College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
Xuzhou Institute of Agricultural Sciences in Xuhuai Region of Jiangsu, Xuzhou 221131, China.
Plant Commun. 2024 Sep 9;5(9):100973. doi: 10.1016/j.xplc.2024.100973. Epub 2024 May 14.
Soluble sugar and organic acids are key determinants of fruit organoleptic quality and directly affect the commodity value and economic returns of fruit crops. We performed whole-genome sequencing of the apple varieties Gala and Xiahongrou, along with their F1 hybrids, to construct a high-density bin map. Our quantitative genetic analysis pinpointed 53 quantitative trait loci (QTLs) related to 11 sugar and acid traits. We identified a candidate gene, MdNADP-ME, responsible for malate degradation, in a stable QTL on linkage group 15. Sequence analysis revealed an A/C SNP in the promoter region (MEp-799) that influences binding of the MdMYB2 transcription factor, thereby affecting MdNADP-ME expression. In our study of various apple genotypes, this SNP has been demonstrated to be linked to malate and fructose levels. We also developed a dCAPS marker associated with fruit fructose content. These results substantiate the role of MdNADP-ME in maintaining the equilibrium between sugar and acid contents in apple fruits.
可溶性糖和有机酸是决定果实感官品质的关键因素,直接影响水果作物的商品价值和经济效益。我们对苹果品种嘎啦和小宏瑞及其 F1 杂种进行了全基因组测序,构建了高密度 bin 图谱。我们的定量遗传分析确定了与 11 个糖和酸特性相关的 53 个数量性状位点(QTL)。我们在连锁群 15 上的一个稳定 QTL 中鉴定出一个负责苹果酸降解的候选基因 MdNADP-ME。序列分析显示,在启动子区域(MEp-799)存在一个 A/C SNP,影响 MdMYB2 转录因子的结合,从而影响 MdNADP-ME 的表达。在对各种苹果基因型的研究中,该 SNP 与苹果酸和果糖水平有关。我们还开发了一个与果实果糖含量相关的 dCAPS 标记。这些结果证实了 MdNADP-ME 在维持苹果果实中糖和酸含量平衡中的作用。