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Biology subjects

Leberecht, B.

Publications and source records attributed to Leberecht, B..

3 recordsLinked to original sources

Directionality range in Emlen funnels

Emlen funnels can be used to study the birds ability to orient during the migratory seasons. Birds are so eager to migrate that they will jump in the direction in which they want to fly, even if they are placed in small cages during the night. Emlen funnels have therefore been used for decades to study the sensory capabilities and mechanisms that migratory birds use to find their way. A significant part of this research has focused on how night-migratory songbirds perceive the Earths magnetic field. Even though Emlen funnels have been proven quite successful in capturing the birds behavioural responses to different experimental conditions, the orientation behaviour of night-migratory songbirds in Emlen funnels is very noisy, i.e. tends to have a low signal to noise ratio. This noise makes Emlen funnel experiments very time consuming and limits the types of questions that can be studied to those which require very few different experimental conditions (permutations). Furthermore, the experimental design choices can be crucial, e.g. degree of blinding of the experimenters and data evaluators to the conditions tested, pre-testing of birds to make sure they are in a migratory state, and planning of the effective sample sizes. Hence, different traditions in experimental design choices can reduce reproducibility and comparability and render the interpretation of the results non-trivial. To better understand Emlen funnel data and the minimal requirements for good experimental design, we constructed and analyzed a large data set that we compiled by combining behavioural data from many previous Emlen funnel studies performed in Oldenburg. Our results provide realistic ranges for the expected orientation of the birds in Emlen funnels, which can be useful (and in some research crucial) for predicting the optimal sample sizes for future experiments. Our results thus offer concrete information for the design and analysis of statistically powerful future magnetic orientation experiments.

animal behavior and cognition↗

Morphology and connectivity of retinal horizontal cells in two avian species

In the outer vertebrate retina, the visual signal is separated into intensity and wavelength information. In birds, seven types of photoreceptors (one rod, four single cones, and two members of the double cone) mediate signals to >20 types of second-order neurons, the bipolar cells and horizontal cells. Horizontal cells contribute to color and contrast processing by providing feedback signals to photoreceptors and feedforward signals to bipolar cells. In fish, reptiles, and amphibians they either encode intensity or show color-opponent responses. Yet, for the bird retina, the number of horizontal cell types is not fully resolved and even more importantly, the synapses between photoreceptors and horizontal cells have never been quantified for any bird species. With a combination of light microscopy and serial EM reconstructions, we found four different types of horizontal cells in two distantly related species, the domestic chicken and the European robin. In agreement with some earlier studies, we confirmed two highly abundant cell types (H1, H2) and two rare cell types (H3, H4), of which H1 is an axon-bearing cell, whereas H2-H4 are axonless. Horizontal cell contacts to photoreceptors were type-specific and similar to the turtle retina, which confirms the high degree of evolutionary conservation in the vertebrate outer retina. Our data further suggests that H1 and potentially H2 cells may encode intensity, whereas H3 and H4 may represent color opponent horizontal cells which may contribute to the birds superb color and/or high acuity vision.

neuroscience↗

Comparison of retinol binding protein 1 with cone specific G-protein as putative effector molecules in cryptochrome signalling

Vision and magnetoreception in navigating songbirds are strongly connected as recent findings link a light dependent radical-pair mechanism in cryptochrome proteins to signalling pathways in cone photoreceptor cells. A previous yeast-two-hybrid screening approach identified six putative candidate proteins showing binding to cryptochrome type 4a. So far, only the interaction of the cone specific G-protein transducin -subunit was investigated in more detail. In the present study, we compare the binding features of the G-protein -subunit with those of another candidate from the yeast-two-hybrid screen, cellular retinol binding protein. Purified recombinant European robin retinol binding protein bound retinol with high affinity, displaying an EC50 of less than 5 nM, thereby demonstrating its functional state. We applied surface plasmon resonance and a Forster resonance transfer analysis to test for interactions between retinol binding protein and cryptochrome 4a. In the absence of retinol, we observed no robust binding events, which contrasts the strong interaction we observed between cryptochrome 4a and the G-protein -subunit. We conclude that retinol binding protein is unlikely to be involved in the primary magnetosensory signalling cascade.

biochemistry↗