Plant growth promoting microorganisms (PGPMs) of the plant root zone microbiome have received limited attention in hydroponic cultivation systems. In the framework of a project aimed at the development of a biological life support system for manned missions in space, we investigated the effects of PGPMs on four common food crops (durum and bread wheat, potato and soybean) cultivated in recirculating hydroponic systems for a whole life cycle. Each crop was inoculated with a commercial PGPM mixture and the composition of the microbial communities associated with their root rhizosphere, rhizoplane/endosphere and with the recirculating nutrient solution was characterised through 16S- and ITStargeted Illumina MiSeq sequencing. PGPM addition was shown to induce changes in the composition of these communities, though these changes varied both between crops and over time. Microbial communities of PGPM treated plants were shown to be more stable over time. Though additional development is required, this study highlights the potential benefits that PGPMs may confer to plants grown in hydroponic systems, particularly when cultivated in extreme environments such as space.

Microbial Community Dynamics and Response to Plant Growth-Promoting Microorganisms in the Rhizosphere of Four Common Food Crops Cultivated in Hydroponics / Sheridan, C.; Depuydt, P.; De Ro, M.; Petit, C.; Van Gysegem, E.; Delaere, P.; Dixon, M.; Stasiak, M.; Aciksöz, S. B.; Frossard, E.; Paradiso, Roberta; DE PASCALE, Stefania; Ventorino, Valeria; De Meyer, T.; Sas, B.; Geelen, D.. - In: MICROBIAL ECOLOGY. - ISSN 0095-3628. - 73:2(2017), pp. 378-393. [10.1007/s00248-016-0855-0]

Microbial Community Dynamics and Response to Plant Growth-Promoting Microorganisms in the Rhizosphere of Four Common Food Crops Cultivated in Hydroponics

PARADISO, ROBERTA;DE PASCALE, STEFANIA;VENTORINO, VALERIA;
2017

Abstract

Plant growth promoting microorganisms (PGPMs) of the plant root zone microbiome have received limited attention in hydroponic cultivation systems. In the framework of a project aimed at the development of a biological life support system for manned missions in space, we investigated the effects of PGPMs on four common food crops (durum and bread wheat, potato and soybean) cultivated in recirculating hydroponic systems for a whole life cycle. Each crop was inoculated with a commercial PGPM mixture and the composition of the microbial communities associated with their root rhizosphere, rhizoplane/endosphere and with the recirculating nutrient solution was characterised through 16S- and ITStargeted Illumina MiSeq sequencing. PGPM addition was shown to induce changes in the composition of these communities, though these changes varied both between crops and over time. Microbial communities of PGPM treated plants were shown to be more stable over time. Though additional development is required, this study highlights the potential benefits that PGPMs may confer to plants grown in hydroponic systems, particularly when cultivated in extreme environments such as space.
2017
Microbial Community Dynamics and Response to Plant Growth-Promoting Microorganisms in the Rhizosphere of Four Common Food Crops Cultivated in Hydroponics / Sheridan, C.; Depuydt, P.; De Ro, M.; Petit, C.; Van Gysegem, E.; Delaere, P.; Dixon, M.; Stasiak, M.; Aciksöz, S. B.; Frossard, E.; Paradiso, Roberta; DE PASCALE, Stefania; Ventorino, Valeria; De Meyer, T.; Sas, B.; Geelen, D.. - In: MICROBIAL ECOLOGY. - ISSN 0095-3628. - 73:2(2017), pp. 378-393. [10.1007/s00248-016-0855-0]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/670352
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