MUSE · 'Multisensory Ecology': Understanding adaptive trade-offs between vision and olfaction
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2016-08-29 → 2018-08-28
- Финансиране от ЕС
- 195 455 €
- Участници
- 1
- Схема
- MSCA-IF-EF-ST
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Накратко на български
Връзката между зрението и обонянието при дневните насекоми показва как хищниците залагат повече на зрението, отколкото на миризмата. Разбирането на тези компромиси помага да се разбере как животните се адаптират към промените в начина си на живот, предизвикани от човека.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
'Multisensory Ecology': Understanding adaptive trade-offs between vision and olfaction
Sensory systems enable animals to perceive their worlds and make adaptive decisions for survival. Evolution has shaped animals with multiple sensory systems that fit their lifestyle and environment, to give them the information they need to enhance their survival and reproduction. However, finding out about the world outside is energetically expensive: it involves complex sensory systems to collect the information, and dedicated neural systems to process it. Therefore, the benefits of acquiring information need to be balanced against the costs of receiving and processing it. As a consequence, when environmental constraints (e.g. living in the dark) limit the usefulness of specific sensory modalities (e.g. vision), shifts in investment in different sensory modalities can occur. For example, naked mole-rat are blind and compensate this lack of vision with an Eimer's organ that provides them with extra-sensory abilities in mechanosensory perception. Although comparative studies between closely related species have identified potential trade-offs between sensory modalities, empirical evidence is urgently needed to help establish that these trade-offs occur, and if so, under what conditions. Indeed, since human activity is shifting animals' lifestyle to a more nocturnal lifestyle, it becomes increasingly important to know how animals’ sensory capabilities will change to perceive the world around them. Using brain measures, the project established the putative trade-off between vision and olfaction across a range of diurnal insect species, and identified that hunting mode and could help to explain how this trade-off is resolved. I found that predatory insects tend to invest more in vision and less in olfaction compared to insect species foraging by other methods. Using an empirical approach, I also found that living in the dark can reduce not just investment in vision, but also the reduce the size of the brain itself. This empirical approach also provided insights into how natural selection acts on sensory and neural systems, and showed the speed with which changes in the brain occur, and the degree to which these changes are reversible.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Sensory systems enable animals to perceive their worlds and make adaptive decisions for survival. However, finding out about the world outside is energetically expensive: it involves complex sensory systems to collect the information, and dedicated neural systems to process it. Therefore, the benefits of acquiring information need to be balanced against the costs of receiving and processing it. Consequently, evolution has equipped animals with sensory systems that fit their lifestyle and environment, to give them the information they need to enhance their survival and reproduction. However, most, if not all, animals have multiple sensory systems: how should investment in different sensory systems be balanced, and what factors affect the trade-off between investment in different sensory modalities? When environmental constraints limit the usefulness of specific sensory modalities (e.g. living in the dark), shifts in investment in different sensory modalities can occur. What is not known is how trade-offs occur between sensory modalities that are still useful to an animal, but perhaps their relative importance changes according to lifestyle or environmental factors. This project aims to investigate the trade-off that occurs in diurnal species between the visual and olfactory systems, and explain why it occurs. I will use insects as a model system, since their neural structures, ecologies and sensory systems are well studied, and can be easily measured. I will measure the relative size of olfactory and visual systems within insect species, and test if predatory species or those that fly (i.e. species that need to rapidly assess changes in their environment) invest more in vision than olfaction. I will also test if the sizes of neural structures associated with each modality correlate with sensory ability. The project will provide the first concrete evidence that sensory capabilities are traded-off against one another, and identify the reasons why.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSITY OF NEWCASTLE UPON TYNE · Newcastle Upon TyneКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
