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Functional Hypoxia in Insects: Definition, Assessment, and Consequences for Physiology, Ecology, and Evolution

机译:昆虫功能性缺氧:生理学,生态和演化的定义,评估和后果

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摘要

Insects can experience functional hypoxia, a situation in which O-2 supply is inadequate to meet oxygen demand. Assessing when functional hypoxia occurs is complex, because responses are graded, age and tissue dependent, and compensatory. Here, we compare information gained from metabolomics and transcriptional approaches and by manipulation of the partial pressure of oxygen. Functional hypoxia produces graded damage, including damaged macromolecules and inflammation. Insects respond by compensatory physiological and morphological changes in the tracheal system, metabolic reorganization, and suppression of activity, feeding, and growth. There is evidence for functional hypoxia in eggs, near the end of juvenile instars, and during molting. Functional hypoxia is more likely in species with lower O-2 availability or transport capacities and when O-2 need is great. Functional hypoxia occurs normally during insect development and is a factor in mediating life-history trade-offs.
机译:昆虫可以体验功能性缺氧,其中O-2供应不足以满足氧需求的情况。 评估功能性缺氧发生是复杂的,因为响应是分级,年龄和组织依赖性和补偿性的。 在这里,我们比较从代谢组科和转录方法中获得的信息,并通过操纵氧气的分压。 功能性缺氧产生分级损伤,包括受损的大分子和炎症。 昆虫通过气管系统的补偿生理和形态变化,代谢重组和抑制活性,饲养和生长。 有证据表明鸡蛋的功能性缺氧,近年的龄腹部结束,蜕皮。 功能性缺氧更有可能在具有较低的O-2可用性或运输能力的物种中,并且当O-2需要很大时。 功能性缺氧通常在昆虫发育期间通常发生,并且是调解寿命历史权衡的一个因素。

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