A Review of the Use of Chestnut in Traditional and Innovative Food Products
محورهای موضوعی : ChestnutRaquel P. F. Guiné 1 , Cátia Costa 2 , Sofia G. Florença 3 , Paula M. R. Correia 4
1 - CERNAS Research Centre,Polytechnic Institute of Viseu, 3504-510 Viseu, Portugal
2 - Department of Food Industry, Agrarian School of Viseu, 3500-606 Viseu, Portugal
3 - CERNAS Research Centre,Polytechnic Institute of Viseu, 3504-510 Viseu, Portugal
4 - CERNAS Research Centre,Polytechnic Institute of Viseu, 3504-510 Viseu, Portugal
کلید واژه: Candied chestnut, Chestnut bread, Chestnut drinks, Chestnut flour, Chestnut products, Dried chestnut,
چکیده مقاله :
Chestnuts have been consumed in Portugal for immemorial times. These fruits are highly appreciated, not only due to their organoleptic characteristics but also due to their nutritional and functional values. For the nutrients to be more accessible and for the chestnuts to have better flavour and digestibility, it is necessary to heat, cook or roast them, for example. Chestnuts are a very versatile food, in terms of preparation, and can be cooked, roasted, as an accompaniment to dishes, replacing rice, pasta or potatoes, in the base of soups or the preparation of appetizing desserts and cakes. In Portugal the use of chestnuts to produce differentiated food products is traditional, but also new and innovative products are appearing on the market, either made with chestnuts or even with some residues of their processing, in the context of a circular economy. Examples of traditional usages of chestnut in Portugal include chestnut soup, or roasted chestnuts, which are typically consumed in the colder months of autumn and winter. In what concerns more modern trends, the use of chestnut flour to incorporate into a variety of foods, like bread, cookies or pasta is highlighted. This article explores the value of the chestnut sector in Portugal and the use of these fruits to obtain either traditional or innovative foods, such as bread, biscuits, pasta and beverages.
Akça Y, Yuldaşulu YB, Murad E, Vahdati K (2020) Exploring of walnut genetic resources in kazakhstan and evaluation of promising selections. International Journal of Horticultural Science and Technology. 7(2), 93-102.
Anjos CN, Barros BHS, Silva EIG, Mendes MLM, Messias CMBO (2017) Desenvolvimento e aceitação de pães sem glúten com farinhas de resíduos de abóbora (Cucurbita moschata). Arquivos de Ciências da Saúde. 24(4), 58–62.
Ayvaz H, Temizkan R, Genis HE, Mortas M, Genis DO, Dogan MA, Nazlim BA (2022) Rapid discrimination of Turkish commercial hazelnut (Corylus avellana L.) varieties using Near-Infrared Spectroscopy and chemometrics. Vibrational Spectroscopy. 119(3), 103353.
Baltazar ECS (2015) Otimização de protocolos de micropropagação de Castanea sativa Mill e estudo da tolerância de genótipos de castanheiro à doença da tinta. Universidade de Coimbra, Coimbra, Portugal. pp, 76. 1-49.
Barreira JCM, Ferreira ICFR, Oliveira MBPP, Pereira JA (2008). Antioxidant activities of the
extracts from chestnut flower, leaf, skins and fruit. Food Chemistry. 107(3), 1106–1113.
Borges ARD (2017) Produção de farinha sem glúten: valorização de subprodutos do processo de fabrico de castanha congelada. Escola Superior Agrária de Coimbra, Coimbra, Portugal. pp. 56. 14-39.
Borges O, Gonçalves B, Carvalho JLS, Correia P, Silva AP (2008) Nutritional quality of chestnut (Castanea sativa Mill.) cultivars from Portugal. Food Chemistry. 106(3), 976–984.
Braga NCCO (2014) Valorização de subprodutos de Castanea sativa: casca e ouriço. Universidade do Porto, Porto, Portugal. pp. 73. 11-49.
Brochard M, Correia P, Barroca MJ, Guiné RPF (2021) Development of a New Pasta Product by the Incorporation of Chestnut Flour and Bee Pollen. Applied Sciences. 11(14), 6617.
Brouwer RG, Zuidema PA, Chiriboga-Arroyo F, Guariguata MR, Kettle CJ, Ehrenberg-Azcárate F, Quaedvlieg J, Roca MRG, Corvera-Gomringer R, Quispe FV Jansen M (2021) Establishment success of Brazil nut trees in smallholder Amazon forest restoration depends on site conditions and management. Forest Ecology and Management. 498(1), 119575.
Cabo P, Almeida A (2019) O Setor da Castanha em Portugal. In III Congresso Nacional das Escolas Superiores Agrárias (IIICNESA). Viseu, Portugal, 14-15 November 2019.
Carocho M, Antonio AL, Barros L, Bento A, Botelho ML, Kaluska I, Ferreira ICFR (2012) Comparative effects of gamma and electron beam irradiation on the antioxidant potential of Portuguese chestnuts (Castanea sativa Mill.). Food and Chemical Toxicology. 50(10), 3452–3455.
Cauvin S, Young L (2008) Productos de panaderia: Ciencia, tecnologia e prática (1a Ed.). Editorial Acribia SA, Zaragoza, Spain. pp. 264. 320-350.
Chatrabnous N, Yazdani N, Tavallali V, Vahdati K (2018) Preserving quality of fresh walnuts using plant extracts. LWT - Food Science and Technology. 9 (1), 1–7.
Chen L, Subbiah J, Jones D, Zhao Y, Jung J (2021) Development of effective drying strategy with a combination of radio frequency (RF) and convective hot-air drying for inshell hazelnuts and enhancement of nut quality. Innovative Food Science & Emerging Technologies. 67, 102555.
Chen N, Wang Q, Wang MX, Li N, Briones AV, Cassani L, Prieto MA, Carandang MB, Liu C, Gu CM, Sun JY (2022) Characterization of the physicochemical, thermal and rheological properties of cashew kernel starch. Food Chemistry: X(15), 100432.
Civera A, Galan-Malo P, Segura-Gil I, Mata L, Tobajas AP, Sánchez L, Pérez MD (2022) Development of sandwich ELISA and lateral flow immunoassay to detect almond in processed food. Food Chemistry. 371, 131338.
Coelho MHC, Soares C (2022) Um doce e nutritivo fruto: a castanha na história da alimentação e da gastronomia portuguesas. Coimbra University Press, Coimbra, Portugal. pp. 400, 103-176.
Conneely R, Mahon M (2015) Protected geographical indications: Institutional roles in food systems governance and rural development. Geoforum. 60, 14–21.
Correia P, Leitão A, Costa MLB (2009) The effect of drying temperatures on morphological and chemical properties of dried chestnuts flours. Journal of Food Engineering. 90(3), 325–332.
Costa R, Valdiviesso T, Marum L, Fonseca L, Borges O, Soeito J, Soares FM, Sequeira J, Assunção A, Correia P (2005). Charactferisation of Traditional Portuguese Chestnut Cultivars by Nuclear SSRS. ISHS Acta Horticulturae: III International Chestnut Congress. 693, 437–440.
Costa-Trigo I, Otero-Penedo P, Outeiriño D, Paz A, Domínguez JM (2019) Valorization of chestnut (Castanea sativa) residues: Characterization of different materials and optimization of the acid-hydrolysis of chestnut burrs for the elaboration of culture broths. Waste Management. 87, 472–484.
Cruz BT (2012) Isolamento e caracterização do amido de castanha. Universidade de Trás-os-Montes e Alto Douro, Vila Real, Portugal. pp. 119, 43-9.0
Darfour B, Ofori H, Asare IK (2021) Gamma irradiation and drying method: The effects on kola nut powder. Radiation Physics and Chemistry. 185, 109489.
De Clercq N, Van Coillie E, Horemans B, Duquenne B, Vandekerckhove M, Vlaemynck G, Vlaemynck G, Meulenaer B, Devlieghere F (2017) Thermal humid treatment of walnuts as potential preventive measure against fungal contamination of chocolate confectionery fillings. Food Control. 73, 1144–1148.
De Leijster V, Verburg RW, Santos MJ, Wassen MJ, Martínez-Mena M, Vente J, Verweij PA (2020) Almond farm profitability under agroecological management in south-eastern Spain: Accounting for externalities and opportunity costs. Agricultural Systems. 183, 102878.
De Vasconcelos MCBM, Nunes F, Viguera CG, Bennett RN, Rosa EAS, Ferreira-Cardoso JV (2010) Industrial processing effects on chestnut fruits (Castanea sativa Mill.) 3. Minerals, free sugars, carotenoids and antioxidant vitamins. International Journal of Food Science & Technology. 45(3), 496–505.
Dias M (2014) Avaliação de hábitos de consumo e adequação nutricional de refeições rápidas cuja base é o pão. Escola Superior Agrária de Viseu, Viseu, Portugal. pp, 66. 33-54.
EC (2004) Protection of geographical indications, designations of origin and certificates of specific character for agricultural products and foodstuffs (2nd ed.). European commissio, Brussels. pp. 300. 77-177.
Esposito T, Celano R, Pane C, Piccinell, AL, Sansone F, Picerno P, Zaccardelli M, Aquino RP, Mencherini T (2019) Chestnut (Castanea sativa Miller.) Burs Extracts and Functional Compounds: UHPLC-UV-HRMS Profiling, Antioxidant Activity, and Inhibitory Effects on Phytopathogenic Fungi. Molecules. 24(2), 302.
FAOSTAT (2020) https://www. fao.org /faostat /en/#data/QCL. Accessed 5 February 2022
Feng J, Kong F (2022) Enzyme inhibitory activities of phenolic compounds in pecan and the effect on starch digestion. International Journal of Biological Macromolecules. 220, 117–123.
Fonseca M (2011) Produção de sucedâneos de cereais de pequeno-almoço ricos em compostos bioactivos. ISA - Universidade Técnica de Lisboa, Lisboa, Portugal. pp. 97. 7-15.
Gonzaga M (2015). Desenvolvimento de pão não convencional: Castanha, Bolota e tremoço. Escola Superior Agrária de Viseu, Viseu, Portugal. pp. 81. 15-35.
González-Gómez L, Intrigliolo DS, Rubio-Asensio JS, Buesa I, Ramírez-Cuesta JM (2022) Assessing almond response to irrigation and soil management practices using vegetation indexes time-series and plant water status measurements. Agriculture, Ecosystems & Environment. 339, 108124.
Guiné R, Fernandes R, Correia P (2004) Influência da secagem nas propriedades químicas de castanhas. In XIX Encontro Nacional da Sociedade Portuguesa de Química. Coimbra, Portugal. 15-17.
Guiné RPF (2016) A new insight on the Portuguese traditional sweets as cultural identity: a scientific approach towards evaluation of texture in Castanhas de Ovos de Viseu. In Proceedings of the II International Symposium – Food & Culture. Vila Real de Trás-os-Montes, Portugal.
Guiné RPF (2016) Evaluation of colour and texture of a Portuguese traditional sweet: “egg chestnut.” Journal of International Scientific Publications 4. 160–170.
Guiné RPF, Correia P, Fernandes S, Ramalhosa E (2021) Consumption of Nuts and Similar Dried Foods in Portugal and Level of Knowledge about their Chemical Composition and Health Effects. Journal of Nuts. 12(3), 171–200.
Guiné RPF, Duarte J, Ferreira M, Correia P, Leal M, Rumbak I (2016) Attitudes towards Dietary Fibre on a Multicultural Basis: A Fibre Study Framework. Current Nutrition & Food Science. 12(2), 132–141.
Guiné RPF, Florença SG, Barroca M J, Anjos O (2020) The Link between the Consumer and the Innovations in Food Product Development. Foods. 9(9), 1317.
Guiné RPF, Florença SG, Barroca MJ, Anjos O (2021) The duality of innovation and food development versus purely traditional foods. Trends in Food Science & Technology. 109, 16–24.
Guiné RPF, Valente LP, Ramalhosa ECD (2016) New Foods, New Consumers: Innovation in Food Product Development. Current Nutrition & Food Science. 12(3), 175–189.
Guiné RPF, Fernandes RMC (2006) Analysis of the drying kinetics of chestnuts. Journal of Food Engineering. 76(3), 460–467.
Gulsunoglu-Konuskan Z, Karbancioglu-Guler F, Kilic-Akyilmaz M (2021) Development of a bioprocess for production of ellagic acid from chestnut (Castanea sativa Mill.) waste by fermentation with Aspergillus spp. Food Bioscience. 42, 101058.
Homayouni T, Gholami A, Toudeshki A, Afsah-Hejri L, Ehsani R (2022) Estimation of proper shaking parameters for pistachio trees based on their trunk size. Biosystems Engineering. 216, 121–131.
Husgafvel R, Watkins G, Linkosalmi L, Dahl O (2013) Review of sustainability management initiatives within Finnish forest products industry companies—Translating Eu level steering into proactive initiatives. Resources, Conservation & Recycling. 76(C), 1–11.
INSA (2021) Instituto Nacional de Saúde Dr. Ricardo Jorge. http://www2.insa.pt/sites/INSA/Portugues/Paginas/portalInicio.aspx.
Jin SC, Kim MH, Choi LY, Nam YK, Yang WM (2021) Fat regulatory mechanisms of pine nut oil based on protein interaction network analysis. Phytomedicine. 86, 153557.
Kim K, Baek S, Kim M., Jung JK, Jung C, Lee JH (2022) Efficiency of chemical and organic pesticides for Conogethes punctiferalis (Lepidoptera: Crambidae) in commercial chestnut and walnut fields. Journal of Asia-Pacific Entomology. 25(2), 101897.
Laranjo JCEG, Henriques CAS, Borges AJP (2017) Castanheiro: Estado da Produção. Centro Nacional de Competência dos Frutos Secos, Bragança, Portugal. pp. 149. 1-8.
Lee KH, Lee SK, Lee J, Kim S, Kim SW, Park C, Yoo HY (2022) Energy-efficient glucose recovery from chestnut shell by optimization of NaOH pretreatment at room temperature and application to bioethanol production. Environmental Research. 208, 112710. https://doi.org/10.1016/j.envres.2022.112710
Li R, Sharma AK, Zhu J, Zheng B, Xiao G, Chen L (2022) Nutritional biology of chestnuts: A perspective review. Food Chemistry. 395, 133575.
Lima DS, Egea MB, Cabassa, ICC, Almeida AB, Sousa TL, Lima TM, Loss RA, Volp ACP, Vasconcelos LG, Dall'Oglio EL, Hernandes T, Takeuchi KP (2021) Technological quality and sensory acceptability of nutritive bars produced with Brazil nut and baru almond coproducts. LWT - Food Science and Technology. 137, 110467.
Littardi P, Paciulli M, Carini E, Rinaldi M, Rodolfi M, Chiavaro E (2020) Quality evaluation of chestnut flour addition on fresh pasta. LWT - Food Science and Technology. 126, 109303.
Matos A (2003) O sistema de comercialização de castanha da Terra Fria Transmontana e sua cadeia de valor. UTAD, Vila Real, Portugal. pp. 264, 25-53.
McKay AM, Kerr WL, Dorick JM, Dunn LL (2022) Conditions for optimal shelling, microbial reduction, and kernel quality in pecans. Postharvest Biology and Technology. 191, 111966.
Moreira R, Chenlo F, Torres MD, Rama B (2013) Influence of the chestnuts drying temperature on the rheological properties of their doughs. Food and Bioproducts Processing. 91(1), 7–13.
Munekata PES, Franco D, Trindade MA, Lorenzo JM (2016) Characterization of phenolic composition in chestnut leaves and beer residue by LC-DAD-ESI-MS. LWT - Food Science and Technology. 68, 52–58.
Paciulli M, Rinaldi M, Cavazza A, Ganino T, Rodolfi M, Chiancone B, Chiavaro E (2018) Effect of chestnut flour supplementation on physico-chemical properties and oxidative stability of gluten-free biscuits during storage. LWT - Food Science and Technology. 98, 451–457.
Paciulli M, Rinaldi M, Cirlini M, Scazzina F, Chiavaro E (2016) Chestnut flour addition in commercial gluten-free bread: A shelf-life study. LWT - Food Science and Technology. 70, 88–95.
Paradinas A. Ramade L, Mulot-Greffeuille C, Hamidi R, Thomas M, Toillon J (2022) Phenological growth stages of ‘Barcelona’ hazelnut (Corylus avellana L.) described using an extended BBCH scale. Scientia Horticulturae. 296, 110902.
Paz LI, Januszewska R, Schouteten JJ, Van Impe J (2021) Challenges of pairing chocolates and nuts: Perceptions, interactions and dynamics of contrasting chocolates with nuts. Food Research International. 148, 110620.
Pereira MJP, Castro LFT, Torres-Pereira JMG, Lorenzo SP (1999) Isozyme Polymorphism in Portuguese Chestnut Cultivars. ISHS Acta Horticulturae: II International Chestnut Congress. (494), 283–286.
Pereira SC, Lopes C, Pedroso, JP (2022) Mapping Cashew Orchards in Cantanhez National Park (Guinea-Bissau). Remote Sensing Applications: Society and Environment. 26, 100746.
Pereira-Lorenzo S, Costa RML, Ramos-Cabrer AM, Ribeiro CAM, Silva MFS, Manzano G, Barreneche T (2010) Variation in grafted European chestnut and hybrids by microsatellites reveals two main origins in the Iberian Peninsula. Tree Genetics & Genomes. 6(5), 701–715.
Ribeiro M, Freitas M, Domínguez-Perles R, Barros AIRNA, Ferreira-Cardoso J, Igrejas G (2020) Nutriproteomics survey of sweet chestnut (Castanea sativa Miller) genetic resources in Portugal. Food Bioscience. 36, 100622. https://doi.org/10.1016/j.fbio.2020.100622
Rinaldi M, Paciulli M, Dall’Asta C, Cirlini M, Chiavaro E (2015) Short-term storage evaluation of quality and antioxidant capacity in chestnut-wheat bread. Journal of the Science of Food and Agriculture. 95(1), 59–65.
Rodrigues RB, Lichtenthäler R, Zimmermann BF, Papagiannopoulos M, Fabricius H, Marx F, Maia JGS, Almeida O (2006) Total Oxidant Scavenging Capacity of Euterpe oleracea Mart. (Açaí) Seeds and Identification of Their Polyphenolic Compounds. Journal of Agricultural and Food Chemistry. 54(12), 4162–4167.
Saeedi M, Mirdehghan SH, Nazoori F, Esmaeilizadeh M, Saba MK (2022) Impact of calcium and γ-aminobutyric acid (GABA) on qualitative attributes and shelf life characteristics of fresh in-hull pistachio during cold storage. Postharvest Biology and Technology. 187, 111863.
Sarikhani S, Vahdati K, Ligterink W (2021) Biochemical Properties of Superior Persian Walnut Genotypes Originated from Southwest of Iran. International Journal of Horticultural Science and Technology. 8(1), 13–24.
Shabalala M, Toucher M, Clulow A (2022) The Macadamia bloom – What are the hydrological implications?. Scientia Horticulturae. 292, 110628.
Shuai X, Dai T, Chen M, Liu C, Ruan R, Liu Y, Chen J (2022) Characterization of lipid compositions, minor components and antioxidant capacities in macadamia (Macadamia integrifolia) oil from four major areas in China. Food Bioscience. 50(a), 102009.
Silva AP (2007) Castanha - Um Fruto Saudável. Universidade de Trás-os-Montes e Alto Douro: Vila Real, Portugal. pp. 50. 10-15.
Silva EFR, Santos BRS, Minho LAC, Brandão GC, Silva MJ, Silva MVL, Santos WNL, Santos AMP (2022) Characterization of the chemical composition (mineral, lead and centesimal) in pine nut (Araucaria angustifolia (Bertol.) Kuntze) using exploratory data analysis. Food Chemistry. 369, 130672.
Sirini N, Roldán A, Lucas-González R, Fernández-López J, Viuda-Martos M, Pérez-Álvarez JA., Rosmini MR (2020) Effect of chestnut flour and probiotic microorganism on the functionality of dry-cured meat sausages. LWT - Food Science and Technology. 134, 110197.
Souza AG, Santos LS, Silva ARZ, Passoni CRMS (2014) Propriedades nutricionais da castanha portuguesa (castanea sativa mill) e elaboração de produtos. Cadernos da Escola de Saúde - Curitiba. 2(12), 109–124.
Sun J, Feng X, Lyu C, Zhou S, Liu Z (2022) Effects of different processing methods on the lipid composition of hazelnut oil: A lipidomics analysis. Food Science and Human Wellness. 11(2), 427–435.
Vahdati K (2014) Traditions and folks for walnut growing around the silk road. Acta Horticulturae. 1032, 19–24.
Vales DL (2014) Contributo Para a Valorização e Proteção dos Produtos Tradicionais Açorianos. Dissertação de Mestrado em Tecnologia e Segurança Alimentar. Universidade dos Açores, Ponta Delgada. pp. 237. 50-75.
Vázquez G, González-Alvarez J, Santos J, Freire MS, Antorrena G (2009) Evaluation of potential applications for chestnut (Castanea sativa) shell and eucalyptus (Eucalyptus globulus) bark extracts. Industrial Crops and Products. 29(2), 364–370.
Xu S, Chen H (2022) Vacuum packaging improved inactivation efficacy of moderate dry heat for decontamination of Salmonella on almond kernels. International Journal of Food Microbiology. 379, 109849.
Yan X, Wang Y, Chen Y, Xie J, Yu Q (2021) Effect of roasting duration on the solubility, structure, and IgE-binding capacity of cashew nut proteins. Innovative Food Science & Emerging Technologies. 68, 102635.
Yang Z, Zhang Y, Wu Y, Ouyang J (2022) The role of drying methods in determining the in vitro digestibility of starch in whole chestnut flour. LWT - Food Science and Technology. 153, 112583.
Yuan Y, Kong Q, Zheng Y, Zheng H, Liu Y, Cheng Y, Zhang X, Li Z, You X, Li Y (2022) Co-application of biochar and pyroligneous acid improved peanut production and nutritional quality in a coastal soil. Environmental Technology & Innovation. 28, 102886.
Zhen X, Zhang Q, Sanz-Saez A, Chen CY, Dang PM, Batchelor WD (2022) Simulating drought tolerance of peanut varieties by maintaining photosynthesis under water deficit. Field Crops Research. 287, 108650.
Zhou S, Reddy CK, Du B, Xu B (2021) Pasting, thermal, and functional properties of wheat flour and rice flour formulated with chestnut flour. Bioactive Carbohydrates and Dietary Fibre. 26, 100290