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Published online by Cambridge University Press: 03 November 2025
Our target article proposed that vertebrates, cephalopod mollusks, and euarthropods independently converged onto high levels of brain and cognitive complexity and that this macroevolutionary trend was coupled with and facilitated by the acquisition of a small set of pivotal traits, used in visuomotor control of three-dimensional and targeted movements. In response to commentaries that challenged our working premise and conclusions, we (1) use the concept of aggregate complexity to define brain and cognitive complexity and dispel misconceptions about anthropocentric bias, (2) call attention to the explanatory value and power of convergence as an important evolutionary concept, (3) highlight certain architectural and organizational features of the nervous system as scaffolds for the evolutionary expansion of behavioral and cognitive complexity, and (4) consider the phylogenetic distribution of phenomenal consciousness in relation to our findings. We also try to foster a greater appreciation for cognition as a process that involves whole animals as aggregate systems and that requires an extended repertoire of laws and principles to understand its evolution.
Target article
A multi-trait embodied framework for the evolution of brains and cognition across animal phyla
Related commentaries (20)
Beyond the sea squirt’s brain: cognition as inseparable from sensory-motor action
Challenging the central brain dogma: new experimental insights from the moon jellyfish (Aurelia spp.)
Cognition and valence as chicken and egg: Motivational force evolved alongside cognition
Cognition in motion: Functional internal models as an evolutionary scaffold in cognitive control
Complex brains allow functioning in a complex environment by using information
Complex cognition in context
Considering REM sleep-like stages among the traits defining cognitively complex lineages
Evolution of social “cognitive cell” adaptations in unicellular organisms with complex mating traits
From biological vision to artificial intelligence: The role of foundational predictive processing
Giving body to the multitrait framework
How to build a phylogenetic bridge to charismatic cognition
Neural evolution as the key to major transitions in cognitive evolution
On bodies, brains, and behaviour (and a little bit of magic)
On modes of learning in apex cognition
Pain and the evolutionary origins of subjective experience
SARA-C: A core mechanism underlying g in evolution and development
Social cognition: A crucial indicator of higher-order cognitive ability across the animal phyla
There is more diversity than unity within and between the three “cognitively complex lineages”
Tracing life-mind continuity in pivotal traits – world models and isomorphism
What’s “Complex” about complex cognition?
Author response
Multi-trait convergent trends in the evolution of brains and cognition