Literature DB >> 27717452

Molecular and genetic characterization of a self-compatible apple cultivar, 'CAU-1'.

Wei Li1, Qing Yang1, Zhaoyu Gu1, Chuanbao Wu1, Dong Meng1, Jie Yu1, Qiuju Chen1, Yang Li1, Hui Yuan2, Dongmei Wang3, Tianzhong Li4.   

Abstract

In this study, we characterized a naturally occurring self-compatible apple cultivar, 'CAU-1' (S1S9), and studied the underlying mechanism that causes its compatibility. Analyses of both fruit set rate and seed number after self-pollination or cross-pollination with 'Fuji' (S1S9), and of pollen tube growth, demonstrated that 'CAU-1' is self-compatible. Genetic analysis by S-RNase PCR-typing of selfed progeny of 'CAU-1' revealed the presence of all progeny classes (S1S1, S1S9, and S9S9). Moreover, no evidence of S-allele duplication was found. These findings support the hypothesis that loss of function of an S-locus unlinked pollen-part mutation (PPM) expressed in pollen, rather than a natural mutation in the pollen-S gene (S1- and S9- haplotype), leads to SI breakdown in 'CAU-1'. In addition, there were no significant differences in pollen morphology or fertility between 'Fuji' and 'CAU-1'. However, we found that the effect of S1- and S9-RNase on the SI behavior of pollen could not be addressed better in 'CAU-1' than in 'Fuji'. Furthermore, we found that a pollen-expressed hexose transporter, MdHT1, interacted with S-RNases and showed significantly less expression in 'CAU-1' than in 'Fuji' pollen tubes. These findings support the hypothesis that MdHT1 may participate in S-RNase internalization during the SI process, and decrease of MdHT1 expression in 'CAU-1' hindered the release of self S-RNase into the cytoplasm of pollen tubes, thereby protecting pollen from the cytotoxicity of S-RNase, finally probably resulting in self-compatibility. Together, these findings indicate that S-locus external factors are required for gametophytic SI in the Rosaceae subtribe Pyrinae.
Copyright © 2016 Elsevier Ireland Ltd. All rights reserved.

Entities:  

Keywords:  Apple; MdHT1; Pollen-part mutation (PPM); S-RNase; Self-compatible; Single-nucleotide mutation

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Year:  2016        PMID: 27717452     DOI: 10.1016/j.plantsci.2016.07.010

Source DB:  PubMed          Journal:  Plant Sci        ISSN: 0168-9452            Impact factor:   4.729


  2 in total

Review 1.  Reproduction in woody perennial Citrus: an update on nucellar embryony and self-incompatibility.

Authors:  Siqi Zhang; Mei Liang; Nan Wang; Qiang Xu; Xiuxin Deng; Lijun Chai
Journal:  Plant Reprod       Date:  2018-02-19       Impact factor: 3.767

2.  A mutation near the active site of S-RNase causes self-compatibility in S-RNase-based self-incompatible plants.

Authors:  Yang Li; Junkai Wu; Chuanbao Wu; Jie Yu; Chunsheng Liu; Wenqi Fan; Tianzhong Li; Wei Li
Journal:  Plant Mol Biol       Date:  2020-02-23       Impact factor: 4.076

  2 in total

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