Topic: Ecology

Seminar
14 seminars
Conference
1 conference
Job
1 job
Podcast
1 podcast
Conference

Molecular mechanisms in evolution and ecology

EMBL Heidelberg and virtual
Oct 6, 2026

This EMBO workshop brings experimental and computational researchers together around molecular mechanisms of adaptation, evolutionary dynamics, microbial communities, symbiosis, biodiversity, and cell-environment interactions.

JobTaxonomy

Memorial Botanical Postdoctoral Fellowship: 2027

Cape Town, South Africa
Sep 14, 2026

Conduct independent research on South African flora, particularly systematic botany and geographical distribution, with a host at UCT or SANBI Kirstenbosch. The 12-month fellowship preferably starts in the first quarter of 2027 and provides up to ZAR 275,000 for the fellowship plus ZAR 75,000 for research costs. Applicants of any nationality may apply. Submit a single PDF with a cover letter, proposal of up to 2,500 words, CV, transcripts and degree certificates by 30 September 2026. Three referee reports and a host endorsement must also arrive by that date under the call’s separate submission instructions.

PodcastPodcasts

Briefing Chat: Orcas smashed a sunfish to bits — researchers aren’t sure why

Jul 31, 2026

Nature staff discuss a large survey of insect diversity in the Amazon and unusual orca behavior captured on video involving a sunfish.

SeminarPodcastsRecording

Started at 09 .15 - A WHOLE DAY symposium celebrating the work of Mike Land

Animal Vision - The work of Mike Land
University of Sussex
Apr 27, 2023

Note: British 16.15 is the finishing time

SeminarBiology

LifePerceives

Michael Levin, Katie Bentley, Anil Seth, Lucia Pietroiusti, Andrew Adamatzky, and many more..
Jan 20, 2023

Life Perceives is a symposium bringing together scientists and artists for an open exploration of how “perception” can be understood as a phenomenon that does not only belong to humans, or even the so-called “higher organisms”, but exists across the entire spectrum of life in a myriad of forms. The symposium invites leading practitioners from the arts and sciences to present unique insights through short talks, open discussions, and artistic interventions that bring us slightly closer to the life worlds of plants and fungi, microbial communities and immune systems, cuttlefish and crows. What do we mean when we talk about perception in other species? Do other organisms have an experience of the world? Or does our human-centred perspective make understanding other forms of life on their own terms an impossible dream? Whatever your answers to these questions may be, we hope to unsettle them, and leave you more curious than when you arrived.

SeminarVision ScienceRecording

A Panoramic View on Vision

Maximilian Joesch
IST Austria
Mar 7, 2022

Statistics of natural scenes are not uniform - their structure varies dramatically from ground to sky. It remains unknown whether these non-uniformities are reflected in the large-scale organization of the early visual system and what benefits such adaptations would confer. By deploying an efficient coding argument, we predict that changes in the structure of receptive fields across visual space increase the efficiency of sensory coding. To test this experimentally, developed a simple, novel imaging system that is indispensable for studies at this scale. In agreement with our predictions, we could show that receptive fields of retinal ganglion cells change their shape along the dorsoventral axis, with a marked surround asymmetry at the visual horizon. Our work demonstrates that, according to principles of efficient coding, the panoramic structure of natural scenes is exploited by the retina across space and cell-types.

SeminarBehavioral Ecology

The neuroecological context of group living

Sean O'Donnell
Drexel University
May 4, 2021

Dr. Sean O'Donnell is a Professor of Biodiversity Earth & Environmental Science at Drexel University, USA. His neuroscience research focuses on how brain structure plasticity & evolution are affected by social behavior, mainly using insects as models. He is also interested in tropical ecology & thermal physiology. He conducts field research & teaches field courses in Central & South America, as well as in the Negev Desert in Israel.

SeminarBehavioral EcologyRecording

Food for Thought: How internal states shape foraging behavior

Audrey Dussutour & Rong Gong
CNRS & HHMI Janelia Research Campus
Apr 20, 2021
SeminarCognitionRecording

Foraging at the Limit: Cognitive capabilities of birds and bees

Susan Healy & Lars Chittka
University of St. Andrews; Queen Mary, University of London
Mar 30, 2021
SeminarBehavioral EcologyRecording

What is Foraging?

Alex Kacelnik
University of Oxford
Mar 16, 2021

Foraging research aims at describing, understanding, and predicting resource-gathering behaviour. Optimal Foraging Theory (OFT) is a sub-discipline that emphasises that these aims can be aided by segmenting foraging behaviour into discrete problems that can be formally described and examined with mathematical maximization techniques. Examples of such segmentation are found in the isolated treatment of issues such as patch residence time, prey selection, information gathering, risky choice, intertemporal decision making, resource allocation, competition, memory updating, group structure, and so on. Since foragers face these problems simultaneously rather than in isolation, it is unsurprising that OFT models are ‘always wrong but sometimes useful’. I will argue that a progressive optimal foraging research program should have a defined strategy for dealing with predictive failure of models. Further, I will caution against searching for brain structures responsible for solving isolated foraging problems.

SeminarPhysics of LifeRecording

On being the right size: Is the search for underlying physical principles a wild-goose chase?

Workshop, Multiple Speakers
Emory University
Oct 29, 2020

When was the last time you ran into a giant? Chances are never. Almost 100 years ago, JBS Haldane posed an outwardly simple yet complex question – what is the most optimal size (for a biological system)? The living world around us contains a huge diversity of organisms, each with its own characteristic size. Even the size of subcellular organelles is tightly controlled. In absence of physical rulers, how do cells and organisms truly “know” how large is large enough? What are the mechanisms in place to enforce size control? Many of these questions have motivated generations of scientists to look for physical principles underlying size control in biological systems. In the next edition of Emory's Theory and Modeling of Living Systems (TMLS) workshop series, our panel of speakers will take a close look at these questions, across the entire scale - from the molecular, all the way to the ecosystem.

SeminarEvolution

Evolutionary Dynamics

Richard Neher, Oskar Hallatschek, Ivana Cvijović
CUNY/ITS, CUNY/Princeton Center for Physics of Biological Function
Oct 9, 2020
SeminarMicrobiologyRecording

Can we predict the diversity of real populations? Part II: What determines microbial diversity?

Workshop, Multiple Speakers: Erik van Nimwegen (U Basel), Jacopo Grilli (ICTP), Maitreya Dunham (U Washington), Nandita Garud (UCLA)
Emory University
Aug 25, 2020

Microbes make up the vast majority of the tree of life. While we know very little about most microbial species, large-scale sequencing is giving us glimpses of the diversity that exists both within species and in ecosystems. The challenge now is to find the patterns in this diversity and understand them. This session features provocative talks on attempts to meet that challenge.

SeminarEvolutionRecording

Can we predict the diversity of real populations? Part I: What is linked selection doing to populations?

Workshop, Multiple Speakers: Christelle Fraïsse (IST Austria/CNRS), Derek Setter (U Edinburgh), Kim Gilbert (U Lausanne/U Bern), Ivana Cvijovic (Stanford U)
Emory University
Aug 18, 2020

Natural selection affects not only selected alleles, but also indirectly affects all genes near selected sites on the genome. An increasing body of evidence suggests that this linked selection is an important driver of evolutionary dynamics throughout the genomes of many species, implying that we need to substantially revise our basic understanding of molecular evolution. This session brings together early-career researchers working towards a quantitative understanding of the prevalence and effects of linked selection.

SeminarMicrobiology

Dynamics of microbiota communities during physical perturbation

Carolina Tropini
UBC – Vancouver BC – Canada
Jul 29, 2020

The consortium of microbes living in and on our bodies is intimately connected with human biology and deeply influenced by physical forces. Despite incredible gains in describing this community, and emerging knowledge of the mechanisms linking it to human health, understanding the basic physical properties and responses of this ecosystem has been comparatively neglected. Most diseases have significant physical effects on the gut; diarrhea alters osmolality, fever and cancer increase temperature, and bowel diseases affect pH. Furthermore, the gut itself is comprised of localized niches that differ significantly in their physical environment, and are inhabited by different commensal microbes. Understanding the impact of common physical factors is necessary for engineering robust microbiota members and communities; however, our knowledge of how they affect the gut ecosystem is poor. We are investigating how changes in osmolality affect the host and the microbial community and lead to mechanical shifts in the cellular environment. Osmotic perturbation is extremely prevalent in humans, caused by the use of laxatives, lactose intolerance, or celiac disease. In our studies we monitored osmotic shock to the microbiota using a comprehensive and novel approach, which combined in vivo experiments to imaging, physical measurements, computational analysis and highly controlled microfluidic experiments. By bridging several disciplines, we developed a mechanistic understanding of the processes involved in osmotic diarrhea, linking single-cell biophysical changes to large-scale community dynamics. Our results indicate that physical perturbations can profoundly and permanently change the competitive and ecological landscape of the gut, and affect the cell wall of bacteria differentially, depending on their mechanical characteristics.

SeminarImmunology

Interactions of antibodies and bacteria in the digestive tract

Claude Loverdo
Institut de Biologie Paris-Seine – Paris, France
Jul 29, 2020
SeminarMicrobiology

Building microbial communities to understand and predict dynamics and functions

Ophelia Venturelli
University of Wisconsin – Madison WI – USA
Jul 29, 2020

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