As sessile organisms, land plants have exploited their metabolic systems to produce a panoply of structurally and functionally diverse natural chemicals and polymers to adapt to challenging ecosystems. Many of these core and specialized metabolites confer chemical shields against a multitude of abiotic stresses, while others play important roles in plants' interactions with their biotic environments. Plant specialized metabolites can be viewed as complex traits in the sense that the biosynthesis of these molecules typically requires multistep metabolic pathways comprising numerous specific enzymes belonging to diverse protein fold families. Resolving the evolutionary trajectories underlying the emergence of these specialized metabolic pathw...
Background: A metabolism can evolve through changes in its biochemical reactions that are caused by ...
Background Comparison of metabolic networks across species is a key to understanding how evolutionar...
Background: The metabolic architectures of extant organisms share many key pathways such as the citr...
As sessile organisms, plants evolved elaborate metabolic systems that produce a plethora of speciali...
A central challenge in evolutionary biology concerns the mechanisms by which complex metabolic innov...
Abstract The emergence and evolution of metabolic pathways represented a crucial step in m...
Living organisms throughout evolution have developed desired properties, such as the ability of main...
The existence of traits of impressive complexity has always puzzled evolutionary biologists. Traits ...
AbstractArtificial Life models may shed new light on the long-standing challenge for evolutionary bi...
Although natural selection does not guarantee that organisms will increase in complexity as they evo...
Covering: up to 2022 Plants produce a wide range of structurally and biosynthetically diverse natura...
This electronic version was submitted by the student author. The certified thesis is available in th...
Part I: A remarkable feature of life on Earth is that despite the apparent observed diversity, the ...
Background Cellular life with complex metabolism probably evolved during the reign of RNA, when i...
Plants produce a huge array of metabolites in spatiotemporal- and/or environment-dependent manner, w...
Background: A metabolism can evolve through changes in its biochemical reactions that are caused by ...
Background Comparison of metabolic networks across species is a key to understanding how evolutionar...
Background: The metabolic architectures of extant organisms share many key pathways such as the citr...
As sessile organisms, plants evolved elaborate metabolic systems that produce a plethora of speciali...
A central challenge in evolutionary biology concerns the mechanisms by which complex metabolic innov...
Abstract The emergence and evolution of metabolic pathways represented a crucial step in m...
Living organisms throughout evolution have developed desired properties, such as the ability of main...
The existence of traits of impressive complexity has always puzzled evolutionary biologists. Traits ...
AbstractArtificial Life models may shed new light on the long-standing challenge for evolutionary bi...
Although natural selection does not guarantee that organisms will increase in complexity as they evo...
Covering: up to 2022 Plants produce a wide range of structurally and biosynthetically diverse natura...
This electronic version was submitted by the student author. The certified thesis is available in th...
Part I: A remarkable feature of life on Earth is that despite the apparent observed diversity, the ...
Background Cellular life with complex metabolism probably evolved during the reign of RNA, when i...
Plants produce a huge array of metabolites in spatiotemporal- and/or environment-dependent manner, w...
Background: A metabolism can evolve through changes in its biochemical reactions that are caused by ...
Background Comparison of metabolic networks across species is a key to understanding how evolutionar...
Background: The metabolic architectures of extant organisms share many key pathways such as the citr...