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玉米中细胞色素P450基因家族的表达

Expression of a cytochrome P450 gene family in maize.

作者信息

Frey M, Kliem R, Saedler H, Gierl A

机构信息

Max-Planck-Institut für Züchtungsforschung, Abteilung Molekulare Pflanzengenetik, Köln, Germany.

出版信息

Mol Gen Genet. 1995 Jan 6;246(1):100-9. doi: 10.1007/BF00290138.

Abstract

Maize seedlings, like seedlings of many other plants, are rich in cytochrome P450 (P450) enzyme activity. Four P450 genes (CYPzm1-4), isolated from a seedling-specific cDNA library, are characterized by a transient and seedling-specific expression pattern. The maximum steady state mRNA levels are reached at 3 days in root and at 7 days in shoot tissue, respectively. All four genes belong to one gene family and are closely related to the CYP71 family of plant P450 genes, which includes the enzymes of the ripening avocado fruit (CYP71A1) and eggplant hypocotyls (CYP71A2, A3, A4). The expression of these related P450 genes in monocot and dicot plants indicates that these enzymes play a significant role in plants; however, the in vivo enzyme functions are unknown. The divergence of the four members of the maize gene family is sufficiently high to account for different substrate and/or reaction specificity. Although the general expression pattern of the four genes is identical, the maximum steady-state mRNA levels vary in different maize lines. In situ hybridisation reveals the highest mRNA levels in the coleoptile, the first developed leaflets, the ground tissue of the nodular complex, and in the cortex and pith of the region of cell division in the root. The mapping of the maize CYPzm genes shows that, as in animals, P450 genes of the same family can be clustered. The presence of the CYPzm gene cluster in maize argues for generation of distinct plant P450 gene families by gene duplication.

摘要

与许多其他植物的幼苗一样,玉米幼苗富含细胞色素P450(P450)酶活性。从一个幼苗特异性cDNA文库中分离出的四个P450基因(CYPzm1 - 4),其特征在于具有瞬时和幼苗特异性的表达模式。根中在第3天、地上组织中在第7天分别达到最大稳态mRNA水平。所有四个基因都属于一个基因家族,并且与植物P450基因的CYP71家族密切相关,该家族包括成熟鳄梨果实(CYP71A1)和茄子下胚轴(CYP71A2、A3、A4)中的酶。这些相关的P450基因在单子叶和双子叶植物中的表达表明这些酶在植物中发挥着重要作用;然而,其体内酶功能尚不清楚。玉米基因家族的四个成员的差异足够大,足以解释不同的底物和/或反应特异性。尽管这四个基因的总体表达模式相同,但不同玉米品系中的最大稳态mRNA水平有所不同。原位杂交显示在胚芽鞘、最初发育的小叶、结节复合体的基本组织以及根中细胞分裂区域的皮层和髓中mRNA水平最高。玉米CYPzm基因的定位表明,与动物一样,同一家族的P450基因可以成簇。玉米中CYPzm基因簇的存在支持通过基因复制产生不同的植物P450基因家族。

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