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Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)

Gametophytic self-incompatibility (GSI) of Rosaceae, Solanaceae and Plantaginaceae is controlled by a single polymorphic S locus. The S locus contains at least two genes, S-RNase and F-box protein encoding gene SLF/SFB/SFBB that control pistil and pollen specificity, respectively. Generally, the F-b...

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Autores principales: Minamikawa, Mai F., Koyano, Ruriko, Kikuchi, Shinji, Koba, Takato, Sassa, Hidenori
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4029751/
https://www.ncbi.nlm.nih.gov/pubmed/24847858
http://dx.doi.org/10.1371/journal.pone.0097642
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author Minamikawa, Mai F.
Koyano, Ruriko
Kikuchi, Shinji
Koba, Takato
Sassa, Hidenori
author_facet Minamikawa, Mai F.
Koyano, Ruriko
Kikuchi, Shinji
Koba, Takato
Sassa, Hidenori
author_sort Minamikawa, Mai F.
collection PubMed
description Gametophytic self-incompatibility (GSI) of Rosaceae, Solanaceae and Plantaginaceae is controlled by a single polymorphic S locus. The S locus contains at least two genes, S-RNase and F-box protein encoding gene SLF/SFB/SFBB that control pistil and pollen specificity, respectively. Generally, the F-box protein forms an E3 ligase complex, SCF complex with Skp1, Cullin1 (CUL1) and Rbx1, however, in Petunia inflata, SBP1 (S-RNase binding protein1) was reported to play the role of Skp1 and Rbx1, and form an SCF(SLF)-like complex for ubiquitination of non-self S-RNases. On the other hand, in Petunia hybrida and Petunia inflata of Solanaceae, Prunus avium and Pyrus bretschneideri of Rosaceae, SSK1 (SLF-interacting Skp1-like protein1) is considered to form the SCF(SLF/SFB) complex. Here, we isolated pollen-expressed apple homologs of SSK1 and CUL1, and named MdSSK1, MdCUL1A and MdCUL1B. MdSSK1 was preferentially expressed in pollen, but weakly in other organs analyzed, while, MdCUL1A and MdCUL1B were almost equally expressed in all the organs analyzed. MdSSK1 transcript abundance was significantly (>100 times) higher than that of MdSBP1. In vitro binding assays showed that MdSSK1 and MdSBP1 interacted with MdSFBB1-S (9) and MdCUL1, and MdSFBB1-S (9) interacted more strongly with MdSSK1 than with MdSBP1. The results suggest that both MdSSK1-containing SCF(SFBB1) and MdSBP1-containing SCF(SFBB1)-like complexes function in pollen of apple, and the former plays a major role.
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spelling pubmed-40297512014-05-28 Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica) Minamikawa, Mai F. Koyano, Ruriko Kikuchi, Shinji Koba, Takato Sassa, Hidenori PLoS One Research Article Gametophytic self-incompatibility (GSI) of Rosaceae, Solanaceae and Plantaginaceae is controlled by a single polymorphic S locus. The S locus contains at least two genes, S-RNase and F-box protein encoding gene SLF/SFB/SFBB that control pistil and pollen specificity, respectively. Generally, the F-box protein forms an E3 ligase complex, SCF complex with Skp1, Cullin1 (CUL1) and Rbx1, however, in Petunia inflata, SBP1 (S-RNase binding protein1) was reported to play the role of Skp1 and Rbx1, and form an SCF(SLF)-like complex for ubiquitination of non-self S-RNases. On the other hand, in Petunia hybrida and Petunia inflata of Solanaceae, Prunus avium and Pyrus bretschneideri of Rosaceae, SSK1 (SLF-interacting Skp1-like protein1) is considered to form the SCF(SLF/SFB) complex. Here, we isolated pollen-expressed apple homologs of SSK1 and CUL1, and named MdSSK1, MdCUL1A and MdCUL1B. MdSSK1 was preferentially expressed in pollen, but weakly in other organs analyzed, while, MdCUL1A and MdCUL1B were almost equally expressed in all the organs analyzed. MdSSK1 transcript abundance was significantly (>100 times) higher than that of MdSBP1. In vitro binding assays showed that MdSSK1 and MdSBP1 interacted with MdSFBB1-S (9) and MdCUL1, and MdSFBB1-S (9) interacted more strongly with MdSSK1 than with MdSBP1. The results suggest that both MdSSK1-containing SCF(SFBB1) and MdSBP1-containing SCF(SFBB1)-like complexes function in pollen of apple, and the former plays a major role. Public Library of Science 2014-05-21 /pmc/articles/PMC4029751/ /pubmed/24847858 http://dx.doi.org/10.1371/journal.pone.0097642 Text en © 2014 Minamikawa et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Minamikawa, Mai F.
Koyano, Ruriko
Kikuchi, Shinji
Koba, Takato
Sassa, Hidenori
Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)
title Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)
title_full Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)
title_fullStr Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)
title_full_unstemmed Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)
title_short Identification of SFBB-Containing Canonical and Noncanonical SCF Complexes in Pollen of Apple (Malus × domestica)
title_sort identification of sfbb-containing canonical and noncanonical scf complexes in pollen of apple (malus × domestica)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4029751/
https://www.ncbi.nlm.nih.gov/pubmed/24847858
http://dx.doi.org/10.1371/journal.pone.0097642
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