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An investigation of the grain yield adaptation of advanced CIMMYT wheat lines to water stress environments in Queensland. II. Classification analysis

机译:昆士兰州优质CIMMYT小麦品系对水分胁迫环境的籽粒产量适应性研究。二。分类分析

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The objective of this study was to use classification methodology to characterize the genotypic variation and line by environment (L x E) interaction for grain yield of a sample of advanced CIMMYT wheat lines and three local check cultivars tested over six Queensland environments. The environments were managed to differ in the magnitude of water stress they imposed on the lines at the critical developmental stage of anthesis. The grouping of lines was based on grain yield. The yield differences among the groups were investigated in terms of yield components and dry matter production and partitioning attributes. Groups of CIMMYT lines which outyielded the two groups which contained the three Queensland cultivars were identified. The yield advantage of the groups of CIMMYT lines decreased with increasing severity of water stress at anthesis and in the environment where the most severe stress was characterized there were no yield differences among the groups of lines. The yield advantage of the groups of CIMMYT lines was generally associated with a higher number of grains per unit area and in some cases a higher grain size. While phenology variation could account for some of the yield differences among the line groups there was considerable yield variation among line groups with similar phenology patterns across the environments. Additional measurements taken on the lines to characterize differences in dry matter production and the partitioning of the dry matter to yield components were not effective in explaining the yield variation among the groups of lines after the effects of phenology were taken into account. While the incidence of the large L x (water-stress) interactions encountered in this study would complicate selection for yield, the identification of groups of advanced CIMMYT lines which outyielded the Queensland cultivars in five of the six environments suggests that the L x (water stress) interactions do not preclude scope for further improvement of grain yield of wheat in Queensland.
机译:这项研究的目的是使用分类方法表征高级CIMMYT小麦品系样品和在六个昆士兰州环境中测试的三个本地检查品种的籽粒产量的基因型变异和品系间(L x E)相互作用。在花期的关键发育阶段,对环境施加的水分胁迫程度有所不同。行的分组基于谷物的产量。从产量组成,干物质生产和分配属性方面研究了各组之间的产量差异。确定了比包含三个昆士兰品种的两组更胜一筹的CIMMYT品系组。 CIMMYT品系组的产量优势随花期水分胁迫严重程度的增加而降低,并且在表征最严重胁迫的环境中,品系组之间没有产量差异。组CIMMYT品系的产量优势通常与每单位面积上更多的晶粒数量有关,在某些情况下还与更高的晶粒尺寸有关。尽管物候变化可以解释品系组之间的某些产量差异,但在整个环境中,具有相似物候模式的品系组之间存在相当大的产量差异。考虑到物候效应后,在生产线上进行额外的测量以表征干物质生产的差异以及将干物质分配到产量成分上并不能有效地解释生产线组之间的产量变化。虽然本研究中遇到的大的L x(水分-胁迫)相互作用的发生将使产量的选择复杂化,但是在六个环境中的五个中,鉴定出昆士兰州高产品种的先进CIMMYT品系的分组表明,L x(水应力)相互作用并不排除进一步提高昆士兰州小麦籽粒产量的空间。

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