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针叶树基因组中的细胞色素P450单加氧酶:云杉和松树中萜类氧化酶超家族成员的发现

Cytochrome P450 mono-oxygenases in conifer genomes: discovery of members of the terpenoid oxygenase superfamily in spruce and pine.

作者信息

Hamberger B, Bohlmann J

机构信息

Michael Smith Laboratories, University of British Columbia, 301-2185 East Mall, Vancouver, BC, Canada V6T 1Z4.

出版信息

Biochem Soc Trans. 2006 Dec;34(Pt 6):1209-14. doi: 10.1042/BST0341209.

Abstract

Diterpene resin acids, together with monoterpenes and sesquiterpenes, are the most prominent defence chemicals in conifers. These compounds belong to the large group of structurally diverse terpenoids formed by enzymes known as terpenoid synthases. CYPs (cytochrome P450-dependent mono-oxygenases) can further increase the structural diversity of these terpenoids. While most terpenoids are characterized as specialized or secondary metabolites, some terpenoids, such as the phytohormones GA (gibberellic acid), BRs (brassinosteroids) and ABA (abscisic acid), have essential functions in plant growth and development. To date, very few CYP genes involved in conifer terpenoid metabolism have been functionally characterized and were limited to two systems, yew (Taxus) and loblolly pine (Pinus taeda). The characterized yew CYP genes are involved in taxol diterpene biosynthesis, while the only characterized pine terpenoid CYP gene is part of DRA (diterpene resin acid) biosynthesis. These CYPs from yew and pine are members of two apparently conifer-specific CYP families within the larger CYP85 clan, one of four plant CYP multifamily clans. Other CYP families within the CYP85 clan were characterized from a variety of angiosperms with functions in terpenoid phytohormone metabolism of GA, BR, and ABA. The recent development of EST (expressed sequence tag) and FLcDNA (where FL is full-length) sequence databases and cDNA collections for species of two conifers, spruce (Picea) and pine, allows for the discovery of new terpenoid CYPs in gymnosperms by means of large-scale sequence mining, phylogenetic analysis and functional characterization. Here, we present a snapshot of conifer CYP data mining, discovery of new conifer CYPs in all but one family within the CYP85 clan, and suggestions for their functional characterization. This paper will focus on the discovery of conifer CYPs associated with diterpene metabolism and CYP with possible functions in the formation of GA, BR, and ABA in conifers.

摘要

二萜树脂酸与单萜和倍半萜一起,是针叶树中最主要的防御性化学物质。这些化合物属于由称为萜类合酶的酶形成的结构多样的萜类化合物大类。细胞色素P450依赖性单加氧酶(CYPs)可以进一步增加这些萜类化合物的结构多样性。虽然大多数萜类化合物被归类为特殊或次生代谢物,但一些萜类化合物,如植物激素赤霉素(GA)、油菜素甾体类(BRs)和脱落酸(ABA),在植物生长发育中具有重要功能。迄今为止,很少有参与针叶树萜类代谢的CYP基因得到功能鉴定,并且仅限于两个系统,即红豆杉(Taxus)和火炬松(Pinus taeda)。已鉴定的红豆杉CYP基因参与紫杉醇二萜生物合成,而唯一已鉴定的松树萜类CYP基因是二萜树脂酸(DRA)生物合成的一部分。来自红豆杉和松树的这些CYPs是较大的CYP85家族中两个明显的针叶树特异性CYP家族的成员,CYP85家族是四个植物CYP多家族之一。CYP85家族中的其他CYP家族已在多种被子植物中得到鉴定,其功能与GA、BR和ABA的萜类植物激素代谢有关。最近,云杉(Picea)和松树这两种针叶树物种的EST(表达序列标签)和FLcDNA(其中FL是全长)序列数据库以及cDNA文库的发展,使得通过大规模序列挖掘、系统发育分析和功能鉴定在裸子植物中发现新的萜类CYP成为可能。在这里,我们展示了针叶树CYP数据挖掘的概况,在CYP85家族中除一个家族外的所有家族中发现了新的针叶树CYP,并对其功能鉴定提出了建议。本文将重点关注与二萜代谢相关的针叶树CYP以及在针叶树中GA、BR和ABA形成中可能具有功能的CYP的发现。

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