Biometry and storage of Triangle Palm seeds

Authors

DOI:

https://doi.org/10.1590/2447-536X.v29i2.2618

Keywords:

Dypsis decaryi, longevity, morphometry, ornamental plant

Abstract

Studies on biometry are considered important tools for understanding the germination process of seeds. Moreover, the ex-situ con- servation of palm seeds can cause loss of viability over time. The present study aimed to evaluate the biometric characterization and the effect of storage on the seed germination of the Triangle Palm (Dypsis decaryi), a widely used species in Brazilian landscaping. Two independent studies were conducted: I) biometric characterization of diaspores and II) effect of storage in seed germination. For biometry, a sample of 100 diaspores was used and the length, width and thickness were measured. Biometric data were ana- lyzed using descriptive statistics and correlation analysis. The seeds were packed in transparent plastic bags kept in a refrigerator (20 ± 2 ºC and 80% relative humidity) for storage evaluation. The experimental design was entirely randomized. The treatments consisted of six storage periods (0 - control, 30, 60, 90, 120 and 150 days); there were four repetitions and 25 seeds per plot. The germination percentage and germination speed index were evaluated. Diaspores showed little variation in their biometric charac- teristics, with a mean of 18.39 mm in length, 16.10 mm in width and 15.96 mm in thickness. There was significant and positive correlation between all biometric characteristics. It was observed that germination remained stable until 30 days of storage (90%), with a gradual percentage decrease in later periods. The seed storage allowed to maintain its viability and longevity with the ability to germinate, reaching a germination percentage of 63% after 150 days of storage.

Downloads

Download data is not yet available.

Author Biographies

Antonio Maricélio Borges de Souza, Universidade Estadual Paulista “Júlio de Mesquita Filho”

Departamento de Ciências da Produção Agrícola, Setor de Produção Vegetal, Jaboticabal-SP, Brasil.

Guilherme Rodrigues Vieira, Universidade Estadual Paulista “Júlio de Mesquita Filho”

Departamento de Ciências da Produção Agrícola, Setor de Produção Vegetal, Jaboticabal-SP, Brasil.

André Caturelli Braga, Universidade Estadual Paulista “Júlio de Mesquita Filho”

Departamento de Ciências da Produção Agrícola, Setor de Produção Vegetal, Jaboticabal-SP, Brasil.

Murilo Paes Patrício, Universidade Estadual Paulista “Júlio de Mesquita Filho”

Departamento de Ciências da Produção Agrícola, Setor de Produção Vegetal, Jaboticabal-SP, Brasil.

Thiago Souza Campos, Universidade Estadual Paulista “Júlio de Mesquita Filho”

Departamento de Ciências da Produção Agrícola, Setor de Produção Vegetal, Jaboticabal-SP, Brasil.

Kathia Fernandes Lopes Pivetta, Universidade Estadual Paulista “Júlio de Mesquita Filho”

Departamento de Ciências da Produção Agrícola, Setor de Produção Vegetal, Jaboticabal-SP, Brasil.

References

ARAÚJO, M.E.S.; NEGREIROS, M.L.; SHIBATA, M. Biometria, qualidade fisiológica em diferentes temperaturas, substratos e tempos de armazenamento de sementes de pau preto (Cenostigma tocantinum). Nativa, v.10, n.2, p.219-224, 2022. https://doi.org/10.31413/nativa.v10i2.13112

BARBOSA, J.C.; MALDONADO JÚNIOR, W. AgroEstat- Sistema para Análises Estatísticas de Ensaios Agronômicos. Versão 1.1.0.711. Jaboticabal: Unesp, 2015.

BAO, F.; LUZ, P.B.; SOBRINHO, S.P.; NEVES, L.G. Morfologia do diásporo e da plântula de Dypsis decaryi (Jum.) Beentje & J. Dransf. (Arecaceae). Revista Trópica: Ciências Agrárias e Biológicas, v.4, n.3, p.1-7, 2010. https://doi.org/10.0000/rtcab.v4i3.302

BATISTA, G.S.; MAZZINI-GUEDES, R.B.; PIVETTA, K.F.L.; PRITCHARD, H.W.; MARKS, T. Seed desiccation and salinity tolerance of palm species Carpentaria acuminata, Dypsis decaryi, Phoenix canariensis, and Ptychosperma elegans. Australian Journal of Crop Science, v.10, n.12, p.1630-1634, 2016. https://doi.org/10.21475/ajcs.2016.10.12.PNE204

BELTRAME, R.A.; JASMIM, J.M.; VIEIRA, H.D.; ACHA, A.J. Desiccation, storage and physiological quality of Phoenix roebelenii O’Brien (Arecaceae) seeds. Revista de la Facultad de Ciencias Agrarias UNCuyo, v.54, n1, p.25-34, 2022. https://doi.org/10.48162/rev.39.062

BEZERRA, A.C.; ZUZA, J.F.C.; BARBOSA, L.S.; AZEVEDO, C.F.; ALVO, E.U. Biometrics of mulungu seeds from different mother plants in the semi-arid region of Paraíba, Brazil. Revista Caatinga, v.35, n.2, p.393-401, 2022. http://dx.doi.org/10.1590/1983-21252022v35n215rc

BEWLEY, J.D.; BRADFORD, K.J.; HILHORST, H.W.M.; NONOGAKI, H. Seeds: physiology of development, germination and dormancy. 3ed. New York: Springer, 2013. 392p.

BRASIL. Ministério da Agricultura, Pecuária e Abastecimento. Regras para análise de sementes (RAS). Brasília: MAPA/ACS, 2009. 399p.

CAPILHEIRA, A.F.; CAVALCANTE, J.A.; GADOTTI, G.I.; BEZERRA, B.R.; HORNKE, N.F.; VILLELA, F.A. Storage of soybean seeds: Packaging and modified atmosphere technology. Revista Brasileira de Engenharia Agrícola e Ambiental, v.23, p.876-882, 2019. https://doi.org/10.1590/1807-1929/agriambi.v23n11p876-882

CARVALHO, N.M.; NAKAGAWA, J. Sementes: Ciência, tecnologia e produção. 5ed. Campinas: FUNEP, 2012. 590p.

FERRAZ, P.A.; FERREIRA, S.A.N.; FERREIRA, E.J.L.; TICONA-BENAVENTE, C.A.; CARVALHO, J.C. Genetic variability among jarina palm (Phytelephas macrocarpa Ruíz & Pavón) progenies based on seed, germination and seedling characteristics. Journal of Seed Science, v.43, e202143037, 2021. http://dx.doi.org/10.1590/2317-1545v43251724

FERREIRA, M.F.; BAZZO, J.H.B. Tipos de embalagens e ambientes de armazenamento no potencial fisiológico de sementes de soja. Revista Terra & Cultura, v.36, n.70, p.157-172, 2020.

GARRETAS, B.D.; MARFIL, A. A. La colección de palmeras del Parque de Málaga. Boletín de la Academia Malagueña de Ciencias, n.22, p.63-67, 2020.

LONE, A.B.; BELTRAME, A.B.; MARIGUELE, K.H. Métodos de armazenamento de sementes de palmeira real-australiana (Archontophoenix alexandrae). Revista Técnico-Científica, n.24, p.1-8, 2020.

LORENZI, H.; SOUZA, H.M.; CERQUEIRA, L.S.C.;MEDEIROS-COSTA, J.T.; BEHR, N.V. Palmeiras no Brasil: nativas e exóticas. Nova Odessa: Plantarum, 2004. 303p.

LUZ, P.B.; PIMENTA, R.S.; PIZZETA, P.U.C.; CASTRO, A.; PIVETTA, K.F.L. Germinação de sementes de Dypsis decaryi (Jum.) Beentje & J. Dransf. (Arecaceae). Ciência e Agrotecnologia, v.32, n.5, p.1461-1466, 2008. https://doi.org/10.1590/S1413-70542008000500016

MAGUIRE, J.D. Speed of germination-aid in selection and evaluation for seedling emergence and vigor. Crop Science, v.2, n.2, p.176-177, 1962. https://doi.org/10.2135/cropsci1962.0011183X000200020033x

MARCOS FILHO, J. Fisiologia de sementes de plantas cultivadas. 2ed. Piracicaba: FEALQ, 2015. 660p.

MEEROW, A.W.; BROSCHAT, T.K. Palm seed germination. Gainesville: UF/IFAS Extension, 2015. (Environmental Horticulture Department, UF/IFAS Extension. BUL274).

NEVES, B.R.; PENHA, C.B.N.; AMARAL, M.C.A.; CARDOSO, A.D.; SÃO JOSÉ, A.R. Eficácia do teste de flutuação em água na determinação da viabilidade de sementes de pupunha. Scientia Vitae, v.8, n.26, p.25-33, 2019.

PINHEIRO, R.M.; FERREIRA, E.J.L. Caracterização morfométrica de frutos e sementes de Geonoma maxima subsp. chelidonura (Spruce) A. J. Henderson (Arecaceae). Revista Biociências, v.24, n.1, p.38-47, 2018.

RATAJCZAK, E.; MAŁECKA, A.; CIERESZKO, I.; STASZAK, A. Mitochondria are important determinants of the aging of seeds. International Journal of Molecular Sciences, v.20, n.7, p.1568, 2019. https://doi.org/10.3390/ijms20071568

SANTOS-MOURA, S.S.; GONÇALVES, E.P.; MOURA, M.F.; VIANA, J.S.; LIMA, A.A.; MELO, L.D.F.A. Caracterização biométrica de frutos, diásporos e sementes de Syagrus coronata (Mart.) Becc. Diversitas Journal, v.4, n.3, p.701-716, 2019. http://dx.doi.org/10.17648/diversitas-journal-v4i3.833

SERPA, R.L.P.; MORAIS, I.L.; SANTOS, A.B.S.; COSTA, R.R.G.F.; NASCIMENTO, A.R.T. Biometria de infrutescências, frutos e sementes de Mauritia flexuosa L. f. (Arecaceae) em veredas do sul goiano. Research, Society and Development, v.11, n.8, e53311831458, 2022. http://dx.doi.org/10.33448/rsd-v11i8.31458

SILVA, M.A.D.; BARBOZA, V.R.S.; SILVA, J.N.; GONÇALVES, E.P.; VIANA, J.S. Physiological potential of stored Schinopsis brasiliensis Engler diaspores. Revista Ciência Agronômica, v.53, e20207649, 2022. https://doi.org/10.5935/1806-6690.20220038

SOARES, V.C.; DAIBES, L.F.; DAMASCENO-JUNIOR, G.A.; LIMA, L.B. Water immersion and one- year storage influence the germination of the pyrenes of Copernicia alba Morong, a palm tree from a neotropical wetland. Hoehnea, v.49, e782021, 2022. http://dx.doi.org/10.1590/2236-8906-78-2021

SOLBERG, S.Ø.; YNDGAARD, F.; ANDERASEN, C.; BOTHMER, R.V.; LOSKUTOV, I.G.; ASDAL, Å. Long-term storage and longevity of orthodox seeds: A systematic review. Frontiers in Plant Science, v.11, p.1-14, 2020. https://doi.org/10.3389/fpls.2020.01007

SOUZA, A.M.B.; FERREIRA, K.B.; PIVETTA, K.F.L.; FERRAZ, M.V. Diaspores biometry, temperatures and light regime on seed germination of Ptychosperma macarthurii (Arecaceae). Comunicata Scientiae, v.13, e3523, 2022. https://doi.org/10.14295/CS.v13.3523

STRECZYNSKI, R.; CLARK, H.; WHELEHAN, L.M.; SZE-TIENG, A.; HARDSTAFF, L.K.; FUNNEKOTTER, B.; BUNN, E.; OFFORD, C.A.; SOMMERVILLE, K.D.; MANCERA R.L. Current issues in plant cryopreservation and importance for ex situ conservation of threatened Australian native species. Australian Journal of Botany, v.67, p.1 15, 2019. https://doi.org/10.1071/BT18147

ULLMANN, R.; RESENDE, O.; RODRIGUES, G.B.; CHAVES, T.H.; OLIVEIRA, D.E.C. Qualidade fisiológica das sementes de sorgo sacarino submetidas à secagem e ao armazenamento. Revista Engenharia na Agricultura, v.26, n.4, p.313-321, 2018. https://doi.org/10.13083/reveng.v26i4.960

WALTERS, C. Orthodoxy, recalcitrance and in-between: Describing variation in seed storage characteristics using threshold responses to water loss. Planta, v.242, p.397- 406, 2015. https://doi.org/10.1007/s00425-015-2312-6

ZHANG, K.; ZHANG, Y.; SUN, J.; MENG, J.; TAO, J. Deterioration of orthodox seeds during ageing: Influencing factors, physiological alterations and the role of reactive oxygen species. Plant Physiology and Biochemistry, v.158, p.475-485, 2021. https://doi.org/10.1016/j.plaphy.2020.11.031

ZUFFO, A.M.; BUSCH, A.; STEINER, F.; ALVES, C.Z.; ALCÂNTARA NETO, F.; SANTOS, M.A.; NOGUEIRA, G.A.; FONSECA, W.L.; OLIVEIRA, A.M.; SOUSA, T.O.; SANTOS, A.S. Biometric characteristics of fruits, seeds and plants of’ Hancornia speciosa Gomes. (Apocynaceae). Australian Journal of Crop Science, v.13, n.4, p.622- 627, 2019. https://doi.org/10.21475/ajcs.19.13.04.p1651

Downloads

Published

2023-06-12

Issue

Section

Articles