In silico analysis of candidate genes involved in light sensing and signal transduction pathways in soybean


Autoria(s): QUECINI, V.; ZUCCHI, M. I.; PINHEIRO, J. B.; VELLO, N. A.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/10/2012

18/10/2012

2008

Resumo

Several aspects of photoperception and light signal transduction have been elucidated by studies with model plants. However, the information available for economically important crops, such as Fabaceae species, is scarce. In order to incorporate the existing genomic tools into a strategy to advance soybean research, we have investigated publicly available expressed sequence tag ( EST) sequence databases in order to identify Glycine max sequences related to genes involved in light-regulated developmental control in model plants. Approximately 38,000 sequences from open-access databases were investigated, and all bona fide and putative photoreceptor gene families were found in soybean sequence databases. We have identified G. max orthologs for several families of transcriptional regulators and cytoplasmic proteins mediating photoreceptor-induced responses, although some important Arabidopsis phytochrome-signaling components are absent. Moreover, soybean and Arabidopsis gene-family homologs appear to have undergone a distinct expansion process in some cases. We propose a working model of light perception, signal transduction and response-eliciting in G. max, based on the identified key components from Arabidopsis. These results demonstrate the power of comparative genomics between model systems and crop species to elucidate several aspects of plant physiology and metabolism.

Identificador

PLANT BIOTECHNOLOGY REPORTS, v.2, n.1, p.59-73, 2008

1863-5466

http://producao.usp.br/handle/BDPI/19186

10.1007/s11816-008-0044-9

http://dx.doi.org/10.1007/s11816-008-0044-9

Idioma(s)

eng

Publicador

SPRINGER

Relação

Plant Biotechnology Reports

Direitos

closedAccess

Copyright SPRINGER

Palavras-Chave #circadian clock #cryptochrome #data mining #light signaling #photoreceptors #phytochrome #MEMBRANE H+-ATPASE #PHYTOCHROME-A #BLUE-LIGHT #ARABIDOPSIS-THALIANA #AUXIN TRANSPORT #TRANSCRIPTION FACTOR #DIFFERENTIAL GROWTH #CIRCADIAN CLOCK #LOCUS ENCODES #PROTEIN #Biotechnology & Applied Microbiology #Plant Sciences
Tipo

article

original article

publishedVersion