Reciprocal recurrent selection for obtaining water-deficit tolerant maize progeny

Author:

Valadares Fernanda Vargas1ORCID,Almeida Rafael Nunes de1ORCID,Silva Lázaro Renilton Emerick2ORCID,Santos Geferson Rocha1ORCID,Pirovani Raissa Olmo Lacerda2ORCID,Souza Neto José Dias de2ORCID,Berilli Ana Paula Cândido Gabriel2ORCID,Moulin Monique Moreira2ORCID,Vivas Marcelo1ORCID,Berilli Sávio da Silva2ORCID,Pereira Messias Gonzaga1ORCID

Affiliation:

1. Universidade Estadual do Norte Fluminense Darcy Ribeiro (UENF), Brazil

2. Instituto Federal do Espírito Santo (IFES), Brazil

Abstract

ABSTRACT: In view of the need to increase genetic variability to obtain materials with a significant capacity to drought tolerance, this study conducted a cycle of a reciprocal recurrent selection of full-sib families of maize. To this end, 64 full-sib families of maize were evaluated in two environments according to their morpho-agronomic data in a randomized block design with two replicates. It were analyzed of Male flowering (MF); Female flowering (FF); Flowering interval (IF); days for flowering (DF); Plant height (PH); Ear height (EH); number of plants at the Stand (NPS); Number of broken plant (NBrP); Number of bedded plants (NBeP); Strawing (St); Ear length (EL); Ear diameter (ED); Ear number (EN); Prolificacy (Pr); Number of diseased ears (NDE); Number of ears attacked by pests (NEP); Ear weight (EW); Yield (YIE) and Total Chlorophyll Index (TCI). The analysis of variance was performed by the F test at 5% significance level, and also the evaluation of genetic parameters. Regarding morpho-agronomic data, the analysis of variance and the analysis of genetic parameters showed that there was no interaction genotype x environment with regard to the genetic variability among the families under study. Lastly, the final selection of the superior genotypes was made on the basis of the ranking of the 40 most productive families, from which, combined with the molecular data, the 30 most productive, most drought-tolerant, and most genetically diverse ones were selected to compose the next cycle of recurrent maize selection aiming water-stress tolerance.

Publisher

FapUNIFESP (SciELO)

Subject

General Veterinary,Agronomy and Crop Science,Animal Science and Zoology

Reference43 articles.

1. Indirect selection for drought tolerance in maize through agronomic and seeds traits.;ABREU V. M.;Revista Brasileira de Milho e Sorgo,2017

2. Genetic analysis of drought tolerance in adapted x exotic crosses of maize inbred lines under managed stress conditions.;ADEBAYO M. A.;Euphytica,2014

3. Evaluation of Maize Varieties for Grain Yield under Water-restricted Conditions.;ALMEIDA R. N. de;Journal of Experimental Agriculture International,2019

4. Assessment of genetic diversity among maize accessions using inter simple sequence repeats (ISSR) markers.;AMARAL JÚNIOR A. T.;African Journal of Biotechnology,2011

5. Déficit hídrico e produtividade na cultura do milho;BERGAMASCHI H.;Pesquisa Agropecuária Brasileira,2006

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