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Silencing an N-Acyltransferase-Like Involved in Lignin Biosynthesis in Nicotiana attenuata Dramatically Alters Herbivory-Induced Phenolamide Metabolism

机译:沉默N-酰基转移酶样参与烟草中木质素的生物合成戏剧性地改变了草食性诱导的酚酰胺代谢。

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摘要

In a transcriptomic screen of Manduca sexta-induced N-acyltransferases in leaves of Nicotiana attenuata, we identified an N-acyltransferase gene sharing a high similarity with the tobacco lignin-biosynthetic hydroxycinnamoyl-CoA:shikimate/quinate hydroxycinnamoyl transferase (HCT) gene whose expression is controlled by MYB8, a transcription factor that regulates the production of phenylpropanoid polyamine conjugates (phenolamides, PAs). To evaluate the involvement of this HCT-like gene in lignin production as well as the resulting crosstalk with PA metabolism during insect herbivory, we transiently silenced (by VIGs) the expression of this gene and performed non-targeted (UHPLC-ESI/TOF-MS) metabolomics analyses. In agreement with a conserved function of N. attenuata HCT-like in lignin biogenesis, HCT-silenced plants developed weak, soft stems with greatly reduced lignin contents. Metabolic profiling demonstrated large shifts (up to 12% deregulation in total extracted ions in insect-attacked leaves) due to a large diversion of activated coumaric acid units into the production of developmentally and herbivory-induced coumaroyl-containing PAs (N′,N′′-dicoumaroylspermidine, N′,N′′-coumaroylputrescine, etc) and to minor increases in the most abundant free phenolics (chlorogenic and cryptochlorogenic acids), all without altering the production of well characterized herbivory-responsive caffeoyl- and feruloyl-based putrescine and spermidine PAs. These data are consistent with a strong metabolic tension, exacerbated during herbivory, over the allocation of coumaroyl-CoA units among lignin and unusual coumaroyl-containing PAs, and rule out a role for HCT-LIKE in tuning the herbivory-induced accumulation of other PAs. Additionally, these results are consistent with a role for lignification as an induced anti-herbivore defense.
机译:在减毒烟草叶片中的Manduca sexta诱导的N-酰基转移酶的转录组筛选中,我们鉴定出了与烟草木质素-生物合成羟基肉桂酸CoA:shikimate / quinate羟基肉桂酸转移酶(HCT)基因具有高度相似性的N-酰基转移酶基因由MYB8控制,MYB8是一种转录因子,可调节苯丙烷类多胺偶联物(酚酰胺,PAs)的产生。为了评估这种HCT样基因在木质素生产中的参与以及在昆虫食草过程中与PA代谢产生的串扰,我们暂时(通过VIG)沉默了该基因的表达并进行了非靶向(UHPLC-ESI / TOF- MS)代谢组学分析。与减毒猪笼草样HCT样在木质素生物发生中的保守功能一致,沉默了HCT的植物发育出软弱的茎,木质素含量大大降低。由于活化的香豆酸单元大量转移到发育性和草食性诱导的含香豆酰基PAs的生产中,因此,代谢谱分析显示出较大的变化(昆虫侵害的叶片中的总提取离子失调高达12%)。 '-二十二碳酰氨基亚精胺,N',N''-四碳酰氨基尿嘧啶等)和少量的最丰富的游离酚类(绿原酸和隐绿原酸)增加,所有这些都不会改变特征明确的基于草食性的咖啡酰和阿魏酸酯的腐胺的生产和亚精胺PAs。这些数据与在草食期间加剧的强代谢张力有关,因为木质素和不常见的含有香豆酰PA的香豆脂酰-CoA单位在香豆素中的分配增加,并排除了HCT-LIKE在调节由草粉诱导的其他PA积累中的作用。 。此外,这些结果与木质化作为诱导的抗草食动物防御的作用是一致的。

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