首页> 外文期刊>Plant Cell Reports >Analysis of genomic DNA of DcACS1, a 1-aminocyclopropane-1-carboxylate synthase gene, expressed in senescing petals of carnation (Dianthus caryophyllus) and its orthologous genes in D. superbus var. longicalycinus
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Analysis of genomic DNA of DcACS1, a 1-aminocyclopropane-1-carboxylate synthase gene, expressed in senescing petals of carnation (Dianthus caryophyllus) and its orthologous genes in D. superbus var. longicalycinus

机译:DcACS1基因组DNA的分析,DcACS1是一种1-氨基环丙烷-1-羧酸合酶基因,在康乃馨(Dianthus caryophyllus)的衰老花瓣中表达,并在D. superbus var中直系同源基因中表达。长黄霉素

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Carnation (Dianthus caryophyllus) flowers exhibit climacteric ethylene production followed by petal wilting, a senescence symptom. DcACS1, which encodes 1-aminocyclopropane-1-carboxylate synthase (ACS), is a gene involved in this phenomenon. We determined the genomic DNA structure of DcACS1 by genomic PCR. In the genome of ‘Light Pink Barbara’, we found two distinct nucleotide sequences: one corresponding to the gene previously shown as DcACS1, designated here as DcACS1a, and the other novel one designated as DcACS1b. It was revealed that both DcACS1a and DcACS1b have five exons and four introns. These two genes had almost identical nucleotide sequences in exons, but not in some introns and 3′-UTR. Analysis of transcript accumulation revealed that DcACS1b is expressed in senescing petals as well as DcACS1a. Genomic PCR analysis of 32 carnation cultivars showed that most cultivars have only DcACS1a and some have both DcACS1a and DcACS1b. Moreover, we found two DcACS1 orthologous genes with different nucleotide sequences from D. superbus var. longicalycinus, and designated them as DsuACS1a and DsuACS1b. Petals of D. superbus var. longicalycinus produced ethylene in response to exogenous ethylene, accompanying accumulation of DsuACS1 transcripts. These data suggest that climacteric ethylene production in flowers was genetically established before the cultivation of carnation.
机译:康乃馨(Dianthus caryophyllus)花表现出更年期的乙烯生成,随后出现花瓣萎ting的衰老症状。编码1-氨基环丙烷-1-羧酸合酶(ACS)的DcACS1是与此现象有关的基因。我们通过基因组PCR确定了DcACS1的基因组DNA结构。在“浅粉红色芭芭拉”的基因组中,我们发现了两个不同的核苷酸序列:一个对应于先前显示为DcACS1的基因,在此命名为DcACS1a,另一个对应于新颖的基因,称为DcACS1b。揭示了DcACS1a和DcACS1b都具有五个外显子和四个内含子。这两个基因在外显子中具有几乎相同的核苷酸序列,但在某些内含子和3'-UTR中却没有。转录物积累的分析表明,DcACS1b与DcACS1a一样在衰老的花瓣中表达。对32个康乃馨品种的基因组PCR分析表明,大多数品种仅具有DcACS1a,而某些品种同时具有DcACS1a和DcACS1b。此外,我们从D. superbus var中发现了两个具有不同核苷酸序列的DcACS1直系同源基因。并命名为DsuACS1a和DsuACS1b。 D.superbus var的花瓣longicalycinus响应于外源乙烯产生了乙烯,并伴随着DsuACS1转录本的积累。这些数据表明,在种植康乃馨之前,已经确定了花卉中更年期乙烯的产生。

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