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首页> 外文期刊>Molecular genetics and genomics: MGG >A natural mutation-led truncation in one of the two aluminum-activated malate transporter-like genes at the Ma locus is associated with low fruit acidity in apple.
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A natural mutation-led truncation in one of the two aluminum-activated malate transporter-like genes at the Ma locus is associated with low fruit acidity in apple.

机译:Ma基因座上两个铝激活的苹果酸转运蛋白样基因之一的自然突变导致的截短与苹果的低酸度有关。

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摘要

Acidity levels greatly affect the taste and flavor of fruit, and consequently its market value. In mature apple fruit, malic acid is the predominant organic acid. Several studies have confirmed that the major quantitative trait locus Ma largely controls the variation of fruit acidity levels. The Ma locus has recently been defined in a region of 150 kb that contains 44 predicted genes on chromosome 16 in the Golden Delicious genome. In this study, we identified two aluminum-activated malate transporter-like genes, designated Ma1 and Ma2, as strong candidates of Ma by narrowing down the Ma locus to 65-82 kb containing 12-19 predicted genes depending on the haplotypes. The Ma haplotypes were determined by sequencing two bacterial artificial chromosome clones from G.41 (an apple rootstock of genotype Mama) that cover the two distinct haplotypes at the Ma locus. Gene expression profiling in 18 apple germplasm accessions suggested that Ma1 is the major determinant at the Ma locus controlling fruit acidity as Ma1 is expressed at a much higher level than Ma2 and the Ma1 expression is significantly correlated with fruit titratable acidity (R2=0.4543, P=0.0021). In the coding sequences of low acidity alleles of Ma1 and Ma2, sequence variations at the amino acid level between Golden Delicious and G.41 were not detected. But the alleles for high acidity vary considerably between the two genotypes. The low acidity allele of Ma1, Ma1-1455A, is mainly characterized by a mutation at base 1455 in the open reading frame. The mutation leads to a premature stop codon that truncates the carboxyl terminus of Ma1-1455A by 84 amino acids compared with Ma1-1455G. A survey of 29 apple germplasm accessions using marker CAPS1455 that targets the SNP1455 in Ma1 showed that the CAPS1455A allele was associated completely with high pH and highly with low titratable acidity, suggesting that the natural mutation-led truncation is most likely responsible for the abolished function of Ma for low pH or high acidity in apple.
机译:酸度会极大地影响水果的味道和风味,从而影响其市场价值。在成熟的苹果果实中,苹果酸是主要的有机酸。一些研究已经证实,主要的数量性状基因座Ma在很大程度上控制了果实酸度水平的变化。 Ma基因座最近被定义在150 kb的区域中,该区域包含Golden Delicious基因组中16号染色体上的44个预测基因。在这项研究中,我们通过将Ma基因座范围缩小到65-82 kb(包含12-19个预测基因)而确定了两个铝激活的苹果酸转运蛋白样基因(称为Ma1和Ma2)作为Ma的强候选基因,具体取决于单倍型。 Ma单倍型是通过对两个细菌人工染色体克隆(来自G.41(基因型Mama的苹果砧木))进行测序而确定的,这些克隆覆盖了Ma基因座的两个不同的单倍型。在18个苹果种质中的基因表达谱分析表明,Ma1是控制果实酸度的Ma基因座的主要决定因素,因为Ma1的表达水平远高于Ma2,并且Ma1的表达与可滴定的酸度显着相关(R 2 = 0.4543,P = 0.0021)。在Ma1和Ma2的低酸性等位基因编码序列中,未检测到Golden Delicious和G.41之间氨基酸水平的序列变异。但是,高酸性的等位基因在两种基因型之间差异很大。 Ma1的低酸性等位基因Ma1-1455A主要特征是开放阅读框中1455位碱基发生突变。突变导致过早的终止密码子,与Ma1-1455G相比,该密码子将Ma1-1455A的羧基末端截短了84个氨基酸。使用针对Ma1中SNP 1455 的CAPS 1455 标记对29种苹果种质进行的调查显示,CAPS 1455A 等位基因与高等位基因完全相关pH值高且可滴定酸度低,这表明自然突变导致的截短最可能是Ma降低了苹果在低pH值或高酸度下的功能的原因。

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