The upside-down swimming behavior of Synodontis nigriventris evolved as an adaptive feeding strategy
the verdict
INSUFFICIENT LEANING
refutedsupported
the weight of evidence
4 sources for · 0 against
The retrieved sources establish that Synodontis nigriventris is a surface-feeding fish that swims upside down, but they provide only partial support for the claim that this behavior specifically evolved as an adaptive feeding strategy.
SUMMARYSynodontis nigriventris is a surface-feeding facultative air-breather that swims inverted with its zoological ventral side towards the water surface. Their near-surface drag is about double the deeply submerged drag (due to wave drag) and roughly twice the sum of frictional and pressure drags. For streamlined technical bodies, values of wave drag augmentation near the surface may be five times the deeply submerged values. However, the depth dependence of drag is similar for fish and streamlined technical bodies, with augmentation vanishing at about 3 body diameters below the surface. Drag`inverted' is approximately 15% less than that `dorsal side up' near the surface. Consistent with this, at any given velocity, tailbeat frequency is lower and stride length higher for inverted swimming in surface proximity(P<0.05). Deeply submerged, there are no significant differences in drag and kinematics between postures (P>0.05). At the critical Froude number of 0.45, speeds in surface proximity correspond to prolonged swimming that ends in fatigue. To exceed these speeds, the fish must swim deeply submerged and this behaviour is observed. Inverted swimming facilitates efficient air breathing. Drag dorsal side up during aquatic surface respiration is 1.5 times the value for the inverted posture. Fast-starts are rectilinear, directly away from the stimulus. Average and maximum velocity and acceleration decrease in surface proximity (P<0.05) and are higher inverted (maximum acceleration: 20–30 m s–2; P<0.05) and comparable to locomotor generalists (e.g. trout). Mechanical energy losses due to wave generation are about 20% for inverted and 40% for dorsal side up, and lower than for trout fast-starting in shallow water (70% losses); bottom effects and large amplitude C-starts (c.f. relatively low amplitude rectilinear motions in S. nigriventris)enhance resistance in trout. S. nigriventris probably evolved from a diurnal or crepuscular `Chiloglanis-like' benthic ancestor. Nocturnality and reverse countershading likely co-evolved with the inverted habit. Presumably, the increased energy cost of surface swimming is offset by exploiting the air–water interface for food and/or air breathing.
Synodontis nigriventris
Synodontis nigriventris, the blotched upside-down catfish, is a species of upside-down catfish native to the Congo Basin of Cameroon, the Democratic Republic of the Congo and the Republic of the Congo. [2]
## Appearance and anatomy
Blotched upside-down catfish are small, reaching a maximum of 9.6 centimetres (3.8 in) SL. [2] Like other members of the family Mochokidae, they have large eyes, a large dorsal fin and three pair of barbels. These fish are adapted to spend most of their time upside-down. This is reflected in the fish's pigmentation – their bellies are darker than their backs, a form of countershading. [3] These fish have lighter colors on the top of their bodies and darker colors below used for camouflage. The lighter colors on the top of them make it harder for predators to see the fish when looking up toward the sky but only when the fish are swimming upside-down. [4]
## Ecology and behaviour
Synodontis nigriventris are mostly nocturnal, and feed on insects, crustaceans, and plant matter. [2] These fish lay eggs. [2] The young fish do not swim upside-down until they are about two months old. [5] Adults swim and rest upside down in the water
Swimming in the upside down catfish Synodontis nigriventris: it matters which way is up - PubMed
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## Abstract
Synodontis nigriventris is a surface-feeding facultative air-breather that swims inverted with its zoological ventral side towards the water surface. Their near-surface drag is about double the deeply submerged drag (due to wave drag) and roughly twice the sum of frictional and pressure drags. For streamlined technical bodies, values of wave drag augmentation near the surface may be five times the deeply submerged values. However, the depth dependence of drag is similar for fish and streamlined technical bodies, with augmentation vanishing at about 3 body diameters below the surface. Drag ;inverted' is approximately 15% less than that ;dorsal side up' near the surface. Consistent with this, at any given velocity, tailbeat frequency is lower and stride length higher for inverted swimming in surface proximity (P<0.05). Deeply submerged, there are no significant differences in drag and kinematics between postures (P>0.05). At the critical Froude number of 0.45, speeds in surface proximity correspond
Swimming behaviour of the upside-down swimming catfish (Synodontis nigriventris) at high-quality microgravity – A drop-tower experiment - ScienceDirect
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## Advances in Space Research
Date: 15 July 2009
Pages: 217-220
Volume: Volume 44, Issue 2
## Part of special issue
Life Sciences in Space
## Published by: Elsevier
### Published by
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# Swimming behaviour of the upside-down swimming catfish (Synodontis nigriventris) at high-quality microgravity – A drop-tower experiment
R. Anken a b, R. Hilbig b
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## Keywords
Utricle
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Saccule
;
Inner ear
;
Gravity
;
Postural control
;
Dorsal light response
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## Introduction
The teleost Synodontis nigriventris is an African catfish in a genus with several species that have been noted for their peculiar postural control (Meyer et al., 1976b): When clear above the bottom and not close to underwater objects these animals swim upside-down, likely due to their surface-feeding and facultative air-breathing life-style. It has been suggested that t
Everything we examined (5) — 4 independent sources
This check searched the claim as stated. It did not run a separate search for evidence against it.