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首页> 外文期刊>European Journal of Environmental Sciences >A novel computational approach of image analysis to quantify behavioural response to heat shock in Chironomus ramosus larvae (Diptera: Chironomidae)
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A novel computational approach of image analysis to quantify behavioural response to heat shock in Chironomus ramosus larvae (Diptera: Chironomidae)

机译:图像分析的新型计算方法,用于量化对山Chi(Chironomus ramosus)幼虫(双翅目:Chironomidae)对热激的行为响应

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All living cells respond to temperature stress through coordinated cellular, biochemical and molecular events known as “heat shock response” and its genetic basis has been found to be evolutionarily conserved. Despite marked advances in stress research, this ubiquitous heat shock response has never been analysed quantitatively at the whole organismal level using behavioural correlates. We have investigated behavioural response to heat shock in a tropical midge Chironomus ramosus Chaudhuri, Das and Sublette. The filter-feeding aquatic Chironomus larvae exhibit characteristic undulatory movement. This innate pattern of movement was taken as a behavioural parameter in the present study. We have developed a novel computer-aided image analysis tool “Chiro” for the quantification of behavioural responses to heat shock. Behavioural responses were quantified by recording the number of undulations performed by each larva per unit time at a given ambient temperature. Quantitative analysis of undulation frequency was carried out and this innate behavioural pattern was found to be modulated as a function of ambient temperature. Midge larvae are known to be bioindicators of aquatic environments. Therefore, the “Chiro” technique can be tested using other potential biomonitoring organisms obtained from natural aquatic habitats using undulatory motion as a behavioural parameter.
机译:所有活细胞通过协调的细胞,生化和分子事件(称为“热激反应”)对温度胁迫作出反应,并且发现其遗传基础在进化上是保守的。尽管应激研究取得了显着进展,但这种遍在的热激反应从未在整个生物水平上使用行为相关性进行定量分析。我们已经调查了热带蚊Chironomus ramosus Chaudhuri,Das和Sublette对热休克的行为反应。以滤食为食的水生Chironomus幼虫表现出特征性的起伏运动。在本研究中,这种固有的运动模式被视为行为参数。我们已经开发了一种新型的计算机辅助图像分析工具“ Chiro”,用于量化对热冲击的行为响应。通过记录在给定的环境温度下每个幼虫每单位时间执行的起伏数量来量化行为反应。对起伏频率进行了定量分析,发现这种先天的行为模式是作为环境温度的函数进行调制的。已知类幼虫是水生环境的生物指标。因此,“ Chiro”技术可以使用其他潜在的生物监测生物进行测试,这些生物监测生物是使用波动运动作为行为参数,从自然水生栖息地获得的。

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