Seed quality of reciprocal maize single crosses and their parental inbred lines
Author:
Djordjevic-Melnik Olivera1ORCID, Bozinovic Sofija1ORCID, Vukadinovic Radmila2, Milivojevic Marija2ORCID, Petrovic Tanja2ORCID, Zivanovic Tomislav3ORCID, Vancetovic Jelena1ORCID
Affiliation:
1. Breeding department, Maize Research Institute Zemun Polje, Zemun Polje - Belgrade, Republic of Serbia 2. ISTA attested Seed testing laboratory, Maize Research Institute Zemun Polje, Zemun Polje - Belgrade, Republic of Serbia 3. Faculty of Agriculture, University of Belgrade
Abstract
Five direct and reciprocal early hybrids, five direct and reciprocal late
hybrids and a total of their 12 parental inbred lines were used in order to
test reciprocal effects among hybrids in early germination phase and seed
quality of their parental inbred lines. Five hybrids were of early maturity
FAO 300-400 group, and five of late maturity FAO 500-600 group. In the early
group one line of Lancaster origin (L1) was in common, and in direct crosses
used as male parent, while in reciprocal crosses as female parent. The same
case was with late hybrids where another Lancaster line (L2) was in common.
In 2015 and 2016 all the material was multiplied in hand pollination and
after six months of storage three tests according to ISTA standards were
performed: standard germination test (SGT), cold-test (CT) and vigor radicle
test (RE). According to the Analysis of variance, a strong reciprocal effect
was found among early hybrids for four out of five parameters in RE and SGT,
while it was found only for RE in late hybrids. However, in CT none of the
parameters had significant reciprocal effect. Two tested Lancaster inbreds
were superior in the hybrids over non-Lancaster lines when used as maternal
components, while as lines per se they did not display such superiority.
Mid-parent heterosis (MPH) ranged from -62.32% to 211.11% in RE test, with
an average of 44.26%; from -10.15% to 17.93% in SGT test, with an average of
6.27%, and from -5.31% to 4.49% in CT, with an average of 0.64%. Significant
differences of MPH were found for nine pairs of reciprocal hybrids for RE,
three pairs for SGT and seven pairs for CT. This shows that reciprocal
differences in MPH were higher as the applied level of stress during early
seed growth raised. All the results showed very complicated mode of
inheritance of tested traits in the early developmental stages of young
plants, including the phenomenon of heterosis which is expressed already at
the germination stage.
Funder
Ministry of Education, Science and Technological Development of the Republic of Serbia
Publisher
National Library of Serbia
Subject
Plant Science,Genetics
Reference34 articles.
1. ABEBE, B., W.M., ALI, A.T., CHERE (2020): Heterosis and character association of mid altitude adapted quality protein maize (Zea mays L.) hybrids at Bako, Western Ethiopia. Open J. Plant Sci., 5,1: 13-25. 2. BARATA, N.M., C., SCAPIM, T., GUEDES, V., JANEIRO (2019): A new partial diallel model adapted to analyze reciprocal effects in grain yield of maize. CBAB, 19,1: 22-30. 3. BONELLI, L.E., J.P., MONZONB, A., CERRUDOA, R,H., RIZZALLI, F.H., ANDRADEA (2016): Maize grain yield components and source-sink relationship as affected by the delay in sowing date. Field Crop. Res., 198: 215-225. 4. BOŽINOVIĆ, S., S., PRODANOVIĆ, J., VANČETOVIĆ, A., NIKOLIĆ, D., RISTIĆ, M., KOSTADINOVIĆ, D., IGNJATOVIĆ-MICIĆ (2015): Individual and combined (Plus-hybrid) effect of cytoplasmic male sterility and xenia on maize grain yield. Chil. J. Agr. Res., 75, 2: 160-167. 5. BULANT, C., A., GALLAIS, E., MATTHYS-ROCHON, J.L., PRIOUL (2000): Xenia effects in maize with normal endosperm: II. Kernel growth and enzyme activities during grain filling. Crop Sci., 40.1: 182-189.
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