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克氏黄虎甲(鞘翅目:虎甲科)淹没幼虫的氧气摄取和局部氧分压分布,以及它们在空气中的代谢率。

Oxygen uptake and local Po2 profiles in submerged larvae of phaeoxantha klugii (Coleoptera: Cicindelidae), as well as their metabolic rate in air.

作者信息

Zerm M, Zinkler D, Adis J

机构信息

Tropical Ecology Working Group, Max-Planck-Institute for Limnology, August-Thienemann-Strasse 2, 24306 Plön, Germany.

出版信息

Physiol Biochem Zool. 2004 May-Jun;77(3):378-89. doi: 10.1086/383504.

Abstract

We studied whether oxygen uptake from the surrounding water might enhance survival in submerged third instar larvae of Phaeoxantha klugii, a tiger beetle from the central Amazonian floodplains. Local oxygen partial pressures (Po(2)) were measured with microcoaxial needle electrodes close to larvae submerged in initially air-saturated still water. The Po(2) profiles showed that the larvae exploit oxygen from the aquatic medium. Metabolism in the air of more or less resting larvae was determined by measuring the rate of CO(2) production (sV dot co2) with an infrared gas analyzer at 29 degrees C. The sV dot co2 was around 1.8 mu L g(-1) min(-1), equivalent to an oxygen consumption rate (sV dot o2) of 1.8-2.6 mu L g(-1) min(-1). Oxygen consumption (V dot o2) of individually submerged larvae measured in closed respiration chambers at 19-10.3 kPa Po(2) (initially air saturated, 29 degrees C) ranged between 0.05 and 0.2 mu L min(-1) and was not correlated with body mass. The sV dot o2 ranged between 0.1 and 0.4 mu L min(-1), that is, 4%-22% of the metabolic rate measured in air. Mean V dot o2 decreased with declining Po(2); however, some individuals showed contrary patterns. V dot o2 was additionally measured in dormant larvae, in larvae submerged for 1-2 d in open water or for 30-49 d within sediment, as well as in larvae exposed to anoxia before the measurements. The range of V dot o2 was similar in all groups, indicating that the larvae exploit oxygen from the water whenever available. Similar V dot o2 across the whole range of body mass investigated (0.31-0.76 g) suggests that oxygen uptake occurs by spiracular uptake. Assuming that larvae survive for some time at rates comparable to depressed metabolic rates reported for other insect species, it can be concluded that oxygen uptake from water can sustain aerobic metabolism even under quite severe hypoxia. It might therefore play an important role for survival during inundation periods.

摘要

我们研究了来自周围水体的氧气摄取是否可能提高克氏闪金龟第三龄幼虫在水下的存活率,克氏闪金龟是一种来自亚马逊河中部泛滥平原的虎甲。使用微同轴针电极测量靠近浸没在初始空气饱和的静止水中的幼虫附近的局部氧分压(Po(2))。Po(2)分布表明幼虫从水生介质中摄取氧气。通过在29℃下用红外气体分析仪测量二氧化碳产生速率(sV dot co2)来测定或多或少处于静止状态的幼虫在空气中的代谢。sV dot co2约为1.8 μL g(-1) min(-1),相当于耗氧率(sV dot o2)为1.8 - 2.6 μL g(-1) min(-1)。在19 - 10.3 kPa Po(2)(初始空气饱和,29℃)下在封闭呼吸室中测量的单个浸没幼虫的耗氧量(V dot o2)在0.05至0.2 μL min(-1)之间,且与体重无关。sV dot o2在0.1至0.4 μL min(-1)之间,即空气中测量的代谢率的4% - 22%。平均V dot o2随着Po(2)的下降而降低;然而,一些个体表现出相反的模式。还在休眠幼虫、在开阔水域中浸没1 - 2天或在沉积物中浸没30 - 49天的幼虫以及在测量前暴露于缺氧环境的幼虫中测量了V dot o2。所有组的V dot o2范围相似,表明幼虫在有可用水源时从水中摄取氧气。在所研究的整个体重范围内(0.31 - 0.76 g)相似的V dot o2表明氧气摄取是通过气门摄取发生的。假设幼虫以与其他昆虫物种报道的降低代谢率相当的速率存活一段时间,可以得出结论,即使在相当严重的缺氧条件下,从水中摄取氧气也可以维持有氧代谢。因此,它可能在洪水期的生存中发挥重要作用。

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