Role of the phloem in the biochemistry and ecophysiology of benzylisoquinoline alkaloid metabolism

被引:25
作者
Lee, Eun-Jeong [1 ]
Hagel, Jillian M. [1 ]
Facchini, Peter J. [1 ]
机构
[1] Univ Calgary, Dept Biol Sci, Calgary, AB T2N 1N4, Canada
来源
FRONTIERS IN PLANT SCIENCE | 2013年 / 4卷
关键词
benzylisoquinoline alkaloid; phloem; laticifer; sieve element; plant defense; CAMPTOTHECA-ACUMINATA DECNE; OPIUM POPPY; ISOQUINOLINE ALKALOIDS; PAPAVER-SOMNIFERUM; COPTIS-JAPONICA; CYANOGENIC GLUCOSIDES; SIEVE ELEMENTS; PLANT DEFENSE; BIOSYNTHESIS; LATICIFERS;
D O I
10.3389/fpls.2013.00182
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Benzylisoquinol ne alkaloids (BlAs) are a diverse group of biologically active specialized metabolites produced mainly in four plant families. BIA metabolism is likely of monophyletic origin and involves multiple enzymes yielding structurally diverse compounds. Several BlAs possess defensive properties against pathogenic microorganisms and herbivores. Opium poppy (Papaver sornniferurn: Papaveraceae) has emerged as a model system to investigate the cellular localization of BIA biosynthesis. Although alkaloids accumulate in the laticifer cytoplasm (latex) of opium poppy, corresponding biosynthetic enzymes and gene transcripts are localized to proximal sieve elements and companion cells, respectively. In contrast, BIA metabolism in the non-laticiferous meadow rue (Thalictrum flavum; Ranunculaceae) occurs independent of the phloem. Evidence points toward the adoption of diverse strategies for the biosynthesis and accumulation of alkaloids as defensive compounds. Recruitment of cell types involved in BIA metabolism, both within and external to the phloem, was likely driven by selection pressures unique to different taxa. The biochemistry, cell biology, ecophysiology, and evolution of B IA metabolism are considered in this context.
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页数:7
相关论文
共 57 条
[1]  
[Anonymous], 2009, TIMETREE LIFE
[2]  
Barken I, 2008, ANTICANCER RES, V28, P3701
[3]   Plant sterols and host plant suitability for a phloem-feeding insect [J].
Behmer, Spencer T. ;
Grebenok, Robert J. ;
Douglas, Angela E. .
FUNCTIONAL ECOLOGY, 2011, 25 (03) :484-491
[4]   Insect sterol nutrition and physiology: A global overview [J].
Behmer, ST ;
Nes, WD .
ADVANCES IN INSECT PHYSIOLOGY, VOL 31, 2003, 31 :1-72
[5]   A tale of three cell types: Alkaloid biosynthesis is localized to sieve elements in opium poppy [J].
Bird, DA ;
Franceschi, VR ;
Facchini, PJ .
PLANT CELL, 2003, 15 (11) :2626-2635
[6]   Alkaloids from the Bark of Guatteria hispida and Their Evaluation as Antioxidant and Antimicrobial Agents [J].
Costa, Emmanoel Vilaca ;
Pinheiro, Maria Lucia B. ;
Barison, Andersson ;
Campos, Francinete R. ;
Salvador, Marcos J. ;
Maia, Beatriz Helena L. N. S. ;
Cabral, Elaine C. ;
Eberlin, Marcos N. .
JOURNAL OF NATURAL PRODUCTS, 2010, 73 (06) :1180-1183
[7]   Characterization of Three O-Methyltransferases Involved in Noscapine Biosynthesis in Opium Poppy [J].
Dang, Thu-Thuy T. ;
Facchini, Peter J. .
PLANT PHYSIOLOGY, 2012, 159 (02) :618-+
[8]   Systematic silencing of benzylisoquinoline alkaloid biosynthetic genes reveals the major route to papaverine in opium poppy [J].
Desgagne-Penix, Isabel ;
Facchini, Peter J. .
PLANT JOURNAL, 2012, 72 (02) :331-344
[9]   Opium poppy and Madagascar periwinkle: model non-model systems to investigate alkaloid biosynthesis in plants [J].
Facchini, Peter J. ;
De Luca, Vincenzo .
PLANT JOURNAL, 2008, 54 (04) :763-784
[10]   Can Arabidopsis make complex alkaloids? [J].
Facchini, PJ ;
Bird, DA ;
St-Pierre, B .
TRENDS IN PLANT SCIENCE, 2004, 9 (03) :116-122