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首页> 外文期刊>BMC Plant Biology >Isolation and characterization of the C-class MADS-box gene involved in the formation of double flowers in Japanese gentian
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Isolation and characterization of the C-class MADS-box gene involved in the formation of double flowers in Japanese gentian

机译:日本龙胆中形成双花的C类MADS-box基因的分离与鉴定

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Background Generally, double-flowered varieties are more attractive than single-flowered varieties in ornamental plants. Japanese gentian is one of the most popular floricultural plants in Japan, and it is desirable to breed elite double-flowered cultivars. In this study, we attempted to characterize a doubled-flower mutant of Japanese gentian. To identify the gene that causes the double-flowered phenotype in Japanese gentian, we isolated and characterized MADS-box genes. Results Fourteen MADS-box genes were isolated, and two of them were C-class MADS-box genes (GsAG1 and GsAG2). Both GsAG1 and GsAG2 were categorized into the PLE/SHP subgroup, rather than the AG/FAR subgroup. In expression analyses, GsAG1 transcripts were detected in the second to fourth floral whorls, while GsAG2 transcripts were detected in only the inner two whorls. Transgenic Arabidopsis expressing GsAG1 lacked petals and formed carpeloid organs instead of sepals. Compared with a single-flowered gentian cultivar, a double-flowered gentian mutant showed decreased expression of GsAG1 but unchanged expression of GsAG2. An analysis of the genomic structure of GsAG1 revealed that the gene had nine exons and eight introns, and that a 5,150-bp additional sequence was inserted into the sixth intron of GsAG1 in the double-flowered mutant. This insert had typical features of a Ty3/gypsy-type LTR-retrotransposon, and was designated as Tgs1. Virus-induced gene silencing of GsAG1 by the Apple latent spherical virus vector resulted in the conversion of the stamen to petaloid organs in early flowering transgenic gentian plants expressing an Arabidopsis FT gene. Conclusions These results revealed that GsAG1 plays a key role as a C-functional gene in stamen organ identity. The identification of the gene responsible for the double-flowered phenotype will be useful in further research on the floral morphogenesis of Japanese gentian.
机译:背景技术通常,双花品种在观赏植物中比单花品种更具吸引力。日本龙胆是日本最受欢迎的花艺植物之一,因此最好繁殖双花的优良品种。在这项研究中,我们试图表征日本龙胆的双花突变体。为了鉴定在日本龙胆中引起双花表型的基因,我们分离并鉴定了MADS-box基因。结果分离到14个MADS-box基因,其中两个为C类MADS-box基因(GsAG1和GsAG2)。 GsAG1和GsAG2都被归类为PLE / SHP子组,而不是AG / FAR子组。在表达分析中,在第二至第四花轮中检测到GsAG1转录物,而仅在两个内轮中检测到GsAG2转录物。表达GsAG1的转基因拟南芥缺少花瓣,形成了类异器官,而不是萼片。与单花龙胆品种相比,双花龙胆突变体显示GsAG1的表达减少,但GsAG2的表达未改变。对GsAG1的基因组结构进行分析后发现,该基因具有9个外显子和8个内含子,并且在双花突变体的GsAG1的6个内含子中插入了一个5150 bp的附加序列。该插入片段具有Ty3 /吉普赛型LTR-反转录转座子的典型特征,并命名为Tgs1。苹果潜伏球形病毒载体对病毒诱导的GsAG1基因沉默导致在表达拟南芥FT基因的早期开花转基因龙胆植物中将雄蕊转化为花瓣状器官。结论这些结果表明,GsAG1作为雄蕊器官身份的C功能基因起着关键作用。鉴定引起重花表型的基因将有助于进一步研究日本龙胆的花的形态发生。

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