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Carbon Dioxide and Temperature Gradielits in Baermann Funnel Extraction ofRotylenchulus reniformis

机译:贝尔曼漏斗提取水中二氧化碳和温度梯度。轮状轮虫

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摘要

Vermiform Rotylenchulus reniformis were anesthetized in water by 10-40% CO₂ but were fully motile for 24 hours in water below 5% CO₂. When air containing 2.5% CO₂ was blown onto agar, nematodes accumulated at the point of highest CO₂ concentration. Nematodes also accumulated when chilling (0.2-1 C) of agar by the gas flow at the accumulation point was offset with heat from a fiber optic. In Baermann funnels containing R. reniformis in silt loam and sandy clay loam soils, CO₂ in funnel water increased during 24 hours from 0 to ca. 1%; more CO₂ accumulated below the soil layer than above. Bubbling air with 2.5% CO₂ into water below soil in covered funnels increased the CO₂ gradient and increased nematode extraction, whereas bubbling air without CO₂ below soil purged CO₂ from the water and decreased nematode extraction. Manipulation of CO₂ within funnels usually increased extraction by only 30% and never by more than 3-fold. Controlling temperature gradients consistently increased extraction by 2-30-fold.
机译:在水中用10-40%CO2麻醉蠕形轮虫,但在低于5%CO2的水中可完全运动24小时。当将含2.5%CO 2的空气吹到琼脂上时,线虫聚集在最高CO 2浓度处。当通过聚集点处的气流将琼脂冷却(0.2-1 C)抵消了线虫的热量时,线虫也会被光纤的热量抵消。在粉壤土和砂质壤土中含有雷尼福尔氏菌的Baermann漏斗中,漏斗水中的CO 2在24小时内从0增加到大约1。 1%;在土壤层下积累的CO 2比上方多。在覆盖的漏斗中,向土壤下方的水中鼓入含2.5%CO 2的空气会增加CO 2梯度并增加线虫的提取,而向土壤下方鼓吹不含CO 2的空气会从水中清除CO 2,从而减少线虫的提取。通常在漏斗中处理CO 2只会使提取率提高30%,而不会超过3倍。控制温度梯度始终使提取增加2-30倍。

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