The evolution of plants on land has produced a great diversity of organs, tissues, and cell types. Many of the genes identified as having a role in the development of such structures in flowering plants are conserved across all land plants, including in clades that diverged before the evolution of the structure in question. This suggests that novel organs commonly evolve via the cooption of existing developmental gene regulatory networks (GRNs). Although numerous examples of such cooptions have been identified, little is known about why those specific GRNs have been coopted. In this review, we discuss the properties of GRNs that may favor their cooption, as well as the mechanisms by which this can occur, in the context of plant developmenta...
Plant development gives rise to a staggering complexity of morphological structures with different s...
Genes and proteins form complex dynamical sys-tems or gene regulatory networks (GRN) that can reach ...
Small, non-coding RNAs (sRNAs) are a distinct class of regulatory RNAs in plants and animals control...
The evolution of plants on land has produced a great diversity of organs, tissues, and cell types.Ma...
The expansion of gene families for miRNA and tasiRNA, small RNA effector proteins (ARGONAUTEs or AGO...
Plants are exposed to diverse abiotic and biotic stimuli. These require fast and specific integrated...
Development of multi-cellular organisms depends on the correct spatial and temporal expression of nu...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
The availability of genome sequences, genome-wide assays of transcription factor binding, and access...
Plant microRNAs (miRNAs) are embedded in regulatory networks that coordinate different gene expressi...
International audienceWe provide an overview of methods and workflows that can be used to investigat...
© 2018 Yang, Wang, Teotia, Zhang and Tang. Leaf development is a sequential process that involves in...
AbstractMicroRNAs (miRNAs) are post-transcriptional regulators of growth and development in both pla...
The evolution of multicellular organisms was made possible by the evolution of underlying gene regul...
Plant development gives rise to a staggering complexity of morphological structures with different s...
Genes and proteins form complex dynamical sys-tems or gene regulatory networks (GRN) that can reach ...
Small, non-coding RNAs (sRNAs) are a distinct class of regulatory RNAs in plants and animals control...
The evolution of plants on land has produced a great diversity of organs, tissues, and cell types.Ma...
The expansion of gene families for miRNA and tasiRNA, small RNA effector proteins (ARGONAUTEs or AGO...
Plants are exposed to diverse abiotic and biotic stimuli. These require fast and specific integrated...
Development of multi-cellular organisms depends on the correct spatial and temporal expression of nu...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
The availability of genome sequences, genome-wide assays of transcription factor binding, and access...
Plant microRNAs (miRNAs) are embedded in regulatory networks that coordinate different gene expressi...
International audienceWe provide an overview of methods and workflows that can be used to investigat...
© 2018 Yang, Wang, Teotia, Zhang and Tang. Leaf development is a sequential process that involves in...
AbstractMicroRNAs (miRNAs) are post-transcriptional regulators of growth and development in both pla...
The evolution of multicellular organisms was made possible by the evolution of underlying gene regul...
Plant development gives rise to a staggering complexity of morphological structures with different s...
Genes and proteins form complex dynamical sys-tems or gene regulatory networks (GRN) that can reach ...
Small, non-coding RNAs (sRNAs) are a distinct class of regulatory RNAs in plants and animals control...