which came from larvae fed on I50 concentration (31.64 ± 3.17 eggs/female). The lightest weight of pupae of S. cerealella was observed on I50 concentration (2.76 ± 0.07 mg). The lowest glycogen and lipid contents of the pupae were detected on I50 concentration (50.00 ± 3.53 and 289.57 ± 29.00 µg/pupa, respectively). The lower survival rate of pupae at low temperature indicated that S. cerealella fed on I50 concentration of the inhibitor was less cold tolerant than control insects. The inhibitory studies indicated that A. sativa proteinaceous extract is a good candidate as an inhibitor of the α-amylase of this pest. This inhibitor can be expressed in genetically engineered plants to confer resistance to S. cerealella.
机译:研究了燕麦(Avena sativa L.)种子提取物对生活史的影响以及谷麦食心菌(Olivier; Lepidoptera:Gelechiidae)的某些生理方面。苜蓿草提取物对体外α-淀粉酶活性的抑制表明其对谷类链球菌幼虫具有潜在的抗代谢作用。虽然,长期摄入紫花苜蓿抑制剂(I10:0.108 mg蛋白/人工种子)并未显示出谷物链霉菌的生长和发育显着减少。然而,当连续给I30和I50浓度(分别为0.429和1.11 mg蛋白质/人工种子)的抑制剂饲喂谷类链球菌幼虫时,未成熟阶段的发育时间被检测到延迟。以I10浓度喂养幼虫的雌性记录的最高繁殖力(102.46±2.50卵/雌性),以I50浓度喂养幼虫的雌性观察到的最低繁殖力(31.64±3.17卵/雌性)。在I50浓度(2.76±0.07 mg)下观察到最轻的谷物链霉菌weight。在I50浓度下detected的最低糖原和脂质含量最低(分别为50.00±3.53和289.57±29.00 µg / pupa)。 low在低温下较低的存活率表明,饲喂浓度为50抑制剂的谷类链球菌与对照昆虫相比,其耐寒性较差。抑制性研究表明,紫花苜蓿蛋白质提取物可作为该害虫α-淀粉酶的抑制剂。该抑制剂可以在基因工程植物中表达以赋予对谷物链球菌的抗性。

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