2 resultados para Seasonal-variation

em Repositório Alice (Acesso Livre à Informação Científica da Embrapa / Repository Open Access to Scientific Information from Embrapa)


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The seasonal climate drivers of the carbon cy- cle in tropical forests remain poorly known, although these forests account for more carbon assimilation and storage than any other terrestrial ecosystem. Based on a unique combina- tion of seasonal pan-tropical data sets from 89 experimental sites (68 include aboveground wood productivity measure- ments and 35 litter productivity measurements), their asso- ciated canopy photosynthetic capacity (enhanced vegetation index, EVI) and climate, we ask how carbon assimilation and aboveground allocation are related to climate seasonal- ity in tropical forests and how they interact in the seasonal carbon cycle. We found that canopy photosynthetic capacity seasonality responds positively to precipitation when rain- fall is < 2000 mm yr-1 (water-limited forests) and to radia- tion otherwise (light-limited forests). On the other hand, in- dependent of climate limitations, wood productivity and lit- terfall are driven by seasonal variation in precipitation and evapotranspiration, respectively. Consequently, light-limited forests present an asynchronism between canopy photosyn- thetic capacity and wood productivity. First-order control by precipitation likely indicates a decrease in tropical forest pro- ductivity in a drier climate in water-limited forest, and in cur- rent light-limited forest with future rainfall < 2000 mm yr-1.

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Através de analise gravimétrica de alcaloides e cromatografia comparativa de extratos de caule e folha de Annona cacans Warming coletados em 4 diferentes estações do ano observou-se alteração acentuada no teor das diversas substancias isoladas deste vegetal. No inverno o teor de alcaloides básicos do caule cai a nível muito baixo, elevando-se ao máximo na primavera. Os alcaloides lactamícos e a oxoaporfina liriodenina estão presentes no verão e ausentes na primavera, quando o teor de alcaloides e o maior possível. Pode ser observado, também, diminuição do teor de estefarina, considerado precursor biossintético dos alcaloides asimilobina e michelalbina, quando estas ultimas aparecem. Salienta-se a importância do estudo fitoquímico em diversas épocas do ano, para evitar conclusões equivocadas a respeito da presença ou ausência de determinadas substâncias.