02610naa a2200385 a 450000100080000000500110000800800410001902400550006010000190011524501550013426000090028930000130029852014070031165000170171865000210173565000190175665000320177565000390180765000100184665000230185665000110187965000140189065000200190465000270192465000240195165000220197565000240199765300200202170000250204170000220206670000160208870000190210470000240212377300770214721335462021-08-13 2021 bl uuuu u00u1 u #d7 ahttps://doi.org/10.1590/0001-37652021201906962DOI1 aBATISTA, E. R. aIncreased atmospheric CO2 combined with local climatic variation affects phenolics and spider mite populations in coffee trees.h[electronic resource] c2021 ap. 1-14. aAbstract: Modelling studies on climate change predict continuous increases in atmospheric carbon dioxide concentration [CO2] and increase in temperature. This may alter carbon-based phytochemicals such phenolics and modify plant interactions with herbivorous. We investigated the effects of enhanced [CO2] and local climatic variation on young coffee plants, Coffea arabica L. cv Catuaí vermelho IAC-144 and Obatã vermelho IAC-1669-20, cultivated in the FACE (Free-Air Carbon Dioxide Enrichment) facility under two atmospheric [CO2] conditions. Coffee leaves were evaluated for total soluble phenolics (TSP), chlorogenic (5-CQA) and caffeic (CAF) acids, diversity and population size of mites, along two dry and two rainy seasons. Elevated atmospheric CO2 (e[CO2]) significantly decreased 5-CQA in cv. Catuaí but did not affect cv. Obatã. Species richness and population size of mites in coffee leaves were not affected by e[CO2] but were strongly related to the seasonal variability of coffee leaf phenolics. In general, high levels of phenolics were negatively correlated with population size while the mite species richness were negatively correlated with 5-CQA and TSP levels. Our fi ndings show that [CO2] enhancement affects phenolics in coffee plants differentially by cultivars, however seasonality is the key determinant of phenolics composition, mite species richness and population size. aCaffeic acid aChlorogenic acid aClimate change aCoffea arabica var. arabica aFree air carbon dioxide enrichment aMites aPhenolic compounds aÁcaro aAtmosfera aCoffea Arábica aDinâmica Populacional aDióxido de Carbono aImpacto Ambiental aMudança Climática aTotal phenolics1 aMARINHO-PRADO, J. S.1 aMINEIRO, J. L. C.1 aSATO, M. E.1 aLUIZ, A. J. B.1 aFRIGHETTO, R. T. S. tAnais da Academia Brasileira de Ciênciasgv. 93, n. 3, e20190696, 2021.