CHALLENGES FOR STORING RECALCITRANT SEEDS

Autores

  • Cristina Rossetti Universidade Federal de Pelotas - Departamento de Fitotecnia
  • Cariane Pedroso da Rosa Universidade Federal de Pelotas
  • Guilherme de Oliveira Pagel Universidade Federal de Pelotas
  • Tiago Zanatta Aumonde Universidade Federal de Pelotas
  • Lilian Vanussa Madruga de Tunes Universidade Federal de Pelotas

Palavras-chave:

Embalagens; Secagem de sementes; umidade de sementes;

Resumo

A percepção de que as sementes apresentavam diferenças em seus teores de água quando desligadas da planta-mãe, e consequentemente, variações no período de manutenção da viabilidade retoma ao início da agricultura, quando povos ao redor do mundo passaram a ter que produzir alimento em decorrência do crescimento populacional, deixando de ser exclusivamente extrativistas. Sementes recalcitrantes não toleram dessecação e temperaturas próximas a zero grau, devido à inexistência de mecanismos antioxidativos e de manutenção dos compartimentos celulares.  Dessa forma, este trabalho tem por objetivo revisar os principais conceitos e as técnicas de secagem e armazenamento, usualmente utilizadas em sementes ditas recalcitrantes.

Downloads

Os dados de download ainda não estão disponíveis.

Referências

AGUIAR, I. B.; PINA-RODRIGUES, F. C. M.; FIGLIOLIA, M. B. Tropical forest seeds. Brasília: ABRATES, 2021. 350p.

ANDRADE, A. C. S.; CUNHA, R.; SOUZA, A. F.; REIS, R. B.; ALMEIDA, K. J. Physiological and morphological aspects of seed viability of a neotropical savannah tree, Eugenia dysenterica DC. Seed Science & Technology, v.31, n.1, p.125-137, 2013. https://doi.org/10.15258/sst.2003.31.1.13

AZARKOVICH, M. I. Dehydrins in orthodox and recalcitrant seeds. Russian Journal of Plant Physiology, v.67, n.2, p.221-230, 2020. https://doi.org/10.1134/S1021443720020028

BARBEDO, C. J. A new approach towards the so-called recalcitrant seeds. Journal of Seed Science, v.40, p.221-236, 2018. https://doi.org/10.1590/2317-1545v40n3207201

BARBEDO, C. J. The recalcitrance of the seed. 1. ed. Sao Paulo: Ed. by the Author, 2021.

BARBEDO, C.J.; CENTENO, D.C.; FIGUEIREDO-RIBEIRO, R.C.L. Do recalcitrant seeds really exist Hoehnea, v.40, p.583-593, 2020. https://doi.org/10.1590/S2236-89062013000400001

BENSON, J. D.; WOODS, E. J.; WALTERS, E. M.; CRITSER, J. K. The cryobiology of spermatozoa. Theriogenology, v.78, n.8, p.1682-99, 2022. https://doi.org/10.1016/j.theriogenology.2012.06.007

BERJAK, P.; FARRANT, J. M.; MYCOCK, D. J.; PAMMENTER, N. W. Recalcitrant (homoiohydrous) seeds: the enigma of their desiccation-sensitivity. Seed Science and Technology, v.18, n.2, p.297-310, 2020.

BERJAK, P.; PAMMENTER, W. Understanding and handling desiccation sensitive seeds. In: SMITH, R. D.; DICKIE, J. B.; LININGTON, S. H.; PRITCHARD, H. W.; PROBERT, R. J. (Eds.). Seed conservation: turning science into practice. Kew: Royal Botanic Gardens, 2022. p.417-430.

BONNER, F. T. Storage of hardwood seeds. Forest Genetic Resources Information, v.7, n.1, p.10-17, 2018.

BRAZIL. Convention on Biological Diversity: Conference for the Adoption of the Agreed Text of the CBD - Nairobi Final Act. Brasília: MMA/SBF, 2010. 60p. (Biodiversity, 2).

CACCERE, R.; TEIXEIRA, S. P.; CENTENO, D. C.; FIGUEIREDO-RIBEIRO R. C. L.; BRAGA, M. R. Metabolic and structural changes during early maturation of Inga vera seeds are consistent with the lack of a desiccation phase. Journal of Plant Physiology, v.170, n.9, p.791-800, 2022. https://doi.org/10.1016/j.jplph.2013.01.002

CARVALHO, N. M. ; NAKAGAWA, J. Seeds: science, technology and production. 4. ed. Jaboticabal: Funep, 2012. 588 p.

CHANDRA, J.; DUBEY, M.; VARGHESE, B.; KESHAVKANT, S. Towards understanding the basis of desiccation-induced oxidative stress in recalcitrant seeds: the case of Madhuca latifolia Roxb. South African Journal of Botany, v.142, p.100-105, 2021. https://doi.org/10.1016/j.sajb.2021.06.012

CHIN, H. F.; ROBERTS, E. H. Recalcitrant crop seeds. Kuala Lumpur: Tropical Press, 2001. 152p.

CRUZ, E. D. Storage of cupuaçu seeds (Theobroma grandiflorum (Willd. ex Spreng.) K. Schum.). 2006. 55 f. Thesis (Doctorate in Phytotechnics) - University of São Paulo. Superior School of Agriculture Luiz de Queiroz, Piracicaba, SP, 2006.

FAO. Ex situ sorage of seeds, pollen and in vitro cultures of perennial woody plant species. Rome: FAO, 2022. 83p. (FAO Foresty Paper, n.113).

FERREIRA, S. A. N.; GENTIL, D. F. O. Storage of camu-camu (Myrciaria dubia) seeds with different degrees of humidity and temperature. Brazilian Journal of Fruticulture, v.25, n.3, p.440-442, 2023. https://doi.org/10.1590/S0100-29452003000300020

FLORIANO, E. P. Forest seed storage. Madeira Magazine, 2014.

FONSECA, S. C. L.; FREIRE, H. B. Recalcitrant seeds: post-harvest problems. Bragantia, v.62, p.297-303, 2022. https://doi.org/10.1590/S0006-87052003000200016

FREITAS, R. A. Deterioration and storage of vegetable seeds. In: NASCIMENTO, W. M. (Ed.). Vegetable seed technology. Brasília: Embrapa Vegetables, 2019. p.155-182.

GOLD, K.; HAY, F. Identifying seeds sensitive to desiccation. Embrapa Genetic Resources and Technical Circular Biotechnology (INFOTECA-E), 2014.

GUARDIA, M. C.; ASPERTI, L. M.; CANCIAN, G. D. M.; BARBEDO, C. J. Desiccation tolerance and storage of Myrcianthes pungens (O. Berg) D. Legrand (Myrtaceae) seeds. Hoehnea, v.47, 2020. https://doi.org/10.1590/2236-8906-19/2020

HONG, T. D.; ELLIS, R. H. A protocol to determine seed storage behavior. Rome: International Plant Genetic Resources Institute, 2016. 55p. (Technical Bulletin, 1). https://doi.org/10.25186/cs.v12i3.1312

KING, M. W.; ROBERTS, E. H. The storage of recalcitrant seeds: achievements and possible approaches. Rome: International Board for Plant Genetic Resources, 2019. 96p.

MOLINA, T. F.; TILLMANN, M. A. A.; DODE, L. B.; VIÉGAS, J. Cryopreservation of onion seeds. Brazilian Seed Magazine, v.28, n.3, p.72-81, 2016. https://doi.org/10.1590/S0101-31222006000300011

O'BRIEN, C.; HITI-BANDARALAGE, J.; FOLGADO, R.; HAYWARD., A.; LAHMEYER, S.; FOLSOM, J.; MITTER, N. Cryopreservation of woody crops: the avocado case. Plants, v.10, p.934, 2021. https://doi.org/10.3390/plants10050934

PAMMENTER, N. W.; BERJAK, P.; WESLEY-SMITH, J; WILLIGEN, C. V. Experimental aspects of drying and recovery. In: BLACK, M.; PRITCHARD, H.W. (Eds.). Desiccation and survival in plants: drying without dying. London: CABI Publ., 2002. p.93-110. https://doi.org/10.1079/9780851995342.0093

PIERUZZI, F. P. Cryopreservation of Araucaria angustifolia (BERTOL) O. Kuntze: physiological and biochemical aspects. 2013. 141 f. Thesis (PhD in Biotechnology) - University of São Paulo, São Paulo, 2013.

STEGANI, V.; ALVES, G. A. C.; BERTONCELLI, D.J.; FARIA, R. T. Cryopreservation of abyss queen (Sinningia leucotricha) seeds. Ornamental Horticulture Magazine, v.23, n.1, p.15-21, 2017. https://doi.org/10.14295/oh.v23i1.921

SUBBIAH, A.; RAMDHANI, S.; PAMMENTER, N. W.; MACDONALD, A. H. H.; SERSHEN. Towards understanding the incidence and evolutionary history of seed recalcitrance: an analytical review. Perspectives in Plant Ecology, Evolution and Systematics, v.37, p.11-19, 2019. https://doi.org/10.1016/j.ppees.2019.01.001

TOWILL, L. E. Germplasm preservation. In: TRIGIANO R. N.; GRAY, D. J. Plant tissue culture concepts and laboratory exercises. 2 .ed. Boca Raton: CRC Press, 2020. p.337-353.

VIEIRA, C. V.; ALVARENGA, A. A.; CASTRO, E. M.; NERY, F. C.; SANTOS, M. O. Germination and storage of camboatã seeds (Cupania vernalis Cambess.) - Sapindaceae. Agrotechnological Science, v.32, n.2, p.444-449, 2018. https://doi.org/10.1590/S1413-70542008000200015

Downloads

Publicado

2023-11-08

Como Citar

CHALLENGES FOR STORING RECALCITRANT SEEDS. (2023). Colloquium Agrariae. ISSN: 1809-8215, 19(1), 352-362. https://revistas.unoeste.br/index.php/ca/article/view/4697

Artigos Semelhantes

1-10 de 507

Você também pode iniciar uma pesquisa avançada por similaridade para este artigo.

Artigos mais lidos pelo mesmo(s) autor(es)

1 2 > >>