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首页> 外文期刊>Plant physiology >The tomato odorless-2 mutant is defective in trichome-based production of diverse specialized metabolites and broad-spectrum resistance to insect herbivores
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The tomato odorless-2 mutant is defective in trichome-based production of diverse specialized metabolites and broad-spectrum resistance to insect herbivores

机译:番茄无味2突变体在基于毛状体的多种特殊代谢产物生产和对昆虫食草动物的广谱抗性方面存在缺陷

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Glandular secreting trichomes of cultivated tomato (Solanum lycopersicum) produce a wide array of volatile and nonvolatile specialized metabolites. Many of these compounds contribute to the characteristic aroma of tomato foliage and constitute a key part of the language by which plants communicate with other organisms in natural environments. Here, we describe a novel recessive mutation called odorless-2 (od-2) that was identified on the basis of an altered leaf-aroma phenotype. od-2 plants exhibit pleiotrophic phenotypes, including alterations in the morphology, density, and chemical composition of glandular trichomes. Type VI glandular trichomes isolated from od-2 leaves accumulate only trace levels of monoterpenes, sesquiterpenes, and flavonoids. Other foliar defensive compounds, including acyl sugars, glycoalkaloids, and jasmonate-regulated proteinase inhibitors, are produced in od-2 leaves. Growth of od-2 plants under natural field conditions showed that the mutant is highly susceptible to attack by an indigenous flea beetle, Epitrix cucumeris, and the Colorado potato beetle, Leptinotarsa decemlineata. The increased susceptibility of od-2 plants to Colorado potato beetle larvae and to the solanaceous specialist Manduca sexta was verified in no-choice bioassays. These findings indicate that Od-2 is essential for the synthesis of diverse trichome-borne compounds and further suggest that these compounds influence host plant selection and herbivore community composition under natural conditions.
机译:栽培番茄(茄属植物)的腺体分泌毛状体产生多种挥发性和非挥发性的专门代谢产物。这些化合物中的许多有助于番茄叶的独特香气,并且构成了植物与自然环境中其他生物进行交流的语言的关键部分。在这里,我们描述了一种新的隐性突变,称为无味2(od-2),该突变是根据改变的叶香表型确定的。 od-2植物表现出多营养型,包括腺毛状体的形态,密度和化学组成发生变化。从od-2叶片中分离出来的VI型腺毛状体仅积累痕量水平的单萜,倍半萜和类黄酮。在od-2叶片中产生了其他叶防御性化合物,包括酰基糖,糖生物碱和茉莉酸酯调节的蛋白酶抑制剂。 od-2植物在自然田间条件下的生长表明,该突变体极易受到本地跳蚤甲虫Epitrix cucumeris和科罗拉多马铃薯甲虫Leptinotarsa decemlineata的攻击。在非选择生物测定法中证实了od-2植物对科罗拉多马铃薯甲虫幼虫和茄科专长Manduca sexta的敏感性增加。这些发现表明,Od-2对于合成多种由毛状体携带的化合物至关重要,并进一步表明这些化合物在自然条件下会影响宿主植物的选择和草食动物群落组成。

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