Author:
Voltas J.,Romagosa I.,Lafarga A.,Armesto A. P.,Sombrero A.,Araus J. L.
Abstract
Carbon isotope discrimination (Δ) has been found to be either positively
or negatively related to grain yield of small grain cereals when grown in
contrasting environments. In order to clarify a possible association between
grain yield of barley (Hordeum vulgare L.) and Δ
of mature kernels, five 6-rowed and five 2-rowed barley cultivars were
evaluated in 22 rainfed environments of northern Mediterranean Spain. Analyses
of variance suggested that the genotypic Δ values were more consistent
across environments than the genotypic yields. Genotype×environment
(G×E) interaction for grain yield was further explored by fitting an
AMMI (additive main effects and multiplicative interaction) model. The first 2
multiplicative axes were found significant. The AMMI2 model provided more
accurate estimates of genotypic yields within environments than the
conventional unadjusted means across replicates. AMMI2 estimates were used for
input into cluster analysis, grouping environments that ranked genotypic
yields similarly. Three major groups were obtained, with average yields of
2.42 t/ha (cluster I), 3.06 t/ha (cluster II), and 5.16 t/ha
(cluster III). The genotypic ranking for Δ did not vary substantially
across clusters, but it changed for grain yield. The average genotypic yields
in the low-yielding cluster I ranked opposite to those in the high-yielding
cluster III, suggesting the existence of a crossover point at an intermediate
yield level. The association between grain yield and Δ for genotypic
means within clusters was variable. In cluster I, yield and Δ tended to
be negatively related, whereas they were positively related in clusters II and
III. Genotypes with lower Δ, i.e. with higher transpiration efficiency,
performed better in low-yielding environments (mostly those grouped in cluster
I). On the contrary, a high genotypic Δ was of advantage in medium
(cluster II) and high-yielding environments (cluster III). This observation
supports the assumption that drought tolerance and high yield potential under
non-limiting growing conditions may be antagonistic concepts in barley.
Genotypic means for kernel number per m 2 and Δ
were consistently and positively related within clusters, suggesting that a
constitutively high Δ may have been driven by a large genotypic
reproductive sink. The convenience of using Δ as a selection criterion
in areas exhibiting a considerable G×E interaction for grain yield is
discussed.
Subject
General Agricultural and Biological Sciences
Cited by
88 articles.
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