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The C3-CAM shift is crucial to the maintenance of the photosynthetic apparatus integrity in Pereskia aculeata under prolonged and severe drought

dc.contributor.authorde Barros, João Paulo Alves
dc.contributor.authorLima Neto, Milton Costa [UNESP]
dc.contributor.authorda Silva Brito, Nielson Dinivan
dc.contributor.authorHerminio, Pedro José
dc.contributor.authorSantos, Hugo Rafael Bentzen
dc.contributor.authorSimões, Adriano do Nascimento
dc.contributor.authorNunes, Vitor Gomes
dc.contributor.authorde Lima, André Luiz Alves
dc.contributor.authorde Souza, Eduardo Soares
dc.contributor.authorFerreira-Silva, Sérgio Luiz
dc.contributor.institutionFederal Rural University of Pernambuco(UFRPE)
dc.contributor.institutionUniversidade Estadual Paulista (UNESP)
dc.date.accessioned2025-04-29T18:37:37Z
dc.date.issued2024-12-01
dc.description.abstractThis work aimed to evaluate how the C3-CAM shift could contribute to photoprotection and attenuate losses of CO2 uptake in Pereskia aculeata plants under water stress. Plants were subjected to treatments: well-watered (WW), water deficit (WD), and recovery (Rec) in two experimental conditions (greenhouse and growth chamber). Induction of the C3-CAM shift by drought was assessed by leaf acidification, carbohydrate content, photochemical activity, gas exchange, and stomata density and closure during diurnal and nocturnal periods. Leaf acidity was reduced during the night period in WW-plants and increased in WD-plants, suggesting active accumulation of organic acids associated with CAM induction by drought. This apparent CAM induction in WD-plants was associated to increase carbohydrates and significant reduction of leaf water potential (ΨW). WD-plants showed a positive carbon balance associated with a higher net-CO2 uptake (PN) during night period compared to WW-plants. Moreover, WW-plants presented negative values for PN associated with a negative carbon balance at night. In both conditions (WW and WD) plants showed PN near zero at night. However, a positive carbon balance associated with a slight stomatal aperture at during the day and strong closure during night in the WD-plants, suggests that C3-CAM shift, able to maintain CO2 uptake, presented a better trend toward the CAM-cycling model. Together, this study shows that CO2 uptake conferred by C3-CAM shift under drought contributed to photoprotection and better photosynthetic recovery after rehydration of Pereskia aculeata plants.en
dc.description.affiliationPostgraduate Program in Plant Production Serra Talhada Academic Unit Federal Rural University of Pernambuco(UFRPE), CP 063, Pernambuco
dc.description.affiliationSão Paulo State University Institute of Biosciences, São Vicente
dc.description.affiliationUnespSão Paulo State University Institute of Biosciences, São Vicente
dc.description.sponsorshipConsejo Nacional para Investigaciones Científicas y Tecnológicas
dc.description.sponsorshipIdConsejo Nacional para Investigaciones Científicas y Tecnológicas: 423583/2018-2
dc.identifierhttp://dx.doi.org/10.1007/s11738-024-03738-5
dc.identifier.citationActa Physiologiae Plantarum, v. 46, n. 12, 2024.
dc.identifier.doi10.1007/s11738-024-03738-5
dc.identifier.issn1861-1664
dc.identifier.issn0137-5881
dc.identifier.scopus2-s2.0-85211379957
dc.identifier.urihttps://hdl.handle.net/11449/298611
dc.language.isoeng
dc.relation.ispartofActa Physiologiae Plantarum
dc.sourceScopus
dc.subjectAdaptation mechanism
dc.subjectC3-CAM modulation
dc.subjectCAM photosynthesis
dc.subjectPereskia aculeata
dc.subjectWater stress
dc.titleThe C3-CAM shift is crucial to the maintenance of the photosynthetic apparatus integrity in Pereskia aculeata under prolonged and severe droughten
dc.typeArtigopt
dspace.entity.typePublication
unesp.author.orcid0000-0003-3055-3258[10]
unesp.campusUniversidade Estadual Paulista (UNESP), Instituto de Biociências, São Vicentept

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