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GrainGenes Reference Report: EJA-16-219

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Reference
EJA-16-219
Title
Patterns of grain filling of spring and winter hexaploid triticales
Journal
European Journal of Agronomy
Year
2002
Volume
16
Pages
219-230
Author
Santiveri F
Royo C
Romagosa I
Abstract
Summary: Eight hexaploid triticale genotypes, five of spring and three of winter growth habit were used to study the genetic variability of grain filling characteristics and their relationship with grain yield. Four trials were carried out under rainfed and irrigated conditions in Northeast Spain. Grain dry weight data was fitted to a logistic curve. Genetic variability existed for the length of the period from sowing to anthesis, maximum grain filling rate and maximum grain weight. Most of this variation was associated to the growth-habit of the genotypes. Winter triticales required 11% more thermal-time from sowing to anthesis, and had a maximum grain weight, which was 25% lower than that of spring genotypes. The maximum grain filling rate was 40% higher in spring than in winter triticales. Grain filling duration was mainly controlled by environmental conditions, and was not correlated with grain yield. A negative phenotypic correlation was detected between grain filling duration and maximum grain filling rate (rp = -0.41, P < 0.05), and a positive correlation between maximum grain weight and maximum grain filling rate (rp = 0.77, P < 0.001). Spring genotypes yielded around 21% more than winter types, probably because they escaped from terminal water stress. Grain yield was strongly correlated phenotypically and genetically to the maximum grain weight (rp = 0.87, rg = 0.92, P < 0.001) and maximum grain filling rate (rp = 0.78, P < 0.001; rg = 0.79, P < 0.05). Short duration from sowing to anthesis, high grain filling rate and high maximum grain weight seem to be major traits to optimise triticale grain yield under Mediterranean conditions
Keyword
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anthesis
barley
corn
correlation
dry weight
durum-wheat cultivars
environmental
genetic variability
genotype
grain filling
grain filling duration
grain filling rate
grain weight
grain yield
growth
growth habit
habit
hexaploid
hexaploid triticale
irrigated conditions
maximum
mediterranean conditions
pattern
periods
phenotypic correlation
rate
spain
spring
stress
trait
trials
triticale
variability
water
water stress
winter
winter type
yield
yield components

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