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首页> 外文期刊>The Journal of Experimental Biology >Measuring metabolic rates of small terrestrial organisms by fluorescence-based closed-system respirometry
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Measuring metabolic rates of small terrestrial organisms by fluorescence-based closed-system respirometry

机译:基于荧光的闭合系统呼吸测定测量小陆生物体的代谢率

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We explore a recent, innovative variation of closed-system respirometry for terrestrial organisms, whereby oxygen partial pressure (PO2) is repeatedly measured fluorometrically in a constant-volume chamber over multiple time points. We outline a protocol that aligns this technology with the broader literature on aerial respirometry, including the calculations required to accurately convert O-2 depletion to metabolic rate (MR). We identify a series of assumptions, and sources of error associated with this technique, including thresholds where O-2 depletion becomes limiting, that impart errors to the calculation and interpretation of MR. Using these adjusted calculations, we found that the resting MR of five species of angiosperm seeds ranged from 0.011 to 0.640 ml g(-1) h(-1), consistent with published seed MR values. This innovative methodology greatly expands the lower size limit of terrestrial organisms that can be measured, and offers the potential for measuring MR changes over time as a result of physiological processes of the organism.
机译:我们探讨了陆地生物的闭合系统呼吸测定法的最新创新变化,由此在多个时间点上在恒定体积室中荧光地测量氧气压力(PO2)。我们概述了一种协议,将该技术与广大文学对准的空中呼吸测定法,包括准确转换为代谢率(MR)的o-2耗尽所需的计算。我们识别一系列假设,以及与该技术相关的误差源,包括O-2耗尽变化的阈值,从而赋予MR的计算和解释的错误。使用这些调整后的计算,我们发现,静止的五种高血管植物种子先生的范围为0.011至0.640ml g(-1)H(-1),与已发表的种子MR值一致。这种创新方法极大地扩展了可以测量的陆生物体的较小限制,并且由于生物体的生理过程而使MR变化的可能性随着时间的推移而变化。

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