Ainfo Consulta

Catálogo de Información Agropecuaria

Bibliotecas INIA

 

Botón Actualizar


Botón Actualizar

Acceso al texto completo restringido a Biblioteca INIA Treinta y Tres. Por información adicional contacte bibliott@inia.org.uy.
Registro completo
Biblioteca (s) :  INIA Treinta y Tres.
Fecha :  13/04/2022
Actualizado :  17/05/2022
Tipo de producción científica :  Artículos en Revistas Indexadas Internacionales
Autor :  PEREIRA MORA, L.; TERRA, J.A.; FERNÁNDEZ SCAVINO, A.
Afiliación :  LUCIANA PEREIRA MORA, Area Microbiología, Departamento de Biociencias, Facultad de Química, Universidad de la República, Montevideo, Uruguay.; JOSÉ ALFREDO TERRA FERNÁNDEZ, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; ANA FERNÁNDEZ SCAVINO, Area Microbiología, Departamento de Biociencias, Facultad de Química, Universidad de la República, Montevideo, Uruguay.
Título :  Methanogenic community linked to organic acids fermentation from root exudates are affected by rice intensification in rotational soil systems.
Fecha de publicación :  2022
Fuente / Imprenta :  Applied Soil Ecology, 2022, volume 176, artículo 104498. OPEN ACCESS. doi: https://doi.org/10.1016/j.apsoil.2022.104498
Páginas :  9 p.
DOI :  10.1016/j.apsoil.2022.104498
Idioma :  Inglés
Notas :  History Article: Received 30 December 2021; Received in revised form 1 April 2022; Accepted 4 April 2022; Available online 13 April 2022. Corresponding author: afernand@fq.edu.uy (A. Fernandez-Scavino).
Contenido :  Rice paddy soils are an important biogenic source of methane, a relevant greenhouse gas. Rice rotation with upland crops and pastures affects hydrolytic and fermentative bacteria and methanogenic archaea by sequential exposition to oxic and anoxic conditions. There are several ways to reduce methane emissions from rice paddy soils. Here we examine the effect of intensification in rice rotations with upland crops upon the microbial community structure and methanogenesis when dicarboxylic acids exudated by rice root were amended in microcosms assays. Soils under rotations rice-pasture, rice-soybean and continuous rice, with the last two more intensive systems recently installed in the field experiment, were sampled. Amplicon sequencing of 16S rRNA gene analysis showed that the rotation system was a main driver of the microbial community structure, explaining 33%, 38% and 55% of the differences in the structure of Bacteria, Archaea and methanogens, respectively. The density of mcrA gene copies was significantly higher in continuous rice soil than in other soils, and the relative abundance of methanogenic archaea was 33% for rice monoculture, whereas represented 15% and 14% for the rice-pasture and rice-soybean soils, respectively. The incubation of soils with tartrate and succinate confirmed functional differences among soils since rice monoculture showed similar or higher methane production and significantly less acetate and propionate accumulation than other soils. The T-RFLP... Presentar Todo
Palabras claves :  CROP ROTATION; CROP ROTATION SYSTEMS; METHANOGENS; RICE INTENSIFICATION; ROOT EXUDATION.
Asunto categoría :  F01 Cultivo
Marc :  Presentar Marc Completo
Registro original :  INIA Treinta y Tres (TT)
Biblioteca Identificación Origen Tipo / Formato Clasificación Cutter Registro Volumen Estado
TT103652 - 1PXIAP - PPPP/Applied-Soil-Ecology/2022/Pereira

Volver


Botón Actualizar


Botón Actualizar

Ordenar por: RelevanciaAutorTítuloAñoImprimir registros en formato de resumen
Registros recuperados : 5
Primeira ... 1 ... Última
1.Imagen marcada / sin marcar FERNÁNDEZ SCAVINO, A. La diversidad bacteriana en el cultivo de arroz. Arroz, 2009, no. 57, p. 44-48
Biblioteca(s): INIA Tacuarembó.
Ver detalles del registro Imprime registro en el formato completo
2.Imagen marcada / sin marcar PEREIRA MORA, L.; TERRA, J.A.; FERNÁNDEZ SCAVINO, A. Methanogenic community linked to organic acids fermentation from root exudates are affected by rice intensification in rotational soil systems. Applied Soil Ecology, 2022, volume 176, artículo 104498. OPEN ACCESS. doi: https://doi.org/10.1016/j.apsoil.2022.104498 9 p. History Article: Received 30 December 2021; Received in revised form 1 April 2022; Accepted 4 April 2022; Available online 13 April 2022. Corresponding author: afernand@fq.edu.uy (A. Fernandez-Scavino).
Tipo: Artículos en Revistas Indexadas InternacionalesCirculación / Nivel : Internacional - --
Biblioteca(s): INIA Treinta y Tres.
Ver detalles del registro Acceso restrito al objeto digitalImprime registro en el formato completo
3.Imagen marcada / sin marcar FERNÁNDEZ SCAVINO, A.; OREGGIONI, D.; MARTÍNEZ PEREYRA, A.; TARLERA, S.; TERRA, J.A.; IRISARRI, P. Season and no-till Rice crop intensification affect soil microbial populations involved in CH4 and N2O emissions. Frontiers in Soil Science, 17 March 2022, Volume 2, Article number 832600. OPEN ACCESS. Doi: https://doi.org/10.3389/fsoil.2022.832600 Article history: Received: 10 December 2021; Accepted: 01 February 2022; Published: 17 March 2022. This article is part of the research topic ?Management of agroecosystems for enhancement of soil microbial communities and soil natural...
Tipo: Artículos en Revistas Indexadas InternacionalesCirculación / Nivel : Internacional - --
Biblioteca(s): INIA Treinta y Tres.
Ver detalles del registro Acceso al objeto digitalImprime registro en el formato completo
4.Imagen marcada / sin marcar TARLERA, S.; CAPURRO, M.C.; IRISARRI, P.; FERNÁNDEZ SCAVINO, A.; CANTOU, G.; ROEL, A. Yield-scaled global potential of two irrigation management systems in a highly productive rice systems. Scientia Agricola, 2016, v. 73, no. 1 p. 43-50. Article history: Received February 06, 2015; accepted June 05, 2015; published 2016.
Tipo: Artículos en Revistas Indexadas InternacionalesCirculación / Nivel : A - A
Biblioteca(s): INIA Treinta y Tres.
Ver detalles del registro Acceso al objeto digitalImprime registro en el formato completo
5.Imagen marcada / sin marcar JURBURG, S.D.; ÁLVAREZ BLANCO, M.J.; CHATZINOTAS, A.; KAZEM, A.; KÖNIG-RIES, B.; BABIN, D.; SMALLA, K.; CERECETTO, V.; FERNANDEZ-GNECCO, G.; COVACEVICH, F.; VIRUEL, E.; BERNASCHINA, Y.; LEONI, C.; GARAYCOCHEA, S.; TERRA, J.A.; FRESIA, P.; FIGUEROLA, E.L.M.; WALL, L.G.; COVELLI, J.M.; AGNELLO, A.C.; NIETO, E.E.; FESTA, S.; DOMINICI, L.E,; ALLEGRINI, M.; ZABALOY, M.C.; MORALES, M.E.; ERIJMAN, L.; CONIGLIO, A´.; CASSÁN, F.D.; NIEVAS, S.; ROLDÁN, D.M.; MENES, R.; VAZ JAURI, P.; MARRERO, C.S.; MASSA, A.M.; REVETRIA, M.A.M.; FERNÁNDEZ-SCAVINO, A.; PEREIRA-MORA, L.; MARTÍNEZ, S.; FRENE, J.P. Datathons: fostering equitability in data reuse in ecology. Science & Society. Trends in Microbiology. 2024. https://doi.org/10.1016/j.tim.2024.02.010 -- OPEN ACCESS [Article in Press] Article history: Available online 21 March 2024. -- Correspondence: Jurburg, S.D.; Department of Applied Microbial Ecology, Helmholtz Centre for Environmental Research (UFZ), Leipzig, Germany; email:s.d.jurburg@gmail.com -- LICENSE:...
Tipo: Artículos en Revistas Indexadas InternacionalesCirculación / Nivel : Internacional - --
Biblioteca(s): INIA Las Brujas.
Ver detalles del registro Acceso al objeto digitalImprime registro en el formato completo
Registros recuperados : 5
Primeira ... 1 ... Última
Expresión de búsqueda válido. Check!
 
 

Embrapa
Todos los derechos reservados, conforme Ley n° 9.610
Política de Privacidad
Área Restricta

Instituto Nacional de Investigación Agropecuaria
Andes 1365 - piso 12 CP 11100 Montevideo, Uruguay
Tel: +598 2902 0550 Fax: +598 2902 3666
bibliotecas@inia.org.uy

Valid HTML 4.01 Transitional