首页> 外文OA文献 >Molecular Interactions between the Specialist Herbivore Manduca sexta (Lepidoptera, Sphingidae) and Its Natural Host Nicotiana attenuata. I. Large-Scale Changes in the Accumulation of Growth- and Defense-Related Plant mRNAs1
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Molecular Interactions between the Specialist Herbivore Manduca sexta (Lepidoptera, Sphingidae) and Its Natural Host Nicotiana attenuata. I. Large-Scale Changes in the Accumulation of Growth- and Defense-Related Plant mRNAs1

机译:食草动物之间的分子相互作用 Manduca sexta(鳞翅目,鞘翅目)及其天然 寄主烟草。一,大规模变革 生长与防御相关植物的积累 mRNA1

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摘要

Plants respond to herbivore attack with a dramatic functional reorganization that involves the activation of direct and indirect defenses and tolerance, which in turn make large demands on primary metabolism. Here we provide the first characterization of the transcriptional reorganization that occurs after insect attack in a model plant-herbivore system: Nicotiana attenuata Torr. ex Wats.-Manduca sexta. We used mRNA differential display to characterize one-twentieth of the insect-responsive transcriptome of N. attenuata and verified differential expression for 27 cDNAs. Northern analyses were used to study the effects of folivory and exposure to airborne methyl jasmonate and for kinetic analyses throughout a 16-h- light/8-h-dark cycle. Sequence similarity searches allowed putative functions to be assigned to 15 transcripts. Genes were related to photosynthesis, electron transport, cytoskeleton, carbon and nitrogen metabolism, signaling, and a group responding to stress, wounding, or invasion of pathogens. Overall, transcripts involved in photosynthesis were strongly down-regulated, whereas those responding to stress, wounding, and pathogens and involved in shifting carbon and nitrogen to defense were strongly up-regulated. The majority of transcripts responded similarly to airborne methyl jasmonate and folivory, and had tissue- and diurnal-specific patterns of expression. Transcripts encoding Thr deaminase (TD) and a putative retrotransposon were absent in control plants, but were strongly induced after herbivory. Full-length sequences were obtained for TD and the pathogen-inducible α-dioxygenase, PIOX. Effects of abiotic and biotic stimuli were investigated for transcripts encoding TD, importin α, PIOX, and a GAL83-like kinase cofactor.
机译:植物对草食动物的攻击作出了巨大的功能重组,包括直接和间接防御和耐受的激活,这反过来又对初级代谢产生了巨大的需求。在这里,我们提供了昆虫在模型植物-草食动物系统:Nicotiana detecta Torr袭击后发生的转录重组的第一个特征。前Wats.-Manduca sexta。我们使用mRNA差异显示来表征减毒猪笼草的昆虫应答转录组的二十分之一,并验证了27个cDNA的差异表达。北方分析用于研究叶味和暴露于空气传播的茉莉酸甲酯的影响,以及在整个16小时光照/ 8小时黑暗循环中进行动力学分析。序列相似性搜索允许将推定功能分配给15个转录本。基因与光合作用,电子运输,细胞骨架,碳和氮的代谢,信号传导以及对压力,伤害或病原体入侵的反应有关。总体而言,参与光合作用的转录本被强烈下调,而那些应对压力,创伤和病原体以及涉及将碳和氮转移至防御系统的转录本被强烈上调。多数转录本对机载茉莉酸甲酯和叶酸的反应相似,并具有组织和昼夜特异性表达模式。对照植物中不存在编码Thr脱氨酶(TD)和假定的反转录转座子的转录本,但在食草后被强烈诱导。获得了TD和病原体诱导的α-双加氧酶PIOX的全长序列。研究了非生物和生物刺激对编码TD,importinα,PIOX和GAL83样激酶辅因子的转录本的影响。

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