Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Vein Patterning by Tissue-Specific Auxin Transport

View through CrossRef
Abstract Unlike in animals, in plants vein patterning does not rely on direct cell-cell interaction and cell migration; instead, it depends on the transport of the plant signal auxin, which in turn depends on the activity of the PIN-FORMED1 (PIN1) auxin transporter. The current hypotheses of vein patterning by auxin transport propose that in the epidermis of the developing leaf PIN1-mediated auxin transport converges to peaks of auxin level. From those convergence points of epidermal PIN1 polarity, auxin would be transported in the inner tissues where it would give rise to major veins. Here we tested predictions of this hypothesis and found them unsupported: epidermal PIN1 expression is neither required nor sufficient for auxin-transport-dependent vein patterning, whereas inner-tissue PIN1 expression turns out to be both required and sufficient for auxin-transport-dependent vein patterning. Our results refute all vein patterning hypotheses based on auxin transport from the epidermis and suggest alternatives for future tests.
Title: Vein Patterning by Tissue-Specific Auxin Transport
Description:
Abstract Unlike in animals, in plants vein patterning does not rely on direct cell-cell interaction and cell migration; instead, it depends on the transport of the plant signal auxin, which in turn depends on the activity of the PIN-FORMED1 (PIN1) auxin transporter.
The current hypotheses of vein patterning by auxin transport propose that in the epidermis of the developing leaf PIN1-mediated auxin transport converges to peaks of auxin level.
From those convergence points of epidermal PIN1 polarity, auxin would be transported in the inner tissues where it would give rise to major veins.
Here we tested predictions of this hypothesis and found them unsupported: epidermal PIN1 expression is neither required nor sufficient for auxin-transport-dependent vein patterning, whereas inner-tissue PIN1 expression turns out to be both required and sufficient for auxin-transport-dependent vein patterning.
Our results refute all vein patterning hypotheses based on auxin transport from the epidermis and suggest alternatives for future tests.

Related Results

Auxin Information Processing; Partners and Interactions beyond the Usual Suspects
Auxin Information Processing; Partners and Interactions beyond the Usual Suspects
Auxin plays a major role in a variety of processes involved in plant developmental patterning and its adaptation to environmental conditions. Therefore, an important question is ho...
Role of GOBLET and Auxin in Controlling Organ Development and Patterning
Role of GOBLET and Auxin in Controlling Organ Development and Patterning
The size and shape of plant leaves are extremely diverse within and among species, and are also sensitive to growth conditions. Compound leaves, such as those of tomato, maintain m...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
Reverse engineering lateral root stable prebranch site formation; Complementary roles for auxin and auxin signalling
Reverse engineering lateral root stable prebranch site formation; Complementary roles for auxin and auxin signalling
Abstract Priming is the process through which periodic elevations in auxin signalling prepattern future sites for lateral root formation, called prebranch sites. Th...
Cytokinin Inhibits a Subset of Diageotropica-Dependent Primary Auxin Responses in Tomato
Cytokinin Inhibits a Subset of Diageotropica-Dependent Primary Auxin Responses in Tomato
Abstract Many aspects of plant development are regulated by antagonistic interactions between the plant hormones auxin and cytokinin, but the molecular mechanisms of...
Genetic and hormonal control of maize inflorescence and root development
Genetic and hormonal control of maize inflorescence and root development
Crop species such as maize, rice, and wheat are the major sources of global food and, therefore, crucial to human society and civilization. In the United States, maize is the most ...
Emerging roles of auxin in plant abiotic stress tolerance
Emerging roles of auxin in plant abiotic stress tolerance
Abstract Plants are continuously attacked by several biotic and abiotic factors. Among abiotic factors, heat, cold, drought, and salinity are common stresses. Pla...

Back to Top