Climate risk assessment for Cannabis spp. in Santa Catarina State, Brazil
Resumo
Interest in the medicinal use of Cannabis spp. has been increasing due to scientific evidence demonstrating its therapeutic potential. However, in Brazil, agronomic studies on its cultivation are incipient. This study aimed to perform a climate risk analysis for the cultivation of Cannabis spp. in the state of Santa Catarina (SC), Brazil. From the bibliographic review and the systematization of meteorological data of the state, the critical parameters of photoperiod (< 14 h), probability of occurrence of minimum temperatures (< -6°C) and thermal sum (< 2500 GDD) were considered. The Cannabis spp. may be cultivated in all regions of SC, provided that the technical guidelines according to the inherent risks in each region are observed. Within the ten-day period from 33 to 8 (November 21 to March 20), the photoperiod and absolute minimum air temperature criteria were not restrictive in any region of the state. For the critical parameter of thermal sum, in regions where the risk is elevated due to a thermal sum below 2500 Growing Degree Days (GDD), this limitation may be mitigated by advancing the timing of plant establishment. This research offers valuable insights for researchers, policymakers, and those interested in cultivating Cannabis spp. in Brazil, with a strategic perspective aimed at fostering initiatives that consider the potential for producing Cannabis spp. in the
Santa Catarina territory.
Palavras-chave
Texto completo:
PDF (English)Referências
ADESINA, I.; BHOWMIK, A.; SHARMA, H.; SHAHBAZI, A. A review on the current state of knowledge of growing conditions, agronomic soil health practices and utilities of hemp in the United States. Agriculture, v. 10, n. 4, p. 129, 2020. DOI: 10.3390/agriculture10040129
ADWA Cannabis. Cannabis medicinal e industrial no Brasil potencial de cultivo. 2021. Avaliable at: . Acessed on: Oct. 10 2023.
AL UBEED, H. M. S.; BHUYAN, D. J.; ALSHERBINY, M. A.; BASU, A.; VUONG, Q. V. A. Comprehensive review on the techniques for extraction of bioactive compounds from medicinal Cannabis. Molecules, v. 27, n. 3, p. 604, 2022. DOI: https://doi.org/10.3390/molecules27030604
ALVARES, C. A.; STAPE, J. L.; SENTELHAS, P. C.; GONÇALVES, J. D. M.; SPAROVEK, G. Köppen‘s climate classification map for Brazil. Meteorologische Zeitschrift, v. 22, n. 6, p. 711-728, 2013. DOI: 10.1127/0941-2948/2013/0507
AMADUCCI, S.; COLAUZZI, M.; BELLOCCHI, G.; VENTURI, G. Modelling post-emergent hemp phenology (Cannabis sativa L.): Theory and evaluation. European Journal of Agronomy, v. 28, n. 2, p. 90-102, 2008. DOI: 10.1016/j.eja.2007.05.006
AMADUCCI, S.; SCORDIA, D.; LIU, F. H.; ZHANG, Q.; GUO, H., TESTA, G.; COSENTINO, S. L. Key cultivation techniques for hemp in Europe and China. Industrial Crops and Products, v. 68, p. 2-16, 2015. DOI: 10.1016/j.indcrop.2014.06.041
BERGAMASCHI, H.; BERGONCI, J. I. As plantas e o clima: princípios e aplicações. 1.ed. Guaíba: Agrolivros, 2017. 352p.
BONINI, S. A.; PREMOLI, M.; TAMBARO, S.; KUMAR, A.; MACCARINELLI, G.; MEMO, M.; MASTINU, A. Cannabis sativa: A comprehensive ethnopharmacological review of a medicinal plant with a long history. Journal of ethnopharmacology, v. 227, p. 300-315, 2018. DOI: 10.1016/j.jep.2018.09.004
BROSÉUS, J.; ANGLADA, F.; ESSEIVA, P. The differentiation of fibre-and drug type Cannabis seedlings by gas chromatography/mass spectrometry and chemometric tools. Forensic Science International, v. 200, n. 1-3, p. 87-92, 2010. DOI: 10.1016/j.forsciint.2010.03.034
CARVALHO, L. J. C. B.; URBEN FILHO, G.; LUCHIARI JUNIOR, A.; GOMIDE, R.; de SOUSA, M. C. Equação e programa de microcomputador para cálculo do fotoperíodo diário. EMBRAPA-CPAC. Documento n.14, 1985. 17p. Avaliable at: < https://www.infoteca.cnptia.embrapa.br/bitstream/doc/547431/1/doc14.pdf>. Acessed on: Aug. 12 2024.
DUKE, J. A. Ecosystematic data on medicinal plants. In: ATAL, C. K., KAPUR, B. M. (Eds.) Utilization of Medicinal Plants. New Delhi: United Printing Press, 1982, p.13-23.
EMBRAPA. Zoneamento Agrícola de Risco Climático. 2017. Available at: . Accessed on: Oct. 20 2023.
FASSIO, A.; RODRÍGUEZ, M. J.; CERETTA, S. Cáñamo (Cannabis sativa L.). Instituto Nacional de Investigación Agropecuaria, n. 103, p. 1-96, 2013. Available at: http://www.inia.uy/Publicaciones/Documentos%20compartidos/bd%20103_2013.pdf>. Accessed on: Aug 20 2024.
FERFUIA, C.; FANTIN, N.; PIANI, B.; ZULIANI, F.; BALDINI, M. Seed growth and oil accumulation in two different varieties of industrial hemp (Cannabis sativa L.). Industrial Crops and Products, v. 216, p. 118723, 2024. DOI: 10.1016/j.indcrop.2024.118723
FIOCRUZ. Estado atual das evidências sobre usos terapêuticos da cannabis e derivados e a demanda por avanços regulatórios no Brasil. 2023. Available at: . Accessed on: May 20 2023.
FRAGA, P. C. P.; IULIANELLI, J. A. S. Plantios ilícitos de “cannabis” no Brasil: desigualdades, alternativa de renda e cultivo de compensação. DILEMAS - Revista de Estudos de Conflito e Controle Social, v. 4, n. 1, p. 11-39, 2011.
GALIC, A.; GRAB, H.; KACZMAR, N.; MASER, K.; MILLER, W. B.; SMART, L. B. Effects of cold temperature and acclimation on cold tolerance and cannabinoid profiles of Cannabis sativa L. (Hemp). Horticulturae, v. 8, n. 6, p. 531, 2022. DOI: 10.3390/horticulturae8060531
HALL, J.; BHATTARAI, S. P.; MIDMORE, D. J. The effects of different sowing times on maturity rates, biomass, and plant growth of industrial fiber hemp. Journal of Natural Fibers, v. 10, n. 1, p. 40-50, 2013. DOI: 10.1080/15440478.2012.756639
HARTSEL, J. A.; BOYAR, K.; PHAM, A.; SILVER, R. J.; MAKRIYANNIS, A. Cannabis in veterinary medicine: cannabinoid therapies for animals. In: GUPTA, R.; SRIVASTAVA, A.; LALL, R. (Eds.). Nutraceuticals in Veterinary Medicine. Cham: Springer, 2019. 121-155. DOI: 10.1007/978-3-030-04624-8_10
KAYA MIND. Anuário da Cannabis no Brasil 2022. A regulamentação da cannabis no Brasil e seus desdobramentos no mercado. Available at: . Accessed on: Oct 20 2023.
LÓPEZ, G. E. Á. Cannabis sativa L., una planta singular. Revista Mexicana de Ciencias Farmacéuticas, v. 45, n. 4, p. 1-7, 2014.
MEHTA, D.; SCANDOLA, S.; KENNEDY, C.; LUMMER, C.; GALLO, M. C. R.; GRUBB, L. E.; TAN, M.; SCARPELLA, E.; UHRIG, R. G. Twilight length alters growth and flowering time in Arabidopsis via LHY/CCA1. Science Advances, v. 10, n. 26, p. eadl3199, 2024.
MERFIELD, C. N. Industrial hemp and its potential for New Zealand. Kellogg Rural Leaders Programme report series, 1999. 34 p. Available at: . Accessed on: Aug 5 2023.
MISHCHENKO, S.; MOKHER, J.; LAIKO, I.; BURBULIS, N.; KYRYCHENKO, H.; DUDUKOVA, S. Phenological growth stages of hemp (Cannabis sativa L.): codification and description according to the BBCH scale. Žemės ūkio mokslai, v. 24, n. 2, p. 31-36, 2017. DOI: 10.6001/zemesukiomokslai.v24i2.3496
PANDOLFO, C.; MASSIGNAM, A. M.; RICCE, W. S.; VIANNA, L. F. N. Total de deficiência hídrica anual para o estado de Santa Catarina. In: DORTZBACH, D.; VIEIRA, H.J. (Orgs.). Boletim Ambiental. Síntese Trimestral: Verão 2018. Florianópolis: Epagri, 2018, 70p. (Epagri. Documentos, 283). Florianópolis: Epagri, 2018. 70 p. (Documento, 283).
PANDOLFO, C.; BRUGNARA, E. C.; RICCE, W. S.; VIANA, L. F. N.; LEITE, G. B. Risco climático para oliveira em Santa Catarina. Agrometeoros, v.29, e026930, 2021. DOI: 10.31062/agrom.v29.e026930
PEREIRA, E. S.; BRAGA, H. J.; SILVA JÚNIOR, V. P. da. Sistema Agrometeorológico para Computador - Sisagro II. In: COBRAC, 2004, Florianópolis, 2004.
PILUZZA, G.; DELOGU, G.; CABRAS, A.; MARCEDDU, S.; BULLITTA, S. Differentiation between fiber and drug types of hemp (Cannabis sativa L.) from a collection of wild and domesticated accessions. Genetic Resources and Crop Evolution, v. 60, p. 2331–2342, 2013. DOI: 10.1007/s10722-013-0001-5
SIKORA, V.; BERENJI, J.; LATKOVIĆ, D. Influence of agroclimatic conditions on content of main cannabinoids in industrial hemp (Cannabis sativa L.). Genetika-Belgrade, v. 43, n. 3, p. 449-456, 2011.
SMALL, E. Evolution and classification of Cannabis sativa (Marijuana, Hemp) in relation to human utilization. Botanic Review, v. 81, p. 189-294, 2015. DOI: 10.1007/s12229-015-9157-3
SPANO, M.; DI MATTEO, G.; INGALLINA, C.; SOBOLEV, A. P.; GIUSTI, A. M.; VINCI, G.; CAMMARONE, S.; TORTORA, C.; LAMELZA, L.; PRENCIPE, S. A.; GOBBI, L.; BOTTA, B.; MARINI, F.; CAMPIGLIA, E.; MANNINA, L. Industrial hemp (Cannabis sativa L.) inflorescences as novel food: The effect of different agronomical practices on chemical profile. Foods, v. 11, n. 22, p. 3658, 2022. DOI: 10.3390/foods11223658
STRUIK, P. C.; AMADUCCI, S.; BULLARD, M. J.; STUTTERHEIM, N. C.; VENTURA, G.; CROMACK, H. T. H. Agronomy of fiber hemp (Cannabis sativa L.) in Europe. Industrial Crops and Products, v. 11, n. 2-3, p. 107-118, 2000. DOI: 10.1016/S0926-6690(99)00048-5
TRANCOSO, I.; DE SOUZA, G. A. R.; DOS SANTOS, P. R.; DOS SANTOS, K. D.; DE MIRANDA, R. M. D. S. N.; DA SILVA, A. L. P. M.; SANTOS, D. Z.; GARCÍA-TEJERO, I. F.; CAMPOSTRINI, E. Cannabis sativa L.: Crop management and abiotic factors that affect phytocannabinoid production. Agronomy, v. 12, n. 7, p. 1492, 2022. DOI: 10.3390/agronomy12071492
USGS. Shuttle Radar Topography Mission. 3 Arc Second, Filled Finished 2.0, Global Land Cover Facility. Jet Propulsion Laboratory, California. California Institute of Technology, feb. 2006.
VERGARA, D.; SHELNUTT, S.; GRAB, H.; DEMETRI, A.; RICE, S.; BARRACO III, A. Cannabis sativa L. Production Manual: maximize yield, quality, profitability, and product integrity. 1.ed. New York: College of Agriculture and Life Sciences, 2023. 208 p. DOI: 10.7298/1p4a-mq98
ZHANG, M.; ANDERSON, S. L.; BRYM, Z. T.; PEARSON, B. J. Photoperiodic flowering response of essential oil, grain, and fiber hemp (Cannabis sativa L.) cultivars. Frontiers in Plant Science, v. 12, 694153, 2021. DOI: 10.3389/fpls.2021.694153
DOI: http://dx.doi.org/10.31062/agrom.v32.e027692
Apontamentos
- Não há apontamentos.
Embrapa Trigo
Rodovia BR-285, km 294, Caixa Postal: 3081
CEP 99050-970 Passo Fundo/RS