Department of Fruit Tree and Woody Plant Science, University of Bologna, Bologna, Italy.
J Exp Bot. 2010 Jun;61(11):3029-39. doi: 10.1093/jxb/erq130. Epub 2010 May 12.
Apple fruit are well known for their storage life, although a wide range of flesh softening occurs among cultivars. Loss of firmness is genetically coordinated by the action of several cell wall enzymes, including polygalacturonase (PG) which depolymerizes cell wall pectin. By the analysis of 'Fuji' (Fj) and 'Mondial Gala' (MG), two apple cultivars characterized by a distinctive ripening behaviour, the involvement of Md-PG1 in the fruit softening process was confirmed to be ethylene dependent by its transcript being down-regulated by 1-methylcyclopropene treatment in MG and in the low ethylene-producing cultivar Fj. Comparing the PG sequence of MG and Fj, a single nucleotide polymorphism (SNP) was discovered. Segregation of the Md-PG1(SNP) marker within a full-sib population, obtained by crossing Fj and MG, positioned Md-PG1 in the linkage group 10 of MG, co-located with a quantitative trait locus (QTL) identified for fruit firmness in post-harvest ripening. Fruit firmness and softening analysed in different stages, from harvest to post-storage, determined a shift of the QTL from the top of this linkage group to the bottom, where Md-ACO1, a gene involved in ethylene biosynthesis in apple, is mapped. This PG-ethylene-related gene has beeen positioned in the apple genome on chromosome 10, which contains several QTLs controlling fruit firmness and softening, and the interplay among the allelotypes of the linked loci should be considered in the design of a marker-assisted selection breeding scheme for apple texture.
苹果果实因其贮藏寿命而闻名,尽管不同品种的果肉软化范围很广。硬度的丧失是由几种细胞壁酶的协同作用决定的,包括多聚半乳糖醛酸酶(PG),它使细胞壁果胶解聚。通过对“富士”(Fj)和“金冠”(MG)两个品种的分析,这两个品种以独特的成熟行为为特征,证实了 Md-PG1 参与果实软化过程是依赖于乙烯的,因为 1-甲基环丙烯处理会使其转录物在 MG 和低乙烯产生品种 Fj 中下调。比较 MG 和 Fj 的 PG 序列,发现了一个单核苷酸多态性(SNP)。通过 Fj 和 MG 杂交获得的全同胞群体中 Md-PG1(SNP)标记的分离,将 Md-PG1 定位在 MG 的第 10 连锁群中,与在收获后成熟过程中鉴定的果实硬度的数量性状位点(QTL)共定位。在不同阶段(从收获到贮藏后)分析果实硬度和软化,确定 QTL 从该连锁群的顶部转移到底部,在那里苹果中乙烯生物合成涉及的基因 Md-ACO1 被定位。这个与 PG-乙烯相关的基因已经被定位在苹果基因组的 10 号染色体上,该染色体包含几个控制果实硬度和软化的 QTL,因此应该考虑连锁位点的等位基因间的相互作用,以设计苹果质地的标记辅助选择育种方案。