Cargando…

Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins

BACKGROUND: The ornamental plant Gerbera hybrida bears complex inflorescences with morphologically distinct floral morphs that are specific to the sunflower family Asteraceae. We have previously characterized several MADS box genes that regulate floral development in Gerbera. To study further their...

Descripción completa

Detalles Bibliográficos
Autores principales: Ruokolainen, Satu, Ng, Yan Peng, Albert, Victor A, Elomaa, Paula, Teeri, Teemu H
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017775/
https://www.ncbi.nlm.nih.gov/pubmed/20579338
http://dx.doi.org/10.1186/1471-2229-10-129
_version_ 1782195947484217344
author Ruokolainen, Satu
Ng, Yan Peng
Albert, Victor A
Elomaa, Paula
Teeri, Teemu H
author_facet Ruokolainen, Satu
Ng, Yan Peng
Albert, Victor A
Elomaa, Paula
Teeri, Teemu H
author_sort Ruokolainen, Satu
collection PubMed
description BACKGROUND: The ornamental plant Gerbera hybrida bears complex inflorescences with morphologically distinct floral morphs that are specific to the sunflower family Asteraceae. We have previously characterized several MADS box genes that regulate floral development in Gerbera. To study further their behavior in higher order complex formation according to the quartet model, we performed yeast two- and three-hybrid analysis with fourteen Gerbera MADS domain proteins to analyze their protein-protein interaction potential. RESULTS: The exhaustive pairwise interaction analysis showed significant differences in the interaction capacity of different Gerbera MADS domain proteins compared to other model plants. Of particular interest in these assays was the behavior of SEP-like proteins, known as GRCDs in Gerbera. The previously described GRCD1 and GRCD2 proteins, which are specific regulators involved in stamen and carpel development, respectively, showed very limited pairwise interactions, whereas the related GRCD4 and GRCD5 factors displayed hub-like positions in the interaction map. We propose GRCD4 and GRCD5 to provide a redundant and general E function in Gerbera, comparable to the SEP proteins in Arabidopsis. Based on the pairwise interaction data, combinations of MADS domain proteins were further subjected to yeast three-hybrid assays. Gerbera B function proteins showed active behavior in ternary complexes. All Gerbera SEP-like proteins with the exception of GRCD1 were excellent partners for B function proteins, further implicating the unique role of GRCD1 as a whorl- and flower-type specific C function partner. CONCLUSIONS: Gerbera MADS domain proteins exhibit both conserved and derived behavior in higher order protein complex formation. This protein-protein interaction data can be used to classify and compare Gerbera MADS domain proteins to those of Arabidopsis and Petunia. Combined with our reverse genetic studies of Gerbera, these results reinforce the roles of different genes in the floral development of Gerbera. Building up the elaborate capitulum of Gerbera calls for modifications and added complexity in MADS domain protein behavior compared to the more simple flowers of, e.g., Arabidopsis.
format Text
id pubmed-3017775
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-30177752011-01-10 Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins Ruokolainen, Satu Ng, Yan Peng Albert, Victor A Elomaa, Paula Teeri, Teemu H BMC Plant Biol Research Article BACKGROUND: The ornamental plant Gerbera hybrida bears complex inflorescences with morphologically distinct floral morphs that are specific to the sunflower family Asteraceae. We have previously characterized several MADS box genes that regulate floral development in Gerbera. To study further their behavior in higher order complex formation according to the quartet model, we performed yeast two- and three-hybrid analysis with fourteen Gerbera MADS domain proteins to analyze their protein-protein interaction potential. RESULTS: The exhaustive pairwise interaction analysis showed significant differences in the interaction capacity of different Gerbera MADS domain proteins compared to other model plants. Of particular interest in these assays was the behavior of SEP-like proteins, known as GRCDs in Gerbera. The previously described GRCD1 and GRCD2 proteins, which are specific regulators involved in stamen and carpel development, respectively, showed very limited pairwise interactions, whereas the related GRCD4 and GRCD5 factors displayed hub-like positions in the interaction map. We propose GRCD4 and GRCD5 to provide a redundant and general E function in Gerbera, comparable to the SEP proteins in Arabidopsis. Based on the pairwise interaction data, combinations of MADS domain proteins were further subjected to yeast three-hybrid assays. Gerbera B function proteins showed active behavior in ternary complexes. All Gerbera SEP-like proteins with the exception of GRCD1 were excellent partners for B function proteins, further implicating the unique role of GRCD1 as a whorl- and flower-type specific C function partner. CONCLUSIONS: Gerbera MADS domain proteins exhibit both conserved and derived behavior in higher order protein complex formation. This protein-protein interaction data can be used to classify and compare Gerbera MADS domain proteins to those of Arabidopsis and Petunia. Combined with our reverse genetic studies of Gerbera, these results reinforce the roles of different genes in the floral development of Gerbera. Building up the elaborate capitulum of Gerbera calls for modifications and added complexity in MADS domain protein behavior compared to the more simple flowers of, e.g., Arabidopsis. BioMed Central 2010-06-25 /pmc/articles/PMC3017775/ /pubmed/20579338 http://dx.doi.org/10.1186/1471-2229-10-129 Text en Copyright ©2010 Ruokolainen et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ruokolainen, Satu
Ng, Yan Peng
Albert, Victor A
Elomaa, Paula
Teeri, Teemu H
Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins
title Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins
title_full Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins
title_fullStr Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins
title_full_unstemmed Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins
title_short Large scale interaction analysis predicts that the Gerbera hybrida floral E function is provided both by general and specialized proteins
title_sort large scale interaction analysis predicts that the gerbera hybrida floral e function is provided both by general and specialized proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017775/
https://www.ncbi.nlm.nih.gov/pubmed/20579338
http://dx.doi.org/10.1186/1471-2229-10-129
work_keys_str_mv AT ruokolainensatu largescaleinteractionanalysispredictsthatthegerberahybridafloralefunctionisprovidedbothbygeneralandspecializedproteins
AT ngyanpeng largescaleinteractionanalysispredictsthatthegerberahybridafloralefunctionisprovidedbothbygeneralandspecializedproteins
AT albertvictora largescaleinteractionanalysispredictsthatthegerberahybridafloralefunctionisprovidedbothbygeneralandspecializedproteins
AT elomaapaula largescaleinteractionanalysispredictsthatthegerberahybridafloralefunctionisprovidedbothbygeneralandspecializedproteins
AT teeriteemuh largescaleinteractionanalysispredictsthatthegerberahybridafloralefunctionisprovidedbothbygeneralandspecializedproteins