In this three year field study the impact of different potato (Solanum tuberosum L.) cultivars including a genetically modified (GM) amylopectin-accumulating potato line on rhizosphere fungal communities are investigated using molecular microbiological methods. The effects of growth stage of a plant, soil type and year on the rhizosphere fungi were included in this study. To compare the effects, one GM cultivar, the parental isoline, and four non-related cultivars were planted in the fields and analysed using T-RFLP on the basis of fungal phylum specific primers combined with multivariate statistical methods. Additionally, fungal biomass and some extracellular fungal enzymes (laccases, Mn-peroxidases and cellulases) were quantified in order...
DNA modification techniques are increasingly applied to improve the agronomic performance of crops w...
Bacterial communities in the rhizosphere are dynamic and susceptible to changes in plant conditions....
In the present Ph.D. thesis, a genetically modified amylopectin-accumulating potato line (Solanum tu...
This thesis investigates the effects of genetic modification of the starch quality in potato on the ...
In this study, the potential effects of a genetically modified (GM) amylopectin-accumulating potato ...
The effects of genetically modified (GM), zeaxanthin-accumulating potato plants on microbial communi...
The environmental risk assessment of GM plants is a fast moving area of science. Much research has f...
In this study, the impacts of six potato (Solanum tuberosum) cultivars with different tuber starch a...
Soil fungal communities perform important ecological roles determining, at least in part, agricultur...
In this study, the impacts of six potato (Solanum tuberosum) cultivars with different tuber starch a...
The soil fungal community plays an important role in determining plant growth and health. In this st...
The use of genetically modified (GM) plants in agriculture has been a topic in public debate for ove...
The effects of genotype, plant growth and experimental factors (soil and year) on potato-associated ...
DNA modification techniques are increasingly applied to improve the agronomic performance of crops w...
Bacterial communities in the rhizosphere are dynamic and susceptible to changes in plant conditions....
In the present Ph.D. thesis, a genetically modified amylopectin-accumulating potato line (Solanum tu...
This thesis investigates the effects of genetic modification of the starch quality in potato on the ...
In this study, the potential effects of a genetically modified (GM) amylopectin-accumulating potato ...
The effects of genetically modified (GM), zeaxanthin-accumulating potato plants on microbial communi...
The environmental risk assessment of GM plants is a fast moving area of science. Much research has f...
In this study, the impacts of six potato (Solanum tuberosum) cultivars with different tuber starch a...
Soil fungal communities perform important ecological roles determining, at least in part, agricultur...
In this study, the impacts of six potato (Solanum tuberosum) cultivars with different tuber starch a...
The soil fungal community plays an important role in determining plant growth and health. In this st...
The use of genetically modified (GM) plants in agriculture has been a topic in public debate for ove...
The effects of genotype, plant growth and experimental factors (soil and year) on potato-associated ...
DNA modification techniques are increasingly applied to improve the agronomic performance of crops w...
Bacterial communities in the rhizosphere are dynamic and susceptible to changes in plant conditions....
In the present Ph.D. thesis, a genetically modified amylopectin-accumulating potato line (Solanum tu...