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

Extracellular Glycolytic Activities in Root Endophytic Serendipitaceae and Their Regulation by Plant Sugars

View through CrossRef
Endophytic fungi that colonize the plant root live in an environment with relative high concentrations of different sugars. Analyses of genome sequences indicate that such endophytes can secrete carbohydrate-related enzymes to compete for these sugars with the surrounding plant cells. We hypothesized that typical plant sugars can be used as carbon source by root endophytes and that these sugars also serve as signals to induce the expression and secretion of glycolytic enzymes. The plant-growth-promoting endophytes Serendipita indica and Serendipita herbamans were selected to first determine which sugars promote their growth and biomass formation. Secondly, particular sugars were added to liquid cultures of the fungi to induce intracellular and extracellular enzymatic activities which were measured in mycelia and culture supernatants. The results showed that both fungi cannot feed on melibiose and lactose, but instead use glucose, fructose, sucrose, mannose, arabinose, galactose and xylose as carbohydrate sources. These sugars regulated the cytoplasmic activity of glycolytic enzymes and also their secretion. The levels of induction or repression depended on the type of sugars added to the cultures and differed between the two fungi. Since no conventional signal peptide could be detected in most of the genome sequences encoding the glycolytic enzymes, a non-conventional protein secretory pathway is assumed. The results of the study suggest that root endophytic fungi translocate glycolytic activities into the root, and this process is regulated by the availability of particular plant sugars.
Title: Extracellular Glycolytic Activities in Root Endophytic Serendipitaceae and Their Regulation by Plant Sugars
Description:
Endophytic fungi that colonize the plant root live in an environment with relative high concentrations of different sugars.
Analyses of genome sequences indicate that such endophytes can secrete carbohydrate-related enzymes to compete for these sugars with the surrounding plant cells.
We hypothesized that typical plant sugars can be used as carbon source by root endophytes and that these sugars also serve as signals to induce the expression and secretion of glycolytic enzymes.
The plant-growth-promoting endophytes Serendipita indica and Serendipita herbamans were selected to first determine which sugars promote their growth and biomass formation.
Secondly, particular sugars were added to liquid cultures of the fungi to induce intracellular and extracellular enzymatic activities which were measured in mycelia and culture supernatants.
The results showed that both fungi cannot feed on melibiose and lactose, but instead use glucose, fructose, sucrose, mannose, arabinose, galactose and xylose as carbohydrate sources.
These sugars regulated the cytoplasmic activity of glycolytic enzymes and also their secretion.
The levels of induction or repression depended on the type of sugars added to the cultures and differed between the two fungi.
Since no conventional signal peptide could be detected in most of the genome sequences encoding the glycolytic enzymes, a non-conventional protein secretory pathway is assumed.
The results of the study suggest that root endophytic fungi translocate glycolytic activities into the root, and this process is regulated by the availability of particular plant sugars.

Related Results

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...
Bacterial endophytes in agricultural crops
Bacterial endophytes in agricultural crops
Endophytic bacteria are ubiquitous in most plant species, residing latently or actively colonizing plant tissues locally as well as systemically. Several definitions have been prop...
L-Asparaginase More Effectively Targets Leukemic Cells with Low Glycolytic Activity
L-Asparaginase More Effectively Targets Leukemic Cells with Low Glycolytic Activity
Abstract Since O. Warburg first proposed aerobic glycolysis to be the main bioenergetic pathway activated in cancer cells, there has been near silence on the differe...
Identification of Endophytic Fungi of Balangeran (Shorea balangeran Korth.) by Morphological Characterization
Identification of Endophytic Fungi of Balangeran (Shorea balangeran Korth.) by Morphological Characterization
Endophytic fungi are the potential biological agent that could stimulate plant growth and inhibit plant disease. The existence of diverse and abundant endophytic fungi encourages c...
A New Method for Calculating Sugars Content and Determining Appropriate Sugars Levels in Foods
A New Method for Calculating Sugars Content and Determining Appropriate Sugars Levels in Foods
Calculating the sugars content per 100 g or 100 mL or the reference amount customarily consumed (RACC) of food shows the sugars content of some foods inappropriately. So, making so...
Effects of Organic Acids content in Roots and Root Exudates of Hordeum bogdanii by Endophytic Fungi
Effects of Organic Acids content in Roots and Root Exudates of Hordeum bogdanii by Endophytic Fungi
Abstract Organic acid is one of the important components in plant roots and root exudates, which plays an important role in nutrient activation, changing soil microbial act...

Back to Top