Dormancy breaking and germination requirements for threatened Australian papaya (Carica chilensis) seeds.
Bewley, J.D., Bradford, Ok. and Hillhurst, H. Seeds: Physiology of improvement, germination and dormancy (Springer Science & Enterprise Media, 2012).
Google Scholar
Finch-Savage, WE & Leubner-Metzger, G. Seed dormancy and germination management. New vitol. 171501-523 (2006).
Baskin, C.C. and Baskin, J.M Seeds: ecology, biogeography, evolution of dormancy and germination Second Version. (Al-Safir, 2014).
Benech-Arnold, RL, Sánchez, RA, Forcella, F., Kruk, BC & Ghersa, CM Environmental management of dormancy in soil weed seed banks. Discipline crop accuracy. 67105-122 (2000).
Baskin, J.M. & Baskin, C.C. A classification system for seed dormancy. Seed science. Precision. 141-16 (2004).
Jurado, E. & Flores, J. Is seed dormancy beneath environmental management or linked to plant traits? J. Fig. Sci-fi. 16559-564 (2005).
Ortosson, M.M et al. Dormant launch, germination and ex situ conservation of Southern Highlands papaya (Vasconcellia cercifoliaCaricaceae), a relative of untamed crops. Sci-fi. hortec. 263109134 (2020).
Benítez, S.P., Mario, L., Delgado, O.A. & Medina, C.I. Research on germination and dormancy removing in papayawela seeds. Vasconcellia cundinamarcensis y Vasconcelia Godotiana. 100 and expertise. agriculture 14187-197 (2013).
Freitas, S.D.J et al. Strategies of eradicating Sarcotesta in germinating jaracatiá seeds. Pastor tree 3591-96 (2011).
Rodríguez Ríos, R. & Marticorena Garri, A. Catalog of Vascular Crops of Chile. the sample. bot. 751–430 (2018).
MMA. Carica chilensis. (Ministry of the Surroundings, Chile, 2005). https://clasificaciónpecies.mma.gob.cl/wp-content/uploads/2019/10/Carica_chilensis_FINAL.pdf
Squeo, F.A., Arancio, G. & Gutierrez, J.R. Pink Guide of Indigenous Crops and Precedence Websites for Conservation: Coquimbo Area. (La Serena College Press, 2001).
Carvalho, F.A. and Renner, S.S Genetics and genomics of papaya. 81-92 (Springer, 2013).
Salomão, AN & Mundim, RC Germination of papaya seeds in response to drought, publicity to subzero temperatures, and gibberellic acid. hortec. Sci-fi. 35904-906 (2000).
Google Scholar
Ellis, RH, Hong, TD & Roberts, EH Impact of storage temperature and humidity on papaya seed germination. Seed science. Precision. 169-72 (1991).
Shankaralingappa, Y.H., Vasugi, C. & Naik, L.B. Ultradry seed storage – an economical methodology for preserving germplasm and industrial seeds of papaya. Indian c. hortec. 76423-429 (2019).
Urtasun, M. M., Giaminola, E. M. and Viana, M. L. D. Southern Highland Papaya (Vasconcellia cercifolia a. St. Hill: Does the time of fruit ripening and harvest have an effect on seed germination? Journal of Agricultural Engineering Sciences 42 (2019).
Vélez-Mora, DP, González, RA & Zimmermann, MJ Bettering germination and controlling overgrowth and bud formation in Stipulated blood vessels Badillo. Rev. Columb. From biotechnology. 1716-21 (2015).
Chow, Y. J. & Lin, C. H. p-Hydroxybenzoic acid as a serious phenolic germination inhibitor of papaya seeds. Seed science. Technol. 19167-174 (1991).
Google Scholar
Wooden, C.B., Pritchard, H.W. & Amritphale, D. Drought-induced dormancy in papaya (Obtain papaya L.) Seeds are softened by warmth shock. Seed science. Precision. 10135-145 (2000).
Carey, ZA Impact of storage temperature and seed moisture contents on papaya (Obtain papaya l.) Seed vitality and germination. J. Sustainability. Sci-fi. administration. 887-92 (2013).
Google Scholar
Carrasco, B., Garcia-Gonzales, R., Diaz, P., Avila, P., Caceres, P., Lobos, G. A., Silva, H. & Caligari, P. D. Genetic and morphological characterization of the endangered Australian papaya. Vasconcellia chilensis (Blanche. Ex. A. DC.) Solms (2014).
Hechenleitner, V.P., Gardner, F.M., Thomas, P.I., Echeverria, C., Escobar, B., Brownless, P., & Martinez A.C. Threatened vegetation of central and southern Chile. Distribution, preservation and unfold. Southern College of Chile, Royal Botanic Gardens of Edinburgh, Valdivia, Chile, p. 188 (2005).
Leon Lobos, P. et al. Lack of enough seed provide is a serious bottleneck to efficient ecosystem restoration in Chile: a pleasant modification of Bannister et al. (2018). Restoration. Ecole. 28277-281 (2020).
Foley, M. E. Seed dormancy: an replace in terminology, physiological genetics, and quantitative trait loci regulating germination viability. Natural sciences. 49305-317 (2001).
Schwining, S. & Sala, O. E. Hierarchy of responses to useful resource pulses in arid and semi-arid ecosystems. Ecology 141211-220 (2004).
Noy-Meir, I. Desert Ecosystems: Environments and Producers. Anu. Pastor Ekol. the system. 425-51 (1973).
Kegel, J. Seed improvement and germination Vol. 41 (CRC Press, 1995).
Google Scholar
Wolk, WD, Dillon, PF, Copeland, LF & Dilley, DR Dynamics of imbibition in Phaseolus vulgaris L. Relating to the preliminary moisture content material of the seeds. Plant physiology. 89805-810 (1989).
Roberts, E. & Ellis, R. Water and seed survival. that. bot. 6339-39 (1989).
Skubacz, A. & Daszkowska-Golec, A. Seed dormancy: The advanced course of regulated by abscisic acid, gibberellin, and different plant hormones that makes seed germination work. Plant hormones: signaling mechanisms and crosstalk in plant improvement and stress responses. Rijeka Croatia: within the discipline of expertisepp. 77-100 (2017).
Finkelstein, R., Reeves, W., Ariizumi, T. & Steber, C. Molecular features of seed dormancy. Anu. Rev. Plant Buell. 59387-415 (2008).
Kucera, B., Cohn, M.A. & Leubner-Metzger, G. Plant hormone interactions throughout seed dormancy launch and germination. Seed science. Precision. 15281-307 (2005).
Carsen, C. And Lacca, E. that Plant Development Supplies 1985: Proceedings of the Twelfth Worldwide Convention on Plant Development Supplies, held in Heidelberg, 26-31 August315-323 (Springer, 1985).
Chaisson, P. et al. Useful resource pulses, species interactions, and variety upkeep in arid and semi-arid environments. Ecology 141236-253 (2004).
Wagman, Ok. et al. Distribution of seed dormancy: explanatory environmental components. that. bot. 1101205-1219 (2012).
Kopitzky, Ok. Caricaceae. Flowering vegetation · Dicots: Malvales, Capparales and non-betaline Caryophyllalespp. 57-61 (2003).
Rodriguez, S. et al. Evaluation of the impact of scarification course of on papaya (Obtain papaya Lin.) Seed germination. in Seed dormancy and germination (eds. Korneev, M. et al.) (IntechOpen, 2019).
Google Scholar
Thomas, S.G., Rieu, I. & Steber, C.M. Gibberellin metabolism and signaling. life. Hurm. 72289-338 (2005).
Anjanawe, S., Kanpure, R., Kachouli, B. & Mandloi, D. Impact of plant progress regulators and progress media on seed germination and progress vigor of papaya. that. Plant soil accuracy. 1531-34 (2013).
Hay, FR & Probert, RJ Advances in seed conservation of untamed plant species: a overview of current analysis. save. physiological. 1030 (2013).
Broadhurst, LM, Jones, TA, Smith, FS, North, TOM & Guja, L. Maximizing seed assets for restoration in an unsure future. Organic sciences 6673-79 (2016).
Sewell, A., van der Esch, S. & Lowenhardt, H. Aims and obligations of the restoration contract (PBL Dutch Environmental Evaluation Company, 2020).
Google Scholar
Lubert, F. and Pliskov, P. Abstract of the bioclimate and vegetation of Chile (College Publications, 2006).
Google Scholar
ISTA. (Worldwide Seed Testing Affiliation, Passersdorf, Switzerland).
Thierno, T. M. (New York, NY, USA, 2023).
Fox, J. & Weisberg, S. Cox proportional hazards regression for survival information. The R and S-PLUS Companion to Utilized Regression (2002).
R Basis for Statistical Computing. R: A language and surroundings for statistical computing (AR Basis for Statistical Computing, 2022).
Google Scholar