Multi - symbiotic systems functional implications of the coexistence of grass - endophyte and legume - rhizobia symbioses

The coexistence of symbionts with different functional roles in co-occurring plants is highly probable in terrestrial ecosystems. Analyses of how plants and microbes interact above- and belowground in multi-symbiotic systems are key to understand community structure and ecosystem functioning. We per...

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Otros Autores: García Parisi, Pablo Adrián, Lattanzi, Fernando Alfredo, Grimoldi, Agustín Alberto, Omacini, Marina
Formato: Artículo
Lenguaje:Español
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Acceso en línea:http://ri.agro.uba.ar/files/intranet/articulo/2015garciaparisi.pdf
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245 1 0 |a Multi - symbiotic systems  |b functional implications of the coexistence of grass - endophyte and legume - rhizobia symbioses 
520 |a The coexistence of symbionts with different functional roles in co-occurring plants is highly probable in terrestrial ecosystems. Analyses of how plants and microbes interact above- and belowground in multi-symbiotic systems are key to understand community structure and ecosystem functioning. We performed an outdoor experiment in mesocosms to investigate the consequences of the interaction of a provider belowground symbiont of legumes [nitrogen-fixing bacteria] and a protector aerial fungal symbiont of grasses [Epichloio{cyrillic} endophyte] on nitrogen dynamics and aboveground net primary productivity. Four plants of Trifolium repens [Trifolium, a perennial legume] either inoculated or not with Rhizobium leguminosarum, grew surrounded by 16 plants of Lolium multiflorum [Lolium, an annual grass], with either low or high levels of the endophyte Neotyphodium occultans. After five months, we quantified the number of nodules in Trifolium roots, shoot biomass of both plant species, and the contribution of atmospheric nitrogen fixation vs. soil nitrogen uptake to above ground nitrogen in each plant species. The endophyte increased grass biomass production [+ 16 percent], and nitrogen uptake from the soil - the main source for the grass. Further, it reduced the nodulation of neighbour Trifolium plants [-50 percent]. Notably, due to a compensatory increase in nitrogen fixation per nodule, this reduced neither its atmospheric nitrogen fixation - the main source of nitrogen for the legume - nor its biomass production, both of which were doubled by rhizobial inoculation. In consequence, the total amount of nitrogen in aboveground biomass and aboveground productivity were greatest in mesocosms with both symbionts [i.e. high rhizobia + high endophyte]. These results show that, in spite of the deleterious effect of the endophyte on the establishment of the rhizobia-legume symbiosis, the coexistence of these symbionts, leading to additive effects on nitrogen capture and aboveground productivity, can generate complementarity on the functioning of multi-symbiotic systems. 
650 |2 Agrovoc  |9 26 
653 0 |a TRIFOLIUM REPENS 
653 0 |a TRIFOLIUM 
653 0 |a SYMBIOSIS 
653 0 |a RHIZOBIUM LEGUMINOSARUM 
653 0 |a RHIZOBACTERIUM 
653 0 |a PRIMARY PRODUCTION 
653 0 |a POACEAE 
653 0 |a NODULATION 
653 0 |a NITROGEN FIXATION 
653 0 |a NEOTYPHODIUM OCCULTANS 
653 0 |a LOLIUM MULTIFLORUM 
653 0 |a LOLIUM 
653 0 |a INOCULATION 
653 0 |a GROWTH RESPONSE 
653 0 |a FUNGUS 
653 0 |a ENDOPHYTE 
653 0 |a DESMODIUM 
653 0 |a COEXISTENCE 
700 1 |9 31123  |a García Parisi, Pablo Adrián 
700 1 |a Lattanzi, Fernando Alfredo  |9 58248 
700 1 |9 7964  |a Grimoldi, Agustín Alberto 
700 1 |9 6464  |a Omacini, Marina 
773 |t Oikos  |g vol.124, no.5 (2015), p.553-560 
856 |u http://ri.agro.uba.ar/files/intranet/articulo/2015garciaparisi.pdf  |i En reservorio  |q application/pdf  |f 2015garciaparisi  |x MIGRADOS2018 
856 |u https://www.wiley.com/   |x MIGRADOS2018  |z LINK AL EDITOR 
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