Drought affects grapevine production worldwide. To protect grapevine from water stress, an eco-friendly approach was adopted, establishing a large microbial collection from root tissues and rhizosphere of different rootstocks from the vineyards of Le Fracce Farm in Oltrepo Pavese, an area in north Italy that experiences summer drought. Nine strains, endowed with multiple plant growth promoting activities, were assayed under greenhouse conditions on plants grown in the clay-rich soil of the vineyard of origin. Bacteria treated plantlets of SO4 and 420A rootstocks were exposed to water stress (50% of the field water capacity) for over 30 days. Water stress affected uninoculated control plants that presented alterations of physiological parameters, while grapevine plants treated with bacteria appeared healthier with 10-20% higher photosynthetic levels. Plant biomass after 30 days of growth under water stress was 20-40% higher in treated plants than the untreated controls. The data highlight the biotechnological potential of PGP bacteria for protecting grapevine from drought.

The plant growth promoting microbiome increases grapevine resistance to drought stress : a collaborative study between Fondazione Bussolera Branca, Le Fracce farm and Milan Universities / E. Rolli, R. Marasco, G. Vigani, B. Ettoumi, M.L. Deangelis, E. Casati, F. Previtali, S. Borin, C. Gandolfi, G. Zocchi, R. Gerbino, F. Pierotti Cei, D. Daffonchio. - In: BULLETIN DE L'OIV. - ISSN 0029-7127. - 85:974/975/976(2012), pp. 188-199.

The plant growth promoting microbiome increases grapevine resistance to drought stress : a collaborative study between Fondazione Bussolera Branca, Le Fracce farm and Milan Universities

E. Rolli
Primo
;
R. Marasco
Secondo
;
G. Vigani;B. Ettoumi;M.L. Deangelis;S. Borin;C. Gandolfi;G. Zocchi;D. Daffonchio
Ultimo
2012

Abstract

Drought affects grapevine production worldwide. To protect grapevine from water stress, an eco-friendly approach was adopted, establishing a large microbial collection from root tissues and rhizosphere of different rootstocks from the vineyards of Le Fracce Farm in Oltrepo Pavese, an area in north Italy that experiences summer drought. Nine strains, endowed with multiple plant growth promoting activities, were assayed under greenhouse conditions on plants grown in the clay-rich soil of the vineyard of origin. Bacteria treated plantlets of SO4 and 420A rootstocks were exposed to water stress (50% of the field water capacity) for over 30 days. Water stress affected uninoculated control plants that presented alterations of physiological parameters, while grapevine plants treated with bacteria appeared healthier with 10-20% higher photosynthetic levels. Plant biomass after 30 days of growth under water stress was 20-40% higher in treated plants than the untreated controls. The data highlight the biotechnological potential of PGP bacteria for protecting grapevine from drought.
No
English
grapevine; drought; water stress; plant growth promoting bacteria; Olrepo' pavese
Settore AGR/16 - Microbiologia Agraria
Settore AGR/08 - Idraulica Agraria e Sistemazioni Idraulico-Forestali
Settore AGR/13 - Chimica Agraria
Articolo
Esperti anonimi
Pubblicazione scientifica
2012
Office International de la Vigne et du vin
85
974/975/976
188
199
12
Pubblicato
Periodico con rilevanza internazionale
Aderisco
info:eu-repo/semantics/article
The plant growth promoting microbiome increases grapevine resistance to drought stress : a collaborative study between Fondazione Bussolera Branca, Le Fracce farm and Milan Universities / E. Rolli, R. Marasco, G. Vigani, B. Ettoumi, M.L. Deangelis, E. Casati, F. Previtali, S. Borin, C. Gandolfi, G. Zocchi, R. Gerbino, F. Pierotti Cei, D. Daffonchio. - In: BULLETIN DE L'OIV. - ISSN 0029-7127. - 85:974/975/976(2012), pp. 188-199.
none
Prodotti della ricerca::01 - Articolo su periodico
13
262
Article (author)
no
E. Rolli, R. Marasco, G. Vigani, B. Ettoumi, M.L. Deangelis, E. Casati, F. Previtali, S. Borin, C. Gandolfi, G. Zocchi, R. Gerbino, F. Pierotti Cei, D. Daffonchio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/224577
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