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韧皮部筛管分子和乳汁管在罂粟生物碱生物合成及积累中的作用

The role of phloem sieve elements and laticifers in the biosynthesis and accumulation of alkaloids in opium poppy.

作者信息

Samanani Nailish, Alcantara Joenel, Bourgault Richard, Zulak Katherine G, Facchini Peter J

机构信息

Department of Biological Sciences, University of Calgary, Calgary, Alberta, T2N 1N4, Canada.

出版信息

Plant J. 2006 Aug;47(4):547-63. doi: 10.1111/j.1365-313X.2006.02801.x. Epub 2006 Jun 30.

Abstract

The benzylisoquinoline alkaloids of opium poppy, including the narcotic analgesics morphine and codeine, accumulate in the multinucleate cytoplasm of specialized laticifers that accompany vascular tissues throughout the plant. In mature opium poppy plants, immunofluorescence labeling using specific antibodies showed that four alkaloid biosynthetic enzymes, (S)-norcoclaurine 6-O-methyltransferase (6OMT), (S)-coclaurine N-methyltransferase (CNMT), (S)-3'-hydroxy-N-methylcoclaurine-4'-O-methyltransferase (4'OMT) and salutaridinol-7-O-acetyltransferase (SAT) were restricted to sieve elements of the phloem adjacent or proximal to laticifers. The identity of sieve elements was confirmed by (i) the specific immunogold labeling of the characteristic cytoplasm of this cell type, (ii) the co-localization of a sieve element-specific H(+)-ATPase with all biosynthetic enzymes and (iii) the strict association of sieve plates with immunofluorescent cells. The localization of laticifers was demonstrated antibodies specific to major latex protein (MLP), which is characteristic of this cell type. In situ hybridization using antisense RNA probes for 6OMT, CNMT, 4'OMT and SAT showed that the corresponding gene transcripts were found in the companion cell paired with each sieve element. Seven benzylisoquinoline alkaloid biosynthetic enzymes, (S)-N-methylcoclaurine 3'-hydroxylase (CYP80B1), berberine bridge enzyme, codeinone reductase, 6OMT, CNMT, 4'OMT and SAT were localized by immunofluorescence labeling to the sieve elements in the root and hypocotyl of opium poppy seedlings. The abundance of these enzymes increased rapidly between 1 and 3 days after seed germination. The localization of seven biosynthetic enzymes to the sieve elements provides strong support for the unique, cell type-specific biosynthesis of benzylisoquinoline alkaloids in the opium poppy.

摘要

罂粟中的苄基异喹啉生物碱,包括麻醉性镇痛药吗啡和可待因,积累在贯穿植物的、与维管组织相伴的特化乳汁管的多核细胞质中。在成熟的罂粟植株中,使用特异性抗体进行的免疫荧光标记显示,四种生物碱生物合成酶,即(S)-去甲乌药碱6-O-甲基转移酶(6OMT)、(S)-乌药碱N-甲基转移酶(CNMT)、(S)-3'-羟基-N-甲基乌药碱-4'-O-甲基转移酶(4'OMT)和水苏糖醇-7-O-乙酰转移酶(SAT),局限于与乳汁管相邻或靠近乳汁管的韧皮部筛管分子中。筛管分子的身份通过以下方式得以确认:(i)对这种细胞类型的特征性细胞质进行特异性免疫金标记;(ii)一种筛管分子特异性H(+)-ATP酶与所有生物合成酶的共定位;(iii)筛板与免疫荧光细胞的紧密关联。乳汁管的定位通过针对主要乳胶蛋白(MLP)的特异性抗体得以证实,MLP是这种细胞类型的特征。使用针对6OMT、CNMT、4'OMT和SAT的反义RNA探针进行原位杂交显示,相应的基因转录本存在于与每个筛管分子配对的伴胞中。七种苄基异喹啉生物碱生物合成酶,即(S)-N-甲基乌药碱3'-羟化酶(CYP80B1)、小檗碱桥酶、可待因酮还原酶、6OMT、CNMT、4'OMT和SAT,通过免疫荧光标记定位在罂粟幼苗根和下胚轴的筛管分子中。这些酶的丰度在种子萌发后的1至3天内迅速增加。七种生物合成酶在筛管分子中的定位为罂粟中苄基异喹啉生物碱独特的、细胞类型特异性生物合成提供了有力支持。

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