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      A new dual-specific incompatibility allele revealed by absence of glycosylation in the conserved C2 site of a Solanum chacoense S-RNase

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          Abstract

          The stylar determinant of gametophytic self-incompatibility (GSI) in Solanaceae, Rosaceae, and Plantaginaceae is an S-RNase encoded by a multiallelic S-locus. The primary structure of S-RNases shows five conserved (C) and two hypervariable (HV) regions, the latter forming a domain implicated in S-haplotype-specific recognition of the pollen determinant to SI. All S-RNases are glycosylated at a conserved site in the C2 region, although previous studies have shown that N-linked glycans at this position are not required for S-haplotype-specific recognition and pollen rejection. Here the incompatibility phenotype of three constructs derived from an originally monoglycosylated S 11-RNase of Solanum chacoense, that were designed to explore the role of the HV domain in determining pollen recognition and the role of the N-linked glycan in the C2 region, is reported. In one series of experiments, a second glycosylation site was introduced in the HVa region to test for inhibition of pollen-specific recognition. This modification does not impede pollen rejection, although analysis shows incomplete glycosylation at the new site in the HVa region. A second construct, designed to permit complete glycosylation at the HVa site by suppression of the conserved site in the C2 region, did increase the degree of site occupancy, but, again, glycosylation was incomplete. Plants expressing this construct rejected S 11 pollen and, surprisingly, also rejected S 13 pollen, thus displaying an unusual dual specificity phenotype. This construct differs from the first by the absence of the conserved C2 glycosylation site, and thus the dual specificity is observed only in the absence of the C2 glycan. A third construct, completely lacking glycosylation sites, conferred an ability to reject only S 11 pollen, disproving the hypothesis that lack of a conserved glycan would confer a universal pollen rejection phenotype to the plant.

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          Author and article information

          Journal
          J Exp Bot
          J. Exp. Bot
          jexbot
          jexbot
          Journal of Experimental Botany
          Oxford University Press (UK )
          0022-0957
          1460-2431
          April 2013
          25 March 2013
          25 March 2013
          : 64
          : 7
          : 1995-2003
          Affiliations
          IRBV, Biology Department, University of Montreal , Montreal, Canada H1X 2B2
          Author notes
          *To whom correspondence should be addressed. E-mail: mario.cappadocia@ 123456umontreal.ca
          Article
          10.1093/jxb/ert059
          3638826
          23530129
          3f1e2720-4d93-49b9-93ad-d2c3b5fcedae
          © The Author(2) [2013].

          This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com.

          History
          Page count
          Pages: 9
          Categories
          Research Paper

          Plant science & Botany
          allelic recognition,gametophytic self-incompatibility,glycosylation,site-directed mutagenesis,s-rnase,solanum chacoense.

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