江西农业学报
江西農業學報
강서농업학보
ACTA AGRICULTURAE JIANGXI
2013年
7期
25-29
,共5页
于盱%王海棠%冯美英%梁呈元%李维林
于盱%王海棠%馮美英%樑呈元%李維林
우우%왕해당%풍미영%량정원%리유림
薄荷%GPPS基因%表达%克隆
薄荷%GPPS基因%錶達%剋隆
박하%GPPS기인%표체%극륭
Mint%GPPS gene%Expression%Clone
牻牛儿基焦磷酸合酶(GPPS Geranyl diphosphate synthase )为短链异戊烯基合酶家族成员,催化1分子的IPP与DMAPP形成GPP,为单萜提供碳骨架。实验从我国薄荷品种“738”中克隆了GPPS大小亚基cDNA全长序列,对其进行序列分析,并研究GPPS基因在薄荷根、茎、叶、花中的相对表达量。结果:GPPS大亚基cDNA序列ORF全长1131 bp,编码377个氨基酸,GPPS小亚基cDNA序列ORF全长942 bp,编码313个氨基酸。研究获得的GPPS基因所编码氨基酸与薄荷属其他种的GPPS氨基酸序列高度相似。 GPPS大亚基基因在薄荷品种“738”不同组织中均有表达,幼叶中的表达量最高。
牻牛兒基焦燐痠閤酶(GPPS Geranyl diphosphate synthase )為短鏈異戊烯基閤酶傢族成員,催化1分子的IPP與DMAPP形成GPP,為單萜提供碳骨架。實驗從我國薄荷品種“738”中剋隆瞭GPPS大小亞基cDNA全長序列,對其進行序列分析,併研究GPPS基因在薄荷根、莖、葉、花中的相對錶達量。結果:GPPS大亞基cDNA序列ORF全長1131 bp,編碼377箇氨基痠,GPPS小亞基cDNA序列ORF全長942 bp,編碼313箇氨基痠。研究穫得的GPPS基因所編碼氨基痠與薄荷屬其他種的GPPS氨基痠序列高度相似。 GPPS大亞基基因在薄荷品種“738”不同組織中均有錶達,幼葉中的錶達量最高。
방우인기초린산합매(GPPS Geranyl diphosphate synthase )위단련이무희기합매가족성원,최화1분자적IPP여DMAPP형성GPP,위단첩제공탄골가。실험종아국박하품충“738”중극륭료GPPS대소아기cDNA전장서렬,대기진행서렬분석,병연구GPPS기인재박하근、경、협、화중적상대표체량。결과:GPPS대아기cDNA서렬ORF전장1131 bp,편마377개안기산,GPPS소아기cDNA서렬ORF전장942 bp,편마313개안기산。연구획득적GPPS기인소편마안기산여박하속기타충적GPPS안기산서렬고도상사。 GPPS대아기기인재박하품충“738”불동조직중균유표체,유협중적표체량최고。
Geranyl diphosphate synthase (GPPS) is a member of short-chain prenyltransferase family, which can catalyze the formation of Geranyl diphosphate (GPP) from IPP and DMAPP, and GPP can provide carbon skeleton for monoterpene .The cDNA complete sequences containing large and small subunit of GPPS were cloned from mint variety “738” in this research.The se-quences were analyzed, and the relative expression of the gene GPPS in the root, stem, leaf and flower of mint was also studied . The results showed that GPPS large subunit cDNA complete sequences had a 1131 bp ORF encoding 377 amino acid residues, and GPPS small subunit cDNA complete sequences had a 942 bp ORF encoding 313 amino acid residues.GPPS large and small subunit protein shared high identity with other mint varieties .GPPS large subunit expression was found in different tissues of mint variety“738”, and the expression in young leaves was stronger than that in other tissues .