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dc.contributor.authorSampaio-Filho, Israel de Jesus-
dc.contributor.authorJardine, Kolby J.-
dc.contributor.authorOliveira, Rosilena Conceição Azevedo de-
dc.contributor.authorGimenez, Bruno Oliva-
dc.contributor.authorCobello, Leticia Oliveira-
dc.contributor.authorPiva, Luani Rde Oliveira-
dc.contributor.authorCândido, Luiz Antônio-
dc.contributor.authorHiguchi, Niro-
dc.contributor.authorChambers, Jeffrey Quintin-
dc.date.accessioned2020-05-15T14:59:46Z-
dc.date.available2020-05-15T14:59:46Z-
dc.date.issued2018-
dc.identifier.urihttps://repositorio.inpa.gov.br/handle/1/15618-
dc.description.abstractWarming surface temperatures and increasing frequency and duration of widespread droughts threaten the health of natural forests and agricultural crops. High temperatures (HT) and intense droughts can lead to the excessive plant water loss and the accumulation of reactive oxygen species (ROS) resulting in extensive physical and oxidative damage to sensitive plant components including photosynthetic membranes. ROS signaling is tightly integrated with signaling mechanisms of the potent phytohormone abscisic acid (ABA), which stimulates stomatal closure leading to a reduction in transpiration and net photosynthesis, alters hydraulic conductivities, and activates defense gene expression including antioxidant systems. While generally assumed to be produced in roots and transported to shoots following drought stress, recent evidence suggests that a large fraction of plant ABA is produced in leaves via the isoprenoid pathway. Thus, through stomatal regulation and stress signaling which alters water and carbon fluxes, we highlight the fact that ABA lies at the heart of the Carbon-Water-ROS Nexus of plant response to HT and drought stress. We discuss the current state of knowledge of ABA biosynthesis, transport, and degradation and the role of ABA and other isoprenoids in the oxidative stress response. We discuss potential variations in ABA production and stomatal sensitivity among different plant functional types including isohydric/anisohydric and pioneer/climax tree species. We describe experiments that would demonstrate the possibility of a direct energetic and carbon link between leaf ABA biosynthesis and photosynthesis, and discuss the potential for a positive feedback between leaf warming and enhanced ABA production together with reduced stomatal conductance and transpiration. Finally, we propose a new modeling framework to capture these interactions. We conclude by discussing the importance of ABA in diverse tropical ecosystems through increases in the thermotolerance of photosynthesis to drought and heat stress, and the global importance of these mechanisms to carbon and water cycling under climate change scenarios. © 2018 by the authors. Licensee MDPI, Basel, Switzerland.en
dc.language.isoenpt_BR
dc.relation.ispartofVolume 19, Número 7pt_BR
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Brazil*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/br/*
dc.subjectAbscisic Aciden
dc.subjectCarbonen
dc.subjectReactive Oxygen Metaboliteen
dc.subjectAbscisic Aciden
dc.subjectAntioxidant Activityen
dc.subjectBiodiversityen
dc.subjectCropen
dc.subjectDrought Toleranceen
dc.subjectEvapotranspirationen
dc.subjectGene Expressionen
dc.subjectHeat Toleranceen
dc.subjectHigh Temperatureen
dc.subjectHydraulic Conductivityen
dc.subjectNonhumanen
dc.subjectOxidative Stressen
dc.subjectPhotosynthesisen
dc.subjectPlant Organogenesisen
dc.subjectPlant Responseen
dc.subjectReviewen
dc.subjectStomatal Conductanceen
dc.subjectTropical Rain Foresten
dc.subjectWarmingen
dc.subjectWater Lossen
dc.subjectBiological Modelen
dc.subjectForesten
dc.subjectMetabolismen
dc.subjectPlant Stomaen
dc.subjectTropic Climateen
dc.subjectAbscisic Aciden
dc.subjectForestsen
dc.subjectModels, Biologicalen
dc.subjectPlant Stomataen
dc.subjectReactive Oxygen Speciesen
dc.subjectTropical Climateen
dc.titleBelow versus above ground plant sources of abscisic acid (ABA) at the heart of tropical forest response to warmingen
dc.typeArtigopt_BR
dc.identifier.doi10.3390/ijms19072023-
dc.publisher.journalInternational Journal of Molecular Sciencespt_BR
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