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1.Imagen marcada / sin marcar JOHNSON, S.N; BARTON, C.V.M.; BIRU, F.N.; ISLAM , T.; MACE, W.J.; ROWE, R.C.; CIBILS-STEWART, X. Elevated atmospheric CO2 suppresses silicon accumulation and exacerbates endophyte reductions in plant phosphorus. [Dataset]. DRYAD Dataset, 2023. https://doi.org/10.5061/dryad.6m905qg4p Article history: Publication date 12 April 12 2023. -- Correspondence author: Johnson, S.N.; Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia; email:scott.johnson@westernsydney.edu.au --...
Biblioteca(s): INIA Las Brujas.
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2.Imagen marcada / sin marcar JOHNSON, S.N.; BARTON, C.V.M.; BIRU, F.N.; ISLAM , T.; MACE, W.J.; ROWE, R.C.; CIBILS-STEWART, X. Elevated atmospheric CO2 suppresses silicon accumulation and exacerbates endophyte reductions in plant phosphorus. Functional Ecology, 2023. https://doi.org/10.1111/1365-2435.14342 -- [Article in Press] Article history: Accepted 28 March 2023, Received 15 January 2023, First published 27 April 2023. -- Correspondence author:Johnson, S.N.; Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia;...
Biblioteca(s): INIA Las Brujas.
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3.Imagen marcada / sin marcar CIBILS-STEWART, X.; MACE, W.J.; POPAY, A.J.; LATTANZI, F.; HARTLEY, S.E; HALL, C.R.; POWELL, J.R.; JOHNSON, S.N. Interactions between silicon and alkaloid defences in endophyte-infected grasses and the consequences for a folivore. Functional Ecology, 2021. Doi: https://doi.org/10.1111/1365-2435.13916 Article history: Received: 6 April 2021/Accepted: 30 August 2021.
Biblioteca(s): INIA La Estanzuela.
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4.Imagen marcada / sin marcar CIBILS-STEWART, X.; PUTRA, R.; ISLAM, T.; FANNA, D.J.; WUHRER, R.; MACE, W.J.; HARTLEY, S.E.; POPAY, A.J.; JOHNSON, S.N. Silicon and Epichloë-endophyte defences in a model temperate grass diminish feeding efficiency and immunity of an insect folivore. Functional Ecology, 2023, https://doi.org/10.1111/1365-2435.14453 --OPEN ACCESS. Article history: Manuscript received 08 April 2023; Manuscript accepted 21 September 2023; Version of Record online 25 October 2023. -- Correspondnce author: Cibils-Stewart, X.; Hawkesbury Institute for the Environment, Western Sydney...
Biblioteca(s): INIA Las Brujas.
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Biblioteca (s) :  INIA La Estanzuela.
Fecha actual :  19/11/2021
Actualizado :  19/11/2021
Autor :  CIBILS-STEWART, X.; MACE, W.J.; POPAY, A.J.; LATTANZI, F.; HARTLEY, S.E; HALL, C.R.; POWELL, J.R.; JOHNSON, S.N.
Afiliación :  XIMENA CIBILS-STEWART, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay./Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia; WADE J. MACE, AgResearch, Grasslands Research Centre, Palmerston North, New Zealand; ALISON J. POPAY, AgResearch, Ruakura Research Centre, Hamilton, New Zealand.; FERNANDO A. LATTANZI, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; SUSAN (SUE) E. HARTLEY, Department of Animal and Plant Sciences, University of Sheffield, Sheffield, UK.; CASEY R. HALL, Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia.; JEFF R. POWELL, Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia.; SCOTT N. JOHNSON, Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia.
Título :  Interactions between silicon and alkaloid defences in endophyte-infected grasses and the consequences for a folivore.
Fecha de publicación :  2021
Fuente / Imprenta :  Functional Ecology, 2021. Doi: https://doi.org/10.1111/1365-2435.13916
DOI :  10.1111/1365-2435.13916
Idioma :  Inglés
Notas :  Article history: Received: 6 April 2021/Accepted: 30 August 2021.
Contenido :  Abstract: Grasses have developed a wide range of morphological and physiological mechanisms to resist herbivory. For instance, they accumulate silicon (Si) in tissue, as physical defence, and associate symbiotically with foliar Epichloë-endophytes that provide chemical defence via antiherbivore alkaloids. Recent evidence showed that some Epichloë-endophytes increase foliar Si in forage grasses; however, whether this impacts insect herbivores is unknown. Furthermore, while Si is primarily a physical defence, it also affects production of plant defensive secondary metabolites; Si supply might therefore affect Epichloë-alkaloids, although this remains untested. We grew endophyte-free (Nil) and Epichloë-infected tall fescue and perennial ryegrass in a factorial combination with or without Si supplementation, in the absence or presence of Helicoverpa armigera. Epichloë-endophyte strains were AR584 for tall fescue, and AR37, AR1 or Wild-type (WT) for perennial ryegrass. We assessed how Si supply and Epichloë-endophytes in interaction with herbivory affected foliar Si and mutualist-derived alkaloid concentrations. Subsequently, their effects on H. armigera relative growth rates (RGRs) were evaluated. Endophytes generally increased Si concentrations in Si-supplied plants. In tall fescue AR584 and perennial ryegrass AR37, endophytes increased constitutive (herbivore-free) and induced (herbivore-inoculated) Si concentrations by at least 25%; in contrast, in perennial ryegrass, the AR1... Presentar Todo
Palabras claves :  Antiherbivore defences; Epichloë-endophytes; Helicoverpa armigera; Perennial ryegrass (Lolium perenne L.); Tall fescue (Festuca arundinacea).
Thesagro :  ENTOMOLOGIA.
Asunto categoría :  --
Marc :  Presentar Marc Completo
Registro original :  INIA La Estanzuela (LE)
Biblioteca Identificación Origen Tipo / Formato Clasificación Cutter Registro Volumen Estado
LE103468 - 1PXIAP - DDPP/Functional Ecology/2021
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