Key Laboratory of Horticultural Plant Biology, Ministry of Education, Huazhong Agricultural University Wuhan, China ; Key Laboratory of Horticultural Crop Biology and Genetic Improvement (Central Region), Ministry of Education Wuhan, China.
Front Plant Sci. 2015 Mar 9;6:135. doi: 10.3389/fpls.2015.00135. eCollection 2015.
PH5 is a petunia gene that encodes a plasma membrane H(+)-ATPase and determines the vacuolar pH. The citrate content of fruit cell vacuoles influences citrus organoleptic qualities. Although citrus could have PH5-like homologs that are involved in citrate accumulation, the details are still unknown. In this study, extensive data-mining with the PH5 sequence and PCR amplification confirmed that there are at least eight PH5-like genes (CsPH1-8) in the citrus genome. CsPHs have a molecular mass of approximately 100 kDa, and they have high similarity to PhPH5, AtAHA10 or AtAHA2 (from 64.6 to 80.9%). They contain 13-21 exons and 12-20 introns and were evenly distributed into four subgroups of the P3A-subfamily (CsPH1, CsPH2, and CsPH3 in Group I, CsPH4 and CsPH5 in Group II, CsPH6 in Group IV, and CsPH7 and CsPH8 in Group III together with PhPH5). A transcript analysis showed that CsPH1, 3, and 4 were predominantly expressed in mature leaves, whereas CsPH2 and 7 were predominantly expressed in roots, CsPH5 and 6 were predominantly expressed in flowers, and CsPH8 was predominantly expressed in fruit juice sacs (JS). Moreover, the CsPH transcript profiles differed between orange and pummelo, as well as between high-acid and low-acid cultivars. The low-acid orange "Honganliu" exhibits low transcript levels of CsPH3, CsPH4, CsPH5, and CsPH8, whereas the acid-free pummelo (AFP) has only a low transcript level of CsPH8. In addition, ABA injection increased the citrate content significantly, which was accompanied by the obvious induction of CsPH2, 6, 7, and 8 transcript levels. Taken together, we suggest that CsPH8 seems likely to regulate citrate accumulation in the citrus fruit vacuole.
PH5 是矮牵牛基因,编码质膜 H(+)-ATP 酶,决定液泡 pH 值。果实细胞液泡中的柠檬酸含量影响柑橘的感官品质。尽管柑橘可能具有参与柠檬酸积累的 PH5 类似物,但细节仍不清楚。在这项研究中,通过 PH5 序列的广泛数据挖掘和 PCR 扩增证实,柑橘基因组中至少存在 8 个 PH5 类似基因(CsPH1-8)。CsPHs 的分子量约为 100 kDa,与 PhPH5、AtAHA10 或 AtAHA2(64.6-80.9%)具有高度相似性。它们包含 13-21 个外显子和 12-20 个内含子,均匀分布在 P3A 亚家族的四个亚组(I 组的 CsPH1、CsPH2 和 CsPH3,II 组的 CsPH4 和 CsPH5,IV 组的 CsPH6,以及 III 组的 CsPH7 和 CsPH8 与 PhPH5 一起)。转录分析表明,CsPH1、3 和 4 主要在成熟叶片中表达,而 CsPH2 和 7 主要在根中表达,CsPH5 和 6 主要在花中表达,CsPH8 主要在果汁囊(JS)中表达。此外,橙子和柚子之间以及高酸和低酸品种之间的 CsPH 转录谱存在差异。低酸橙子“红柳”表现出 CsPH3、CsPH4、CsPH5 和 CsPH8 的低转录水平,而无酸柚子(AFP)仅表现出 CsPH8 的低转录水平。此外,ABA 注射显著增加了柠檬酸含量,伴随着 CsPH2、6、7 和 8 转录水平的明显诱导。综上所述,我们认为 CsPH8 可能调节柑橘果实液泡中的柠檬酸积累。