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Leva, Y.

Publications and source records attributed to Leva, Y..

2 recordsLinked to original sources

Quantification of anatomical changes in young grapevine wood over time and in response to Neofusicoccum parvum with image processing

Grapevine Trunk diseases (GTDs) represent a major threat for the wine industry. Despite several break-through, their etiology remains unclear and no curative treatment is currently available. Wood anatomy and water transport contribute to the symptoms of young plant decline. This study investigates wood anatomical alterations in two Alsatian grapevine cultivars presenting different susceptibility to GTDs, focusing on wood structure over six months of vegetative growth and in response to infection. Using a validated FasGa staining protocol, wood sections from transverse, tangential, and radial directions were stained to differentiate lignified and cellulosic tissues. Microscopic analysis was performed at x4, x10, and x40 magnifications, yielding a dataset of 4771 images. To support this high-throughput quantitative analysis of microscopy images, a computational model was developed, enabling reliable and efficient assessment of anatomical traits. Pre-established woody tissues presented higher xylem vessels diameter in Gewurztraminer than Riesling, with a dorsoventral arrangement whereas the number of vessels remained the same all over the cross section. No significant anatomical changes were observed in established woody tissues, whereas newly formed xylem anatomy showed a possible rearrangement during infection, especially in Gewurztraminer cultivar. Furthermore, colorimetric analysis quantified the lignification of woody tissues in response to wounding damage compared to un-treated plants. While definitive conclusions remain limited due to the experimental timeframe and sample variability, the findings highlight the need for longer-term studies and broader cultivar evaluation. Code and microscopy images have been made publicly available, providing a scalable digital tool for future research in plant vascular systems.

plant biology↗

Symbiosis with Rhizophagus irregularis improves grapevine rootstock performances under water deficit conditions

Grapevine represents a major crop with crucial socio-economic importance, however, its culture is threatened by climate change, especially drought. Indeed, water deficit has a negative impact on grapevine growth and yield but also impacts fruit and wine quality. To improve grapevine resilience to drought, developing strategies such as symbiosis with Arbuscular Mycorrhizal Fungi could be a promising. We focused on the benefit of using Rhizophagus irregularis DAOM 197198 for improving performances in controlled conditions of two highly used rootstocks (41B and SO4) under moderate to severe water deficit. At a field capacity of 14-40%, SO4 was more affected compared to 41B. Successful functional symbiosis was obtained for the two rootstocks, both in well-watered and water deficit conditions. Interestingly, colonization with R. irregularis improved growth and photosynthetic parameters in both 41B and SO4, especially under water stress, restoring them to the levels on non-stressed plants. Further analysis of mineral nutrition and aquaporin expression revealed contrasting responses between the two rootstocks. Whereas mycorrhization strongly enhanced phosphorus contents in both 41B and SO4 roots and leaves, the overall beneficial effects of the symbiosis on mineral nutrition were more pronounced in SO4. In contrast, the expression of VvPIP2.1, a highly water-permeable aquaporin involved in root hydraulic conductivity was increased in mycorrhized roots of 41B but repressed in SO4. This study emphasizes that interaction between AMF and grapevine induce contrasting effects on plant nutrition depending on the rootstock genotype, and that mycorrhizal inoculation could be of interest in the case of drought sensitive rootstocks.

plant biology↗