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Characterization of the peach homologue of the ethylene receptor, PpETR1, reveals some unusual features regarding transcript processing

机译:乙烯受体PpETR1的桃子同源物的表征揭示了一些有关转录本加工的异常特征

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To identify which processes in peach, Prunus persica [L.] Batsch., are associated with changes in ethylene perception, we cloned and characterized a peach homologue of the gene encoding the ethylene receptor, ETR1. A fragment of the peach gene, PpETR1, obtained via PCR using degenerate primers against peach genomic DNA was used to screen a cDNA library made from ripening fruit. The resulting cDNA and subsequent 3′ RACE clones indicate that the PpETR1 coding region is highly similar to other ETR1 homologues. However, the mRNA undergoes unusual alternative splicing that potentially results in three different mature transcripts. Use of an alternative 3′ splice site to remove the last intron in PpETR1a results in a polypeptide that is missing three amino acids within the receiver-like domain. Retention of the terminal intron occurs in PpETR1b, which, if translated, would result in a truncated protein lacking a receiver-like domain. Fruit from three cultivars with substantially different ripening times were examined from 7 to 130 days after bloom using RT-PCR to characterize expression of the intron-retaining and fully spliced mRNAs. There were only slight differences in the abundance of these mRNAs among cultivars during fruit development; however, one of the slow-ripening cultivars showed a substantial increase in expression of the unspliced mRNA in pre-climacteric fruit. Variations in PpETR1 transcript abundance in wounding experiments indicate that the properly spliced and unspliced versions have different accumulation patterns in fruit, whereas both are essentially constitutive in leaves. These observations indicate that changes in ethylene sensitivity may occur during wounding in fruit.
机译:为了确定桃中的哪个过程与李子乙烯感的变化有关,我们克隆并鉴定了编码乙烯受体ETR1的桃子同系物。使用针对桃子基因组DNA的简并引物通过PCR获得的桃子基因PpETR1片段用于筛选由成熟果实制成的cDNA文库。所得的cDNA和随后的3'RACE克隆表明PpETR1编码区与其他ETR1同源物高度相似。但是,mRNA经历了不寻常的选择性剪接,可能导致三种不同的成熟转录本。使用替代的3'剪接位点去除PpETR1a中的最后一个内含子会导致多肽在受体样结构域内缺失三个氨基酸。末端内含子的保留在PpETR1b中发生,如果被翻译,将导致截短的蛋白质缺少受体样结构域。在开花后7至130天,使用RT-PCR检查了三个具有不同成熟时间的品种的果实,以表征内含子保留和完全剪接的mRNA的表达。在果实发育过程中,这些品种之间这些mRNA的丰度只有细微的差异。然而,一种缓慢成熟的品种在更年期前的果实中未剪接的mRNA的表达显着增加。创伤实验中PpETR1转录本丰度的变化表明,正确剪接和未剪接的版本在果实中具有不同的积累模式,而两者在叶片中基本上都是组成型的。这些观察结果表明乙烯的敏感性变化可能在果实受伤期间发生。

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