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Use of genotype-environment interactions to elucidate the pattern of maize root plasticity to nitrogen deficiency

摘要Maize (Zea mays L.) root morphology exhibits a high degree of phenotypic plasticity to nitrogen (N) deficiency, but the underlying genetic architecture remains to be investigated. Using an advanced BC4F3 population, we investigated the root growth plasticity under two contrasted N levels and identified the quantitative trait loci (QTLs) with QTL-environment (Q ? E) interaction effects. Principal components analysis (PCA) on changes of root traits to N deficiency (DLN-HN) showed that root length and biomass contributed for 45.8%in the same magnitude and direction on the first PC, while root traits scattered highly on PC2 and PC3. Hierarchical cluster analysis on traits for DLN-HN further assigned the BC4F3 lines into six groups, in which the special phenotypic responses to N deficiency was presented. These results revealed the complicated root plasticity of maize in response to N deficiency that can be caused by genotype-environment (G ? E) interactions. Furthermore, QTL mapping using a multi-environment analysis identified 35 QTLs for root traits. Nine of these QTLs exhibited significant Q ? E interaction effects. Taken together, our findings contribute to under-standing the phenotypic and genotypic pattern of root plasticity to N deficiency, which will be useful for developing maize tolerance cultivars to N deficiency.

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作者单位 Key Lab of Plant-Soil Interaction, M0E, Center for Resources, Environment and Food Security, Col ege Resources and Environmental Sciences, China Agricultural University, Beijing 100193, China [1]
DOI 10.1111/jipb.12384
发布时间 2016-05-25(万方平台首次上网日期,不代表论文的发表时间)
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植物学报(英文版)

植物学报(英文版)

2016年58卷3期

242-253页

SCIMEDLINEISTICCSCDCABP

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