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1.
Mol Syst Biol ; 5: 242, 2009.
Artigo em Inglês | MEDLINE | ID: mdl-19225455

RESUMO

In Arabidopsis thaliana, gene expression level polymorphisms (ELPs) between natural accessions that exhibit simple, single locus inheritance are promising quantitative trait locus (QTL) candidates to explain phenotypic variability. It is assumed that such ELPs overwhelmingly represent regulatory element polymorphisms. However, comprehensive genome-wide analyses linking expression level, regulatory sequence and gene structure variation are missing, preventing definite verification of this assumption. Here, we analyzed ELPs observed between the Eil-0 and Lc-0 accessions. Compared with non-variable controls, 5' regulatory sequence variation in the corresponding genes is indeed increased. However, approximately 42% of all the ELP genes also carry major transcription unit deletions in one parent as revealed by genome tiling arrays, representing a >4-fold enrichment over controls. Within the subset of ELPs with simple inheritance, this proportion is even higher and deletions are generally more severe. Similar results were obtained from analyses of the Bay-0 and Sha accessions, using alternative technical approaches. Collectively, our results suggest that drastic structural changes are a major cause for ELPs with simple inheritance, corroborating experimentally observed indel preponderance in cloned Arabidopsis QTL.


Assuntos
Arabidopsis/genética , Regulação da Expressão Gênica de Plantas , Polimorfismo Genético , Sequência de Bases , Perfilação da Expressão Gênica , Variação Genética , Locos de Características Quantitativas , Sequências Reguladoras de Ácido Nucleico
2.
Curr Biol ; 18(6): 458-63, 2008 Mar 25.
Artigo em Inglês | MEDLINE | ID: mdl-18356049

RESUMO

In dicotyledons, biomass predominantly represents cell-wall material of xylem, which is formed during the genetically poorly characterized secondary growth of the vasculature. In Arabidopsis hypocotyls, initially proportional secondary growth of all tissues is followed by a phase of xylem expansion and fiber differentiation. The factors that control this transition are unknown. We observed natural variation in Arabidopsis hypocotyl secondary growth and its coordination with root secondary growth. Quantitative trait loci (QTL) analyses of a recombinant inbred line (RIL) population demonstrated separate genetic control of developmentally synchronized secondary-growth parameters. However, major QTL for xylem expansion and fiber differentiation correlated tightly and coincided with major flowering time QTL. Correlation between xylem expansion and flowering was confirmed in another RIL population and also found across Arabidopsis accessions. Gene-expression analyses suggest that xylem expansion is initiated after flowering induction but before inflorescence emergence. Consistent with this idea, transient activation of an inducer of flowering at the rosette stage promoted xylem expansion. Although the shoot was needed to trigger xylem expansion and can control it in a graft-transmissible fashion, the inflorescence stem was not required to sustain it. Collectively, our results suggest that flowering induction is the condition for xylem expansion in hypocotyl and root secondary growth.


Assuntos
Arabidopsis/crescimento & desenvolvimento , Flores/fisiologia , Hipocótilo/crescimento & desenvolvimento , Raízes de Plantas/crescimento & desenvolvimento , Xilema/crescimento & desenvolvimento , Arabidopsis/genética , Arabidopsis/metabolismo , Perfilação da Expressão Gênica , Variação Genética , Hipocótilo/metabolismo , Floema/crescimento & desenvolvimento , Locos de Características Quantitativas
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