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质子泵 AHA10 的表达与柠檬汁囊细胞中柠檬酸的积累有关。

Expression of the H+-ATPase AHA10 proton pump is associated with citric acid accumulation in lemon juice sac cells.

机构信息

Department of Biotechnology and Environmental Science, University of Salento, Lecce, Prov.le Lecce-Monteroni, Italy.

出版信息

Funct Integr Genomics. 2011 Dec;11(4):551-63. doi: 10.1007/s10142-011-0226-3. Epub 2011 May 10.

Abstract

The sour taste of lemons (Citrus limon (L.) Burm.) is determined by the amount of citric acid in vacuoles of juice sac cells. Faris is a "sweet" lemon variety since it accumulates low levels of citric acid. The University of California Riverside Citrus Variety Collection includes a Faris tree that produces sweet (Faris non-acid; FNA) and sour fruit (Faris acid; FA) on different branches; it is apparently a graft chimera with layer L1 derived from Millsweet limetta and layer L2 from a standard lemon. The transcription profiles of Faris sweet lemon were compared with Faris acid lemon and Frost Lisbon (L), which is a standard sour lemon genetically indistinguishable from Faris in prior work with SSR markers. Analysis of microarray data revealed that the transcriptomes of the two sour lemon genotypes were nearly identical. In contrast, the transcriptome of Faris sweet lemon was very different from those of both sour lemons. Among about 1,000 FNA-specific, presumably pH-related genes, the homolog of Arabidopsis H(+)-ATPase proton pump AHA10 was not expressed in FNA, but highly expressed in FA and L. Since Arabidopsis AHA10 is involved in biosynthesis and acidification of vacuoles, the lack of expression of the AHA10 citrus homolog represents a very conspicuous molecular feature of the FNA sweet phenotype. In addition, high expression of several 2-oxoglutarate degradation-related genes in FNA suggests activation of the GABA shunt and degradation of valine and tyrosine as components of the mechanism that reduces the level of citric acid in sweet lemon.

摘要

柠檬(Citrus limon (L.) Burm.)的酸味取决于液泡中果汁囊细胞的柠檬酸含量。法里斯(Faris)是一种“甜”柠檬品种,因为它积累的柠檬酸水平较低。加州大学河滨分校柑橘品种收藏包括一棵法里斯树,它在不同的树枝上结出甜果(Faris 非酸;FNA)和酸果(Faris 酸;FA);它显然是一个嫁接嵌合体,层 L1 来自米尔甜莱檬(Millsweet limetta),层 L2 来自标准柠檬。法里斯甜柠檬的转录谱与法里斯酸柠檬和弗罗斯特里斯本(L)进行了比较,弗罗斯特里斯本(L)是一种标准酸柠檬,在先前使用 SSR 标记的研究中,与法里斯在遗传上无法区分。微阵列数据分析表明,两种酸柠檬基因型的转录组几乎相同。相比之下,法里斯甜柠檬的转录组与两种酸柠檬的转录组有很大的不同。在大约 1000 个 FNA 特异性、可能与 pH 相关的基因中,拟南芥 H(+)-ATPase 质子泵 AHA10 的同源物在 FNA 中不表达,但在 FA 和 L 中高度表达。由于拟南芥 AHA10 参与液泡的生物合成和酸化,柑橘 AHA10 同源物的缺失表达代表了 FNA 甜表型的一个非常明显的分子特征。此外,FNA 中几个 2-氧戊二酸降解相关基因的高表达表明 GABA 分流的激活和缬氨酸和酪氨酸的降解,作为降低甜柠檬柠檬酸水平的机制的组成部分。

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