Evolutionary Biology

Upcoming events

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

Wed, Oct 14, 2026 · 14:00 Asia/Tokyo

Gašper Tkačik explores whether the language of information in biology can become a predictive scientific theory. The lecture connects information transfer from DNA to proteins, positional signals that guide cell fate during development, neural information processing, and the storage and inheritance of information in evolving genomes. It brings physics, information theory and quantitative biology together to examine these processes across biological scales. Tkačik is Professor at the Institute of Science and Technology Austria. Shinya Kuroda provides commentary; Arisa Ema moderates. Online via Zoom Webinar. Wednesday 14 October 2026, 14:00–15:00 JST (Asia/Tokyo; UTC+9). Public advance registration is required through the organizer’s event page. The lecture is in English with Japanese interpretation. Organized by Tokyo College, The University of Tokyo Institutes for Advanced Study.

information theorybiological information+1 moreSeries: Tokyo College, The University of Tokyo Institutes for Advanced Study

This Lake Conference is a 3.5-day forum on comparative and evolutionary approaches to nervous-system function. The program includes invited and selected talks, poster sessions, comparative genomics and genetics, evolutionary and developmental mechanisms, and evolutionary neuroscience systems biology.

This EMBO Workshop integrates developmental biology, sensory neuroscience, central circuits, motor control, behavior, population genetics, genomics, and ecology to advance comparative insect neuroscience. Early-career researchers are prioritized for selected talks, and all accepted participants present their work.

Recordings

Rethinking behavior in the light of evolution

Paul Cisek · University of Montreal

Wed, Mar 13, 2024 · 11:00 America/New_York

In theoretical neuroscience, the brain is usually described as an information processing system that encodes and manipulates representations of knowledge to produce plans of action. This view leads to a decomposition of brain functions into putative processes such as object recognition, working memory, decision-making, action planning, etc., inspiring the search for the neural correlates of these processes. However, neurophysiological data do not support many of the predictions of these classic subdivisions. Instead, there is divergence and broad distribution of functions that should be unified, mixed representations combining functions that should be distinct, and a general incompatibility with the conceptual subdivisions posited by theories of information processing. In this talk, I will explore the possibility of resynthesizing a different set of functional subdivisions, guided by the growing body of data on the evolutionary process that produced the human brain. I will summarize, in chronological order, a proposed sequence of innovations that appeared in nervous systems along the lineage that leads from the earliest multicellular animals to humans. Along the way, functional subdivisions and elaborations will be introduced in parallel with the neural specializations that made them possible, gradually building up an alternative conceptual taxonomy of brain functions. These functions emphasize mechanisms for real-time interaction with the world, rather than for building explicit knowledge of the world, and the relevant representations emphasize pragmatic outcomes rather than decoding accuracy, mixing variables in the way seen in real neural data. I suggest that this alternative taxonomy may better delineate the real functional pieces into which the brain is organized, and can offer a more natural mapping between behavior and neural mechanisms. Presented in the van Vreeswijk Theoretical Neuroscience Seminar series (formerly WWTNS) on 2024-03-13. Recording duration: 00:52:50.

Theoretical Neuroscienceevolutionary neuroscience+8 moreSeries: van Vreeswijk Theoretical Neuroscience Seminar

Open deadlines

Deadline Tue, Oct 13, 2026

Develop an analytical and computational research project with Arne Traulsen’s Department of Theoretical Biology. Possible directions include population structure, evolutionary game theory, microbial populations, ecological stochasticity, complex life cycles and infectious-disease models. The project will be developed with the incoming researcher to reflect their interests and skills. The institute’s working language is English. This vacancy belongs to the September 2026 Max Planck Postdoc Program call, which accepts applications until 13 October 2026 at 12:00 CEST through the official application platform.

Recent changes

Wed, Oct 14, 2026 · 14:00 Asia/Tokyo

Gašper Tkačik explores whether the language of information in biology can become a predictive scientific theory. The lecture connects information transfer from DNA to proteins, positional signals that guide cell fate during development, neural information processing, and the storage and inheritance of information in evolving genomes. It brings physics, information theory and quantitative biology together to examine these processes across biological scales. Tkačik is Professor at the Institute of Science and Technology Austria. Shinya Kuroda provides commentary; Arisa Ema moderates. Online via Zoom Webinar. Wednesday 14 October 2026, 14:00–15:00 JST (Asia/Tokyo; UTC+9). Public advance registration is required through the organizer’s event page. The lecture is in English with Japanese interpretation. Organized by Tokyo College, The University of Tokyo Institutes for Advanced Study.

information theorybiological information+1 moreSeries: Tokyo College, The University of Tokyo Institutes for Advanced Study

Deadline Tue, Oct 13, 2026

Develop an analytical and computational research project with Arne Traulsen’s Department of Theoretical Biology. Possible directions include population structure, evolutionary game theory, microbial populations, ecological stochasticity, complex life cycles and infectious-disease models. The project will be developed with the incoming researcher to reflect their interests and skills. The institute’s working language is English. This vacancy belongs to the September 2026 Max Planck Postdoc Program call, which accepts applications until 13 October 2026 at 12:00 CEST through the official application platform.

We use essential cookies to run the site. Optional analytics and public-page session replay help us improve World Wide. Learn more.