terclim by ICS banner
IVES 9 IVES Conference Series 9 International Congress on Grapevine and Wine Sciences 9 2ICGWS-2023 9 Selecting green cover species in the under-trellis zone of Lower Austrian vineyards

Selecting green cover species in the under-trellis zone of Lower Austrian vineyards

Abstract

The under-trellis zone of vineyards is a sensitive area through which vines cover a significant portion of their nutrient and water needs. Mechanical and chemical methods are applied to suppress competing and tall-growing weeds to ensure optimal vine growth conditions. In addition to higher operating costs and depending on the soil conditions, these practices might lead to a long-term reduction in soil fertility and biodiversity. The presented study aims to analyse the suitability and interspecies competition of a selected green cover mixture of five local herbaceous species as potential green cover mixture in the under-trellis area of Lower Austrian vineyards. A combined mixture of five herbs (Arenaria serpyllifolia, Thymus serpyllum, Potentilla argentea, Sedum acre, Sedum album) were planted (0,0625 m2 per plant) in the under-trellis area of two Lower Austrian vineyards in Rohrendorf (loess) and Zöbing (loess-sand). The research design involved a split-plot design with four plots, each plot with five vines. After 110 days plant performance and ground coverage were assessed on cover plant basis. The overall results showed promising growth rates of four out of five green cover species within the first year. The growth rates of T. serpyllum, P. argentea, S. acre, S. album ranged between 10,42-23,44% on both sites. A. serpyllifolia showed with 0,00-1,56% a reduced growth rate. Comparing the two sites, plant performance was higher in Rohrendorf with dominating loess, compared to Zöbing with increased sand content, potentially due to increased water and nutrient availability. Similarly, the results of the ground coverage showed differences with coverage rates of 12,15% in Rohrendorf and 3,68% in the Zöbing vineyards. In summary the study suggests a suitable site adaption of four analyzed green cover species in the first season. Further long-term experiments involving seeding techniques, grapevine interaction, soil analyses and additional green cover species are recommended.

DOI:

Publication date: October 9, 2023

Issue: ICGWS 2023

Type: Poster

Authors

Markus Eitle1*, Marlene Milan2, Sabine Plenk3

1 IMC University of Applied Sciences Krems, Department of Business, Institute of Tourism, Wine Business and Marketing, Krems, Austria
2 Research Institute of Organic Agriculture Germany FiBL, Department Sustainable Farming Systems, Frankfurt am Main, Germany
3 University of Natural Resources and Life Sciences, Department of Landscape, Spatial and Infrastructure Sciences, Institute of Landscape Architecture, Vienna, Austria

Contact the author*

Keywords

green cover, under-trellis, sustainable vineyard management, Austrian viticulture, biodiversity, Vitis vinifera

Tags

2ICGWS | ICGWS | ICGWS 2023 | IVES Conference Series

Citation

Related articles…

Predicting provenance and grapevine cultivar implementing machine learning on vineyard soil microbiome data: implications in grapevine breeding

The plant rhizosphere microbial communities are an essential component of plant microbiota, which is crucial for sustaining the production of healthy crops. The main drivers of the composition of such communities are the growing environment and the planted genotype. Recent viticulture studies focus on understanding the effects of these factors on soil microbial composition since microbial biodiversity is an important determinant of plant phenotype, and of wine’s organoleptic properties. Microbial biodiversity of different wine regions, for instance, is an important determinant of wine terroir.

Preliminary study of extraction of polysaccharides from pomace by high powered ultrasonic combined with enzymes

Red grape pomace can be an important source of polysaccharides, but currently they are little studied and even less with viable and environmental extraction processes (green extraction). These green techniques must be able to break the cell wall so that the compounds contained in the cells, including polysaccharides, are released and can have a great influence on extraction yields, the chemical structure of polysaccharides and applications in wines. Amongst the emerging green techniques most applied to the extraction of bioactive compounds, such as polysaccharides, high-power ultrasound (US) and enzyme-assisted extraction stand out.

Rootstock effect on Cabernet Sauvignon aromatic and chemical composition

Grape quality potential for wine production is strongly influenced by environmental parameters and agronomic factors. Several studies underline the rootstock effect on scions vegetative growth and berry composition [1] with an impact on wine quality. Rootstocks are promising agronomic tools for climate change adaptation and in most grape-growing regions the potential diversity of rootstocks is not fully used and only a few genotypes are planted. Moreover, little is known about the effect of rootstock genetic variability on the aromatic composition in wines.

Lipids at the crossroads of protection: lipid signalling in grapevine defence mechanisms

Understanding grapevine molecular processes and the underlying defence responses is vital for developing sustainable disease control strategies. Lipid signalling pathways, involving the synthesis and degradation of lipid molecules, have emerged as a key regulator in plant defence against pathogens. This study aims to elucidate the role of fatty acids and lipid signalling in grapevine’s defence response to P. viticola infection. The expression of lipid metabolism-related as well as lipid signalling genes was analysed, by qPCR, in three grapevine genotypes: Chardonnay (susceptible), Regent (tolerant) with Rpv3-1 resistance loci, and Sauvignac (resistant) harbouring a pyramid of Rpv12 and Rpv3-1 resistance loci.

Effect of ultraviolet B radiation on pathogenic molds of grapes

The fungicidal effect of UV-C radiation (100-280 nm wavelength) is well known, but its applicability for the control of pathogenic molds of grapes is conditioned by its effect on the host and by the risks inherent in its handling[1].
As an alternative, the effect in vitro of UV-B radiation (280-315 nm) on the main pathogenic molds of grapes has been studied: Botrytis cinerea, Aspergillus niger, Penicillium expansum and Rhizopus stolonifer.