Genetic mapping of natural variation in a shade avoidance response ELF3 is the candidate gene for a QTL in hypocotyl growth regulation

When plants become shaded by neighbouring plants, they perceive a decrease in the red/far-red [R/FR] ratio of the light environment, which provides an early and unambiguous warning of the presence of competing vegetation. The mechanistic bases of the natural genetic variation in response to shade si...

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Otros Autores: Coluccio, M. Paula, Sánchez, Sabrina E., Kasulin, Luciana, Yanovsky, Marcelo J., Botto, Javier Francisco
Formato: Artículo
Lenguaje:Inglés
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Acceso en línea:http://ri.agro.uba.ar/files/download/articulo/2011Coluccio.pdf
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Aporte de:Registro referencial: Solicitar el recurso aquí
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245 0 0 |a Genetic mapping of natural variation in a shade avoidance response   |b ELF3 is the candidate gene for a QTL in hypocotyl growth regulation 
520 |a When plants become shaded by neighbouring plants, they perceive a decrease in the red/far-red [R/FR] ratio of the light environment, which provides an early and unambiguous warning of the presence of competing vegetation. The mechanistic bases of the natural genetic variation in response to shade signals remain largely unknown. This study demonstrates that a wide range of genetic variation for hypocotyl elongation in response to an FR pulse at the end of day [EOD], a light signal that simulates natural shade, exists between Arabidopsis accessions. A quantitative trait locus [QTL] mapping analysis was done in the BayreuthxShahdara recombinant inbred line population. EODINDEX1 is the most significant QTL identified in response to EOD. The Shahdara alleles at EODINDEX1 caused a reduced response to shade as a consequence of an impaired hypocotyl inhibition under white light, and an accelerated leaf movement rhythm, which correlated positively with the pattern of circadian expression of clock genes such as PRR7 and PRR9. Genetic and quantitative complementation analyses demonstrated that ELF3 is the most likely candidate gene underlying natural variation at EODINDEX1. In conclusion, ELF3 is proposed as a component of the shade avoidance signalling pathway responsible for the phenotypic differences between Arabidopsis populations in relation to adaptation in a changing light environment. 
650 |2 Agrovoc  |9 26 
653 0 |a ARABIDOPSIS THALIANA 
653 0 |a EARLY FLOWERING 3 [ELF3] 
653 0 |a END OF THE DAY FAR-RED LIGHT [EOD] 
653 0 |a NATURAL GENETIC VARIATION 
653 0 |a QUANTITATIVE TRAIT LOCUS [QTL] 
653 0 |a SHADE AVOIDANCE SYNDROME [SAS] 
653 0 |a ARABIDOPSIS PROTEIN 
653 0 |a ELF3 PROTEIN, ARABIDOPSIS 
653 0 |a TRANSCRIPTION FACTOR 
653 0 |a AMINO ACID SEQUENCE 
653 0 |a ARABIDOPSIS 
653 0 |a CHEMISTRY 
653 0 |a CHROMOSOME MAP 
653 0 |a GENE EXPRESSION REGULATION 
653 0 |a GENETICS 
653 0 |a GROWTH, DEVELOPMENT AND AGING 
653 0 |a LIGHT 
653 0 |a METABOLISM 
653 0 |a MOLECULAR GENETICS 
653 0 |a PHYSIOLOGY 
653 0 |a PLANT GROWTH 
653 0 |a QUANTITATIVE TRAIT LOCUS 
653 0 |a RADIATION EXPOSURE 
653 0 |a SEQUENCE ALIGNMENT 
653 0 |a SIGNAL TRANSDUCTION 
653 0 |a ARABIDOPSIS PROTEINS 
653 0 |a CHROMOSOME MAPPING 
653 0 |a GENE EXPRESSION REGULATION, PLANT 
653 0 |a HYPOCOTYL 
653 0 |a MOLECULAR SEQUENCE DATA 
653 0 |a QUANTITATIVE TRAIT LOCI 
653 0 |a TRANSCRIPTION FACTORS 
700 1 |a Coluccio, M. Paula  |9 70109 
700 1 |a Sánchez, Sabrina E.  |9 69989 
700 1 |a Kasulin, Luciana  |9 67332 
700 1 |9 11465  |a Yanovsky, Marcelo J. 
700 1 |9 65609  |a Botto, Javier Francisco 
773 |t Journal of Experimental Botany  |g Vol.62, no.1 (2011), p.167-176 
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