Morpho-agronomic parameters, chemical composition and genetic divergence among Manihot sp. access

Authors

DOI:

https://doi.org/10.33448/rsd-v9i7.4864

Keywords:

Manihot sp.; Morphology; Nutritional value.

Abstract

The objective of the present study was to evaluate the morpho-agronomic parameters, chemical composition and genetic divergence among Manihot sp. access collected in the Curimataú and Cariri micro regions of the State of Paraíba - Brazil. The experiment was conducted in a completely randomized design with 10 access and 8 replicates. Morpho-agronomic characterization was evaluated through 16 agronomic traits and 12 morphological traits. For the chemical evaluation, 11 traits were discriminated. According to the results, access 2 (Monteiro-PB) was considered a tall plant, with larger canopy area with smaller leaves. The access are cylindrical plants with dark green apical leaf and obovate-lanceolate central lobe, straight or zig zag growth, green vein and with the presence of five lobes and terminal branches in the green plants. The branching levels range from 1 to 4, upward or horizontal petiole and reddish green petiole color. The stipules are short and the sinuosity of leaf lobe is smooth. From the chemical variables evaluated in the access of Manihot, the ones that contributed the most to distinguish genotypes were the content of neutral detergent fiber, non-fiber carbohydrates and total carbohydrates. The morpho-agronomic traits together with the chemical composition data serve as a parameter to indicate the possible access to be used in the forage processing, with better nutritional value.

References

Aoac. (2016). Association of Official Analytical Chemists. Official methods of analysis of AOAC International. 20th, Ed., Latimer Jr, GW. Washington (D.C.). 3100 p.

Araújo Filho JT, Paes RA, Amorim PL, Comassetto FF & Silva SC. (2013). Características morfológicas e produtivas da maniçoba cultivada sob lâminas hídricas e doses de nitrogênio. Revista Brasileira de Saúde e Produção Animal, 14 (4), 609-23.

Ayetigbo O, Latif S, Abass, A & Müller J. (2018). Comparing characteristics of root, flour and starch of biofortified yellow-flesh and white-flesh cassava variants, and sustainability considerations: A review. Sustainability, 10 (9), 1-32.

Carmona PAO, Peixoto JR, Amaro GB & Mendonça MA. (2015). Divergência genética entre acessos de batata-doce utilizando descritores morfoagronômicos das raízes. Horticultura Brasileira, 33 (2), 241-250.

Costa NL, Monteiro ALG, Silva ALP, Moraes A, Giostri AF, Stivari TSS, Gilaverte S, Baldissera TC & Pin EA. (2015). Considerações sobre a degradação da fibra em forragens tropicais associada com suplementos energéticos ou nitrogenados. Archivos de Zootecnia, 64 (R), 31-41.

Derso C & Mahamud A. (2018). Study on morphological characters of four cassava (Manihot esculenta Crantz) varieties as cultivated in Fafen District, Ethiopian Somali regional state. Asian Journal of Biotechnology and Bioresource Technology, 4 (1), 1-13.

Fioreze SL, Lara-Fioreze ACC, Pivetta LG, Rodrigues JD & Zanotto MD. (2018). Influence of the limitation of axillary bud growth on grain and oil yield of castor bean hybrids. Revista Ceres, 65 (2), 127-134.

Fukuda WMG, Guevara CL, Kawuki R & Ferguson ME. (2010). Selected morphological and agronomic descriptors for the characterization of cassava. International Institute of Tropical Agriculture (IITA), Ibadan, Nigeria. 19 p.

Hall MB. (2000). Calculation of non-structural carbohydrate content of feeds that contain non-protein nitrogen. Gainesville: University of Florida, (Bulletin 339). 25 p.

Haworth M, Belcher CM, Killi D, Dewhirst RA, Materassi A, Raschi A & Centritto M. (2018). Impaired photosynthesis and increased leaf construction costs may induce foral stress during episodes of global warming over macro evolutionary timescales. Scientific Reports, 8 (6206), 1-14.

Machado LC, Oliveira VC, Paraventi MD, Cardoso RNR, Martins DS & Ambrósio CE. (2016). Maintenance of brazilian biodiversity by germplasm bank. Pesquisa Veterinária Brasileira, 36 (1), 62-66.

Marowa P, Ding A & Kong Y. (2016). Expansins: Roles in plant growth and potential applications in crop improvement. Plant Cell Reports, 35 (1), 949–965.

Medina CC., Neves CSVJ, Aita C, Bordin I, Preti E, Zaccheo PVC, Aguiar RS & Urquiaga S. (2013). Aporte de matéria seca por raízes e parte aérea de plantas de cobertura de verão. Semina: Ciências Agrárias, 34 (2), 675-682.

Mendonça Júnior AF, Braga AP, Campos MCC & Andrade RB. (2008). Avaliação da composição química, consumo voluntario e digestibilidade in vivo de dietas com diferentes níveis de feno de maniçoba (Manihot glaziovii Muell. Arg.), fornecidas a ovinos. Revista Biológica e Ciências da Terra, 8 (1), 32 – 40.

Santos HG, Jacomine PKT, Anjos LHC, Oliveira VA, Lumbreras JF, Coelho MR, Almeida JA, Araújo Filho JC, Oliveira JB, Cunha TJF. (2018). Sistema brasileiro de classificação de solos. 5th, Ed. Embrapa. Brasília. 353 p.

Silva DJ & Queiroz AC. (2006). Análise de alimentos: métodos químicos e biológicos. 3th. Ed. UFV. Viçosa. 235 p.

Singh D. (1981). The relative importance of characters affecting genetic divergence. Indian Journal of Gene and Plant Breeding, 41 (2), 237-245.

Sniffen CJ, O'Connor JD, Van Soest PJ, Fox DG & Russell JB. (1992). A net carbohydrate and optimal protein system for evaluating cattle diets. II. Carbohydrate and protein availability. Journal of Animal Science, 70 (11), 3562-3577.

Slavov G, Allison G & Bosch M. (2013). Advances in the genetic dissection of plant cell walls: Tools and resources available in Miscanthus. Frontiers in Plant Science, 4 (4), 1-21.

Van Soest PJ. (1994). Nutritional ecology of the ruminant. 2nd. Ed. Cornell University Press. Ithaca, 476p.

Downloads

Published

09/06/2020

How to Cite

CAMPOS, F. S.; GOIS, G. C.; RÊGO, M. M. do; SILVA, A. P. G. da; SILVA, D. S. da; ANDRADE, A. P. de; RÊGO, E. R. do; SANTOS, E. M.; MAGALHÃES, A. L. R. Morpho-agronomic parameters, chemical composition and genetic divergence among Manihot sp. access. Research, Society and Development, [S. l.], v. 9, n. 7, p. e748974864, 2020. DOI: 10.33448/rsd-v9i7.4864. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/4864. Acesso em: 20 apr. 2024.

Issue

Section

Agrarian and Biological Sciences