Biosynthesis of monolignols. Genomic and reverse genetic approaches

被引:20
作者
Richard A. Dixon
M.S. Srinivasa Reddy
机构
[1] Samuel Roberts Noble Foundation,Plant Biology Division
关键词
expressed sequence tag; genetic manipulation; lignification; monolignol;
D O I
10.1023/B:PHYT.0000045486.50637.37
中图分类号
学科分类号
摘要
The biosynthesis of monolignols is one of the most studied pathways of plant natural product biosynthesis. However, the pathway has recently undergone considerable revision, and it would appear that our understanding of the exact routes for synthesis of the building blocks of lignin and lignans is still not fully understood. Early studies of in vitro enzyme specificity failed to appreciate the catalytic promiscuity of some of the enzymes of the monolignol pathway, and the evolving model of a metabolic grid for monolignol biosynthesis may fail to appreciate the possible extent of metabolic channeling within the pathway. New approaches to the study of monolignol biosynthesis include genomics, advanced cellular imaging techniques, and transgenic manipulation. This article summarizes the use of these approaches to gain a better understanding of the operation of a complex metabolic pathway.
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页码:289 / 306
页数:17
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共 421 条
[21]  
Doerner PW(1996)Phenylpropanoid metabolism: bio-synthesis of monolignols, lignans and neolignans, lignins and suberins Gene 179 61-71
[22]  
Dixon RA(1999)Synthesis and Plant J 19 9-20
[23]  
Lamb CJ(2001)r-inducing activities of coniferyl alcohol â-glycosides Plant J 27 455-465
[24]  
Elkind Y(1999)The phenylpropanoid pathway and plant defense-a genomics perspective Current Biol 9 317-320
[25]  
Baucher M(2002)The biosynthesis of monolignols: a "metabolic grid", or independent pathways to guaiacyl and syringyl units? Plant J 30 47-59
[26]  
BernardVailhe MA(2002)Metabolic engineering: prospects for crop improvement through the genetic manipulation of phenylpropanoid biosynthesis and defense responses-a review Plant J 30 33-45
[27]  
Chabbert B(2000)Three 4-coumarate: coenzyme A ligases in Plant J 22 223-234
[28]  
Besle JM(2000) represent two evolutionarily divergent classes in angiosperms Plant Cell 13 73-88
[29]  
Opsomer C(1994)Identification of 4-coumarate: coenzyme A ligase (4CL) substrate recognition domains Plant J 6 339-350
[30]  
VanMontagu M(1995)Inverse relation-ship between systemic resistance of plants to microorganisms and to insect herbivory Biosci. Biotech. Biochem 59 929-931