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The amino terminal F-box domain of Petunia inflata S-locus F-box protein is involved in the S-RNase-based self-incompatibility mechanism.
AoB Plants. 2011; 2011:plr016.AP

Abstract

BACKGROUND AND AIMS

Pistils of flowering plants possessing self-incompatibility (SI) can distinguish between self and non-self pollen, and only allow non-self pollen to effect fertilization. For Petunia inflata, the S-RNase gene encodes pistil specificity and multiple S-locus F-box (SLF) genes encode pollen specificity. Each SLF produced in pollen interacts with a subset of non-self S-RNases to mediate their ubiquitination and degradation by the 26S proteasome.

RATIONALE

S-locus F-box has been proposed to function as a component of the conventional SCF (SKP1-CULLIN-F-box protein) complex, based on the finding that two SKP1-like proteins, AhSSK1 (Antirrhinum hispanicum SLF-interacting SKP1-like1) and PhSSK1 (Petunia hybrida SSK1), interact with the F-box domain of some allelic variants of SLF. However, we previously showed that PiSLF (P. inflata SLF) did not interact with any SKP1 of P. inflata or Arabidopsis thaliana, but instead interacted with a RING-finger protein, PiSBP1 (P. inflata S-RNase-Binding Protein1), which may also play the role of SKP1. Thus, the biochemical nature of the SLF-containing complex is as yet unclear.

PRINCIPAL RESULTS

To examine whether the F-box domain of PiSLF is required for SI function, we expressed a truncated PiSLF(2) (S(2) allelic variant) without this domain in S(2)S(3) plants and showed that, unlike the full-length PiSLF(2), it did not cause breakdown of SI in S(3) pollen. We identified PiSSK1 (P. inflata SSK1) and found that it did not interact with PiSLF(1), PiSLF(2) or PiSLF(3).

CONCLUSIONS

The finding that the truncated PiSLF(2) did not cause breakdown of SI in S(3) transgenic pollen suggests that the F-box domain of PiSLF(2) is required for mediating degradation of S(3)-RNase, a non-self S-RNase, in S(3) pollen, and thus is required for SI function. The finding that PiSSK1 did not interact with three allelic variants of PiSLF is consistent with our previous finding that PiSLF might not be in a conventional SCF complex.

Authors+Show Affiliations

Intercollege Graduate Degree Program in Plant Biology , The Pennsylvania State University , University Park, PA 16802 , USA.No affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

22476486

Citation

Meng, Xiaoying, et al. "The Amino Terminal F-box Domain of Petunia Inflata S-locus F-box Protein Is Involved in the S-RNase-based Self-incompatibility Mechanism." AoB PLANTS, vol. 2011, 2011, pp. plr016.
Meng X, Hua Z, Sun P, et al. The amino terminal F-box domain of Petunia inflata S-locus F-box protein is involved in the S-RNase-based self-incompatibility mechanism. AoB Plants. 2011;2011:plr016.
Meng, X., Hua, Z., Sun, P., & Kao, T. H. (2011). The amino terminal F-box domain of Petunia inflata S-locus F-box protein is involved in the S-RNase-based self-incompatibility mechanism. AoB PLANTS, 2011, plr016. https://doi.org/10.1093/aobpla/plr016
Meng X, et al. The Amino Terminal F-box Domain of Petunia Inflata S-locus F-box Protein Is Involved in the S-RNase-based Self-incompatibility Mechanism. AoB Plants. 2011;2011:plr016. PubMed PMID: 22476486.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - The amino terminal F-box domain of Petunia inflata S-locus F-box protein is involved in the S-RNase-based self-incompatibility mechanism. AU - Meng,Xiaoying, AU - Hua,Zhihua, AU - Sun,Penglin, AU - Kao,Teh-Hui, Y1 - 2011/08/19/ PY - 2011/03/28/received PY - 2011/06/26/accepted PY - 2012/4/6/entrez PY - 2011/1/1/pubmed PY - 2011/1/1/medline SP - plr016 EP - plr016 JF - AoB PLANTS JO - AoB Plants VL - 2011 N2 - BACKGROUND AND AIMS: Pistils of flowering plants possessing self-incompatibility (SI) can distinguish between self and non-self pollen, and only allow non-self pollen to effect fertilization. For Petunia inflata, the S-RNase gene encodes pistil specificity and multiple S-locus F-box (SLF) genes encode pollen specificity. Each SLF produced in pollen interacts with a subset of non-self S-RNases to mediate their ubiquitination and degradation by the 26S proteasome. RATIONALE: S-locus F-box has been proposed to function as a component of the conventional SCF (SKP1-CULLIN-F-box protein) complex, based on the finding that two SKP1-like proteins, AhSSK1 (Antirrhinum hispanicum SLF-interacting SKP1-like1) and PhSSK1 (Petunia hybrida SSK1), interact with the F-box domain of some allelic variants of SLF. However, we previously showed that PiSLF (P. inflata SLF) did not interact with any SKP1 of P. inflata or Arabidopsis thaliana, but instead interacted with a RING-finger protein, PiSBP1 (P. inflata S-RNase-Binding Protein1), which may also play the role of SKP1. Thus, the biochemical nature of the SLF-containing complex is as yet unclear. PRINCIPAL RESULTS: To examine whether the F-box domain of PiSLF is required for SI function, we expressed a truncated PiSLF(2) (S(2) allelic variant) without this domain in S(2)S(3) plants and showed that, unlike the full-length PiSLF(2), it did not cause breakdown of SI in S(3) pollen. We identified PiSSK1 (P. inflata SSK1) and found that it did not interact with PiSLF(1), PiSLF(2) or PiSLF(3). CONCLUSIONS: The finding that the truncated PiSLF(2) did not cause breakdown of SI in S(3) transgenic pollen suggests that the F-box domain of PiSLF(2) is required for mediating degradation of S(3)-RNase, a non-self S-RNase, in S(3) pollen, and thus is required for SI function. The finding that PiSSK1 did not interact with three allelic variants of PiSLF is consistent with our previous finding that PiSLF might not be in a conventional SCF complex. SN - 2041-2851 UR - https://www.unboundmedicine.com/medline/citation/22476486/The_amino_terminal_F_box_domain_of_Petunia_inflata_S_locus_F_box_protein_is_involved_in_the_S_RNase_based_self_incompatibility_mechanism_ L2 - https://academic.oup.com/aobpla/article-lookup/doi/10.1093/aobpla/plr016 DB - PRIME DP - Unbound Medicine ER -
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