Since the discovery of miRNAs in plants it has become clear that they are central to the regulation of many aspects of plant development and responses to the environment. miR172 regulates expression of a small group of AP2-like transcription factors in an evolutionarily ancient interaction. miR172 functions in regulating the transitions between developmental stages and in specifying floral organ identity. These two roles are conserved across monocotyledons and dicotyledons. Investigations into the roles of miR172 and its targets in phase changes in the model plant Arabidopsis have illustrated that this process is governed by complex regulatory systems. In addition to its conserved roles, miR172 has also acquired specialized species-specific...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
The ABC model of flower development explains how three classes of homeotic genes confer identity to ...
The story of the network of genes that controls fruit patterning in Arabidopsis is still unfolding, ...
Since the discovery of miRNAs in plants it has become clear that they are central to the regulation ...
In plants, conserved microRNAs (miRNAs) tend to be encoded by gene families with multiple members. T...
MicroRNAs (miRNAs) play important roles in regulating flowering and reproduction of angiosperms. Mat...
Evolutionarily conserved microRNAs (miRNAs) usually have high copy numbers in the genome. The redund...
The onset of flowering in plants is regulated by complex gene networks that integrate multiple envir...
Abstract Background The transitions from juvenile to adult and adult to reproductive phases of growt...
Termination of the stem cells in the floral meristem (also known as floral determinacy) is critical ...
Flowering is the primary trait affected by ambient\ud temperature changes. Plant microRNAs\ud (miRNA...
Termination of the stem cells in the floral meristem (also known as floral determinacy) is critical ...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
The development of multicellular organisms relies on interconnected genetic programs that control pr...
AbstractMicroRNAs (miRNAs) are post-transcriptional regulators of growth and development in both pla...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
The ABC model of flower development explains how three classes of homeotic genes confer identity to ...
The story of the network of genes that controls fruit patterning in Arabidopsis is still unfolding, ...
Since the discovery of miRNAs in plants it has become clear that they are central to the regulation ...
In plants, conserved microRNAs (miRNAs) tend to be encoded by gene families with multiple members. T...
MicroRNAs (miRNAs) play important roles in regulating flowering and reproduction of angiosperms. Mat...
Evolutionarily conserved microRNAs (miRNAs) usually have high copy numbers in the genome. The redund...
The onset of flowering in plants is regulated by complex gene networks that integrate multiple envir...
Abstract Background The transitions from juvenile to adult and adult to reproductive phases of growt...
Termination of the stem cells in the floral meristem (also known as floral determinacy) is critical ...
Flowering is the primary trait affected by ambient\ud temperature changes. Plant microRNAs\ud (miRNA...
Termination of the stem cells in the floral meristem (also known as floral determinacy) is critical ...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
The development of multicellular organisms relies on interconnected genetic programs that control pr...
AbstractMicroRNAs (miRNAs) are post-transcriptional regulators of growth and development in both pla...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
The ABC model of flower development explains how three classes of homeotic genes confer identity to ...
The story of the network of genes that controls fruit patterning in Arabidopsis is still unfolding, ...