C4 photosynthesis is a complex trait that boosts productivity in warm environments. Paradoxically, it evolved independently in numerous plant lineages, despite requiring specialised leaf anatomy. The anatomical modifications underlying C4 evolution have previously been evaluated through interspecific comparisons, which capture numerous changes besides those needed for C4 functionality. Here, we quantify the anatomical changes accompanying the transition between non-C4 and C4 phenotypes by sampling widely across the continuum of leaf anatomical traits in the grass Alloteropsis semialata. Within this species, the only trait that is shared among and specific to C4 individuals is an increase in vein density, driven specifically by minor vein de...
The evolutionary accessibility of novel adaptations varies among lineages, depending in part on the ...
Maintaining global food security amidst climate change requires improved photosynthetic efficiency i...
Background Numerous groups of plants have adapted to CO2 limitations by independently evolving C4 ph...
C4 photosynthesis is a complex trait that boosts productivity in warm environments. Paradoxically, i...
C4 photosynthesis boosts productivity in warm environments. Paradoxically, this complex physiologica...
C4 photosynthesis is a complex trait resulting from a series of anatomical and biochemical modificat...
Most terrestrial plants use C3 photosynthesis to fix carbon. In multiple plant lineages a modified s...
The origins of novel traits are often studied using species trees and modeling phenotypes as differe...
C4 photosynthesis is a complex trait that boosts productivity in tropical conditions. Compared to C3...
C4 photosynthesis is a complex trait that boosts productivity in tropical conditions. Compared to C3...
C4 photosynthesis is a series of anatomical and biochemical modifications to the typical C3 pathway ...
C4 photosynthesis is a complex physiological adaptation that confers greater productivity than the a...
C4 photosynthesis is a complex set of leaf anatomical and biochemical adaptations that have evolved ...
Dunning LT, Moreno-Villena JJ, Lundgren MR, et al. Key changes in gene expression identified for dif...
SummaryC4 photosynthesis is a complex trait that confers higher productivity under warm and arid con...
The evolutionary accessibility of novel adaptations varies among lineages, depending in part on the ...
Maintaining global food security amidst climate change requires improved photosynthetic efficiency i...
Background Numerous groups of plants have adapted to CO2 limitations by independently evolving C4 ph...
C4 photosynthesis is a complex trait that boosts productivity in warm environments. Paradoxically, i...
C4 photosynthesis boosts productivity in warm environments. Paradoxically, this complex physiologica...
C4 photosynthesis is a complex trait resulting from a series of anatomical and biochemical modificat...
Most terrestrial plants use C3 photosynthesis to fix carbon. In multiple plant lineages a modified s...
The origins of novel traits are often studied using species trees and modeling phenotypes as differe...
C4 photosynthesis is a complex trait that boosts productivity in tropical conditions. Compared to C3...
C4 photosynthesis is a complex trait that boosts productivity in tropical conditions. Compared to C3...
C4 photosynthesis is a series of anatomical and biochemical modifications to the typical C3 pathway ...
C4 photosynthesis is a complex physiological adaptation that confers greater productivity than the a...
C4 photosynthesis is a complex set of leaf anatomical and biochemical adaptations that have evolved ...
Dunning LT, Moreno-Villena JJ, Lundgren MR, et al. Key changes in gene expression identified for dif...
SummaryC4 photosynthesis is a complex trait that confers higher productivity under warm and arid con...
The evolutionary accessibility of novel adaptations varies among lineages, depending in part on the ...
Maintaining global food security amidst climate change requires improved photosynthetic efficiency i...
Background Numerous groups of plants have adapted to CO2 limitations by independently evolving C4 ph...