CAS Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Wuhan, 430074, China.
Center of Economic Botany, Core Botanical Gardens, Chinese Academy of Sciences, Wuhan, 430074, China.
Plant Mol Biol. 2021 Feb;105(3):321-332. doi: 10.1007/s11103-020-01089-6. Epub 2020 Oct 31.
A candidate gene, designate PpRPH, in the D locus was identified to control fruit acidity in peach. Fruit acidity has a strong impact on organoleptic quality of fruit. Peach fruit acidity is controlled by a large-effect D locus on chromosome 5. In this study, the D locus was mapped to a 509-kb interval, with two markers, 5dC720 and 5C1019, co-segregating with the non-acid/acid trait of peach fruit. Within this interval, a candidate gene encoding a putative small protein, designated PpRPH, showed a consistency between gene expression and fruit acidity, with up- and down-regulation in non-acidic and acidic fruits, respectively. Transient ectopic expression of PpRPH in tobacco leaves caused an increase of pH by approximately 40% compared to the control transformed with empty vector. Whereas, the concentrations of citrate and malate decreased significantly by 22% and 37%, respectively, with respect to the empty vector control. All these results suggest that PpRPH is a strong candidate gene of the D locus. These findings contribute to our overall understanding of the complex mechanism underlying fruit acidity in peach as well as that in other fruit crops.
在桃中,一个名为 PpRPH 的候选基因被确定为控制果实酸度的基因。果实酸度对果实的感官品质有很大的影响。桃果实的酸度受 5 号染色体上一个大效应的 D 位点控制。在这项研究中,D 位点被定位在一个 509kb 的区间内,两个标记 5dC720 和 5C1019 与桃果实的非酸性/酸性性状共分离。在这个区间内,一个编码假定小蛋白的候选基因 PpRPH 的表达与果实酸度一致,非酸性和酸性果实中的表达分别上调和下调。在烟草叶片中的瞬时异位表达导致 pH 值比空载体转化的对照增加了约 40%。然而,柠檬酸和苹果酸的浓度分别显著下降了 22%和 37%,与空载体对照相比。所有这些结果表明 PpRPH 是 D 位点的一个强有力的候选基因。这些发现有助于我们全面了解桃以及其他水果作物果实酸度的复杂机制。