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Insect Sterol Nutrition: Physiological Mechanisms, Ecology, and Applications

机译:昆虫甾醇营养:生理机制,生态学和应用

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摘要

Insects, like all eukaryotes, require sterols for structural and metabolic purposes. However, insects, like all arthropods, cannot make sterols. Cholesterol is the dominant tissue sterol for most insects; insect herbivores produce cholesterol by metabolizing phytosterols, but not always with high efficiency. Many insects grow on a mixed-sterol diet, but this ability varies depending on the types and ratio of dietary sterols. Dietary sterol uptake, transport, and metabolism are regulated by several proteins and processes that are relatively conserved across eukaryotes. Sterol requirements also impact insect ecology and behavior. There is potential to exploit insect sterol requirements to (a) control insect pests in agricultural systems and (b) better understand sterol biology, including in humans. We suggest that future studies focus on the genetic mechanism of sterol metabolism and reverse transportation, characterizing sterol distribution and function at the cellular level, the role of bacterial symbionts in sterol metabolism, and interrupting sterol trafficking for pest control.
机译:像所有真核生物一样,昆虫需要甾醇用于结构和代谢目的。然而,像所有节肢动物一样,昆虫不能制造甾醇。胆固醇是大多数昆虫的主要组织甾醇;昆虫食草动物通过代谢植物甾醇来产生胆固醇,但并不总是高效。许多昆虫在混合甾醇饮食上生长,但这种能力根据膳食甾醇的类型和比例而变化。膳食甾醇吸收,运输和新陈代谢由几种蛋白质和过程调节,其在真核上相对保守。甾醇要求也影响昆虫生态和行为。有潜力利用昆虫甾醇要求(a)农业系统中的昆虫害虫和(b)更好地了解甾醇生物学,包括人类。我们建议未来的研究重点关注甾醇代谢和反转运输的遗传机制,表征甾醇分布和在细胞水平的功能,细菌共生在甾醇代谢中的作用,以及中断甾醇贩运害虫控制。

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