Mandujano-Chávez A, Schoenbeck M A, Ralston L F, Lozoya-Gloria E, Chappell J
Agronomy Department, University of Kentucky, Lexington 40546-0091, USA.
Arch Biochem Biophys. 2000 Sep 15;381(2):285-94. doi: 10.1006/abbi.2000.1961.
Jasmonates are well documented for their ability to modulate the expression of plant genes and to influence specific aspects of disease/pest resistance traits. We and others have been studying the synthesis of sesquiterpene phytoalexins in elicitor/pathogen-challenged plants and have sought to determine if methyl jasmonate (MeJA) could substitute for fungal elicitors in the induction of capsidiol accumulation by tobacco cell cultures. The current results demonstrate that MeJA does in fact induce phytoalexin accumulation, but with a much more delayed induction time course than elicitor. While elicitor treatment induced strong but transient changes in key enzymes of sesquiterpene biosynthesis, sesquiterpene cyclase, and aristolochene/deoxy-capsidiol hydroxylase, MeJA did not. Instead, MeJA caused a protracted induction of cyclase activity and only a low level of hydroxylase activity. MeJA induced the expression of at least two sesquiterpene cyclase genes, including one that had not been observed previously in elicitor-induced mRNA populations. Only a small portion of the total sesquiterpene cyclase mRNA induced by MeJA was associated with polysomal RNA, suggesting that the MeJA treatment imposed both transcriptional and posttranscriptional regulation in tobacco cells. These results are not consistent with MeJA playing a role in orchestrating defense responses in elicitor-treated tobacco cells, but do provide evidence that MeJA induces a subset of genes coding for the biosynthesis of sesquiterpene phytoalexins.
茉莉酸酯能够调节植物基因表达并影响抗病/抗虫性状的特定方面,这一点已有充分的文献记载。我们和其他研究人员一直在研究激发子/病原体刺激的植物中倍半萜植保素的合成,并试图确定茉莉酸甲酯(MeJA)是否能够替代真菌激发子来诱导烟草细胞培养物中辣椒素醇的积累。目前的结果表明,MeJA实际上确实能诱导植保素积累,但诱导时间进程比激发子延迟得多。激发子处理会引起倍半萜生物合成关键酶、倍半萜环化酶以及马兜铃烯/脱氧辣椒素醇羟化酶强烈但短暂的变化,而MeJA则不会。相反,MeJA会导致环化酶活性的持续诱导,且羟化酶活性水平较低。MeJA诱导了至少两个倍半萜环化酶基因的表达,其中包括一个在激发子诱导的mRNA群体中之前未观察到的基因。MeJA诱导的总倍半萜环化酶mRNA中只有一小部分与多聚核糖体RNA相关,这表明MeJA处理对烟草细胞施加了转录和转录后调控。这些结果与MeJA在协调激发子处理过的烟草细胞中的防御反应中发挥作用不一致,但确实提供了证据表明MeJA诱导了编码倍半萜植保素生物合成的一部分基因。