7 CONCLUSIONS
In this paper, we present a robust well performing
system and innovative parameterization for
automatic supervised identification of Pejibaye palm
RAPD markers, using a NN-MLP as classifier,
obtaining a success rate of 100%.
We have verified that the use of that classifier
offers better guaranties with the reduction feature
and good load times for training mode. Besides, this
work presents a great advantage, because in all
experiments for test mode, it is considered a real
time application (> 0.1 millisecond).
ACKNOWLEDGEMENTS
This work has been in part supported by “Programa
José Castillejo 2008” from Spanish Government
under the grant JC2008-00398; by the University of
Vic under de grant R0904; by private funds from
Spanish Company Telefónica, under “Cátedra
Teléfonica-ULPGC 2009”; and by funds from
Research Action from Excellent Networks on
Biomedicine and Environment belonging to
ULPGC.
REFERENCES
Henderson, A., 2000. Bactris (Palmae). Flora Neotropica
Monograph 79, pp: 1-181.
Mora-Urpí, J., Arroyo. C., 1996, Sobre origen y diversidad
en pejibaye. Serie Técnica Pejibaye (Guilielma).
Boletín Informativo. Editorial de la Universidad de
Costa Rica. 5(1): 18-25.
Mora-Urpí, J., Clement C. and Patiño. V., 1993.
Diversidad Genética en Pejibaye: I. Razas e Híbridos.
IV Congreso Internacional sobre Biología, Agronomía
e Industrialización del Pijuayo. Universidad de Costa
Rica. p. 11-20.
Dellaporta, S.L., Wood, J., Hick, J.B., 1983. Plant DNA
minipreparation. Version II: Plant Mol. Biol. Rep. 1,
pp 19-21.
Ferrer, M., Eguiarte, L.E., Montana, C., 2004. Genetic
structure and outcrossing rates in Flourensia cernua
(Asteraceae) growing at different densities in the
South-western Chihuahuan Desert. Annals of Botany
94, pp 419–426.
Mattos, L., 1992. Diferenciación Taxonómica de Diez
Razas de Pejibaye Cultivado (Bactris(Guilielma)
Gasipaes Kunth) y su relación con otras Especies de
Bactris. Magister Scientiae, Universidad de Costa
Rica. pp 197.
Porebski, S., Grant, L., Baun, B., 1997. Modification of a
CTAB DNA extraction protocol for plants containing
high polysaccharide and polyphenol components.
Plant Molecular Biology Reporter 15, pp: 8-15.
Ravishankar, K. V., Anand, L., Dinesh M.R., 2000.
Assessment of genetic relatedness among mango
cultivars of India using RAPD markers. Journal of
Horticultural Sci. & Biotechnology, 75, pp 198-201.
Clement, C.R., Aguiar, J., Arkcoll, D.B., Firmino, J.,
Leandro, R., 1989. Pupunha brava (Bactris
dahlgreniana Glassman): progenitora da pupunha
(Bactris gasipaes H.B.K.). Boletim do Museu
Paraense Emilio Goeldi, Botánica, 5(1) pp 39-55.
De la Torre, F., 2008. A Least-Squares Unified View of
PCA, LDA, CCA and Spectral Graph Methods. Tech.
report CMU-RI-TR-08-29, Robotics Institute,
Carnegie Mellon University, May.
Jutten, C. Herault, J., 1991. Blind separation of sources,
Part 1: an adaptive algorithm based on neuromimetic
architecture”, Signal Processing (Elsevier), Vol. 24 ,
Issue 1.
Hyvärinen, A., Karhunen, J., Oja, E., Independent
Component Analysis, New York, USA: John Wiley &
Sons, 2001
Jolliffe I.T. 2002. Principal Component Analysis, Series:
Springer Series in Statistics, 2nd ed., Springer, NY.
Sanchez-Poblador, V. Monte Moreno, E., Solé-Casals, J.,
2004. ICA as a preprocessing technique for
Classification, ICA 2004, Granada, Spain,. Lecture
Notes in Computer Science, Springer-Verlag Volume
3195/2004.
Cardoso, J. F., 1999. High-Order Contrasts for
Independent Component Analysis, Neural
Computation, 11(1):157--192,
Bishop, C.M., 1995. Neural Networks for Pattern
Recognition,
Oxford University Press.
Hush, D.R., Horne, B.G., 1993. Progress in supervised
neural networks”, IEEE Signal Processing Magazine,
10 (1), pp. 8-39.
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