Department of Zoology, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.
Department of Zoology, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada
J Exp Biol. 2019 Feb 11;222(Pt 3):jeb191973. doi: 10.1242/jeb.191973.
Spittlebugs (superfamily Cercopoidea) live within a mass of frothy, spittle-like foam that is produced as a by-product of their xylem-feeding habits. The wet spittle represents a unique respiratory environment for an insect, potentially acting either as a reserve of trapped oxygen (O) or as a significant barrier to O diffusion from the surrounding atmosphere. Feeding on xylem sap under tension is also assumed to be energetically expensive, potentially placing further constraints on their gas exchange. To understand the respiratory strategies used by spittlebugs, this study measured the within the spittle of the meadow spittlebug, , as well as the non-feeding metabolic rate (RMR) and respiratory quotient (RQ) of both nymphs and adults. The metabolic rate of nymphs feeding on xylem was also measured. In separate experiments, the ability of a nymph to obtain O from bubbles while submerged in foam was determined using a glass microscope slide coated in an O-sensitive fluorophore. We determined that breathes atmospheric O by extending the tip of its abdomen outside of its spittle, rather than respiring the O trapped in air bubbles within the foam. However, spittlebugs can temporarily use these air bubbles to breathe when forcibly submerged. and did not differ statistically within life stages, giving a RQ of 0.92 for nymphs and 0.95 for adults. Feeding on xylem was found to increase the nymphs' by only 20% above their RMR. From this cost of feeding, cibarial pump pressures were estimated to be between -0.05 and -0.26 MPa.
沫蝉(沫蝉总科)生活在一团泡沫状的泡沫状物质中,这些泡沫状物质是它们木质部取食习惯的副产物。湿润的唾液代表了昆虫独特的呼吸环境,可能既作为被困氧气 (O) 的储备,也作为周围大气中 O 扩散的重要屏障。在张力下吸食木质汁液也被认为是能量消耗大的,这可能进一步限制了它们的气体交换。为了了解沫蝉使用的呼吸策略,本研究测量了草地沫蝉的唾液中的 ,以及若虫和成虫的非摄食代谢率 (RMR) 和呼吸商 (RQ)。还测量了取食木质汁液的若虫的代谢率。在单独的实验中,通过在涂有 O 敏感荧光染料的玻璃载玻片上覆盖玻璃显微镜载玻片,确定了若虫在泡沫中浸没时从气泡中获取 O 的能力。我们确定 通过将腹部尖端伸出唾液外呼吸大气中的 O,而不是呼吸泡沫内空气泡中被困的 O。然而,沫蝉在被迫浸没时可以暂时利用这些气泡呼吸。 和 在生命阶段内没有统计学差异,因此若虫的 RQ 为 0.92,成虫的 RQ 为 0.95。取食木质汁液仅使若虫的 比 RMR 增加了 20%。从摄食成本来看,口咽泵压力估计在-0.05 至-0.26 MPa 之间。