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咖啡树苯丙氨酸解氨酶基因(CcPAL1)的分离、遗传定位及其在咖啡酰奎宁酸积累中的作用

Isolation and genetic mapping of a Coffea canephora phenylalanine ammonia-lyase gene (CcPAL1) and its involvement in the accumulation of caffeoyl quinic acids.

作者信息

Mahesh Venkataramaiah, Rakotomalala Jean Jacques, Le Gal Lénaïg, Vigne Hélène, de Kochko Alexandre, Hamon Serge, Noirot Michel, Campa Claudine

机构信息

IRD, Génomique et qualité du Café, UMR DGPC, BP 64501, 34304, Montpellier Cedex 5, France.

出版信息

Plant Cell Rep. 2006 Sep;25(9):986-92. doi: 10.1007/s00299-006-0152-3. Epub 2006 Apr 4.

Abstract

Biosynthesis of caffeoylquinic acids occurs via the phenylpropanoid pathway in which the phenylalanine ammonia-lyase (PAL) acts as a key-control enzyme. A full-length cDNA (pF6), corresponding to a PAL gene (CcPAL1), was isolated by screening a Coffea canephora fruit cDNA library and its corresponding genomic sequence was characterized. Amplification of total DNA from seven Coffea species revealed differences in intronic length. This interspecific polymorphism was used to locate the gene on a genetic map established for a backcross progeny between Coffea pseudozanguebariae and C. dewevrei. The CcPAL1 gene was found on the same linkage group, but genetically independent, as a caffeoyl-coenzyme A-O-methyltransferase gene, another gene intervening in the phenylpropanoid pathway. In the same backcross, a lower caffeoylquinic acid content was observed in seeds harvested from plants harbouring the C. pseudozanguebariae CcPAL1 allele. Involvement of the CcPAL1 allelic form in the differential accumulation of caffeoylquinic acids in coffee green beans is then discussed.

摘要

咖啡酰奎宁酸的生物合成通过苯丙烷类途径进行,其中苯丙氨酸解氨酶(PAL)作为关键调控酶。通过筛选卡内弗拉咖啡果实cDNA文库分离出一个与PAL基因(CcPAL1)对应的全长cDNA(pF6),并对其相应的基因组序列进行了表征。对7个咖啡品种的总DNA进行扩增,结果显示内含子长度存在差异。利用这种种间多态性,将该基因定位在为伪赞格巴尔咖啡和德氏咖啡的回交后代构建的遗传图谱上。发现CcPAL1基因与咖啡酰辅酶A - O - 甲基转移酶基因位于同一连锁群,但在遗传上独立,咖啡酰辅酶A - O - 甲基转移酶基因是另一个参与苯丙烷类途径的基因。在同一回交中,从携带伪赞格巴尔咖啡CcPAL1等位基因的植株收获的种子中,观察到咖啡酰奎宁酸含量较低。随后讨论了CcPAL1等位基因形式在咖啡生豆中咖啡酰奎宁酸差异积累中的作用。

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