TY - JOUR
T1 - The impacts of increasing current velocity on the drift of Simulium monticola (Diptera: Simuliidae)
T2 - a laboratory approach
AU - Fenoglio, S.
AU - Boano, F.
AU - Bo, T.
AU - Revelli, R.
AU - Ridolfi, L.
N1 - Funding Information:
We are grateful to A. Demaria and S. Bernardi for help in field samplings and laboratory experiments, and to B. Maiolini for taxonomical help. This study was supported by Fondazione Cassa di Risparmio di Alessandria CRAL grants.
PY - 2013
Y1 - 2013
N2 - Current velocity and associated physical forces are among the most important factors shaping lotic benthic communities. The recent increase in the frequency and intensity of flow alterations, especially related to hydroelectric use or irrigation, represents a key element of riverine environment deterioration. Numerous studies have investigated the effect of current velocity increases on macrobenthic fauna, underlining that, in most cases, these increases enhance the drift, i.e. the abandonment of the substrate by macroinvertebrates. The purpose of this study is to examine the drift propensity of Simulium monticola (Diptera: Simuliidae) under different water velocities. Simuliidae are one of the most characteristic components of fast-flowing environments in rivers. Experiments were conducted in an artificial stream in the laboratories of Politecnico di Torino, analysing the drift of organisms at different current velocities. The observed variability of drift appears to be related to velocity increases: interestingly, we evidenced an inverse relationship between velocity and drift propensity, with low amounts of drifting organisms at higher velocities. This tendency was not related to the size of Simuliidae larvae: when comparing the size of drifting organisms with velocity, no significant correlations were detected. We hypothesized that the tendency to drift was mainly behavioural rather than catastrophic, and related to the preference for high water velocities. Our findings support the hypothesis that increases in water velocity can cause complex changes in the drift of the macrobenthic community, increasing the propensity for some species to leave the substrate and decreasing it for others.
AB - Current velocity and associated physical forces are among the most important factors shaping lotic benthic communities. The recent increase in the frequency and intensity of flow alterations, especially related to hydroelectric use or irrigation, represents a key element of riverine environment deterioration. Numerous studies have investigated the effect of current velocity increases on macrobenthic fauna, underlining that, in most cases, these increases enhance the drift, i.e. the abandonment of the substrate by macroinvertebrates. The purpose of this study is to examine the drift propensity of Simulium monticola (Diptera: Simuliidae) under different water velocities. Simuliidae are one of the most characteristic components of fast-flowing environments in rivers. Experiments were conducted in an artificial stream in the laboratories of Politecnico di Torino, analysing the drift of organisms at different current velocities. The observed variability of drift appears to be related to velocity increases: interestingly, we evidenced an inverse relationship between velocity and drift propensity, with low amounts of drifting organisms at higher velocities. This tendency was not related to the size of Simuliidae larvae: when comparing the size of drifting organisms with velocity, no significant correlations were detected. We hypothesized that the tendency to drift was mainly behavioural rather than catastrophic, and related to the preference for high water velocities. Our findings support the hypothesis that increases in water velocity can cause complex changes in the drift of the macrobenthic community, increasing the propensity for some species to leave the substrate and decreasing it for others.
KW - Hydrological variations
KW - Simuliidae
KW - artificial stream
KW - current velocity
KW - drift
UR - http://www.scopus.com/inward/record.url?scp=84883367048&partnerID=8YFLogxK
U2 - 10.1080/11250003.2013.820798
DO - 10.1080/11250003.2013.820798
M3 - Article
SN - 1125-0003
VL - 80
SP - 443
EP - 448
JO - Italian Journal of Zoology
JF - Italian Journal of Zoology
IS - 3
ER -