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Distortion of trichome morphology by the hairless mutation of tomato affects leaf surface chemistry

机译:番茄无毛突变对毛状体形态的扭曲影响叶片表面化学

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摘要

Trichomes are specialized epidermal structures that function as physical and chemical deterrents against arthropod herbivores. Aerial tissues of cultivated tomato (Solanum lycopersicum) are populated by several morphologically distinct trichome types, the most abundant of which is the type VI glandular trichome that produces various specialized metabolites. Here, the effect of the hairless (hl) mutation on trichome density and morphology, chemical composition, and resistance to a natural insect herbivore of tomato was investigated. The results show that the major effect of hl on pubescence results from structural distortion (bending and swelling) of all trichome types in aerial tissues. Leaf surface extracts and isolated type VI glands from hl plants contained wild-type levels of monoterpenes, glycoalkaloids, and acyl sugars, but were deficient in sesquiterpene and polyphenolic compounds implicated in anti-insect defence. No-choice bioassays showed that hl plants are compromised in resistance to the specialist herbivore Manduca sexta. These results establish a link between the morphology and chemical composition of glandular trichomes in cultivated tomato, and show that hl-mediated changes in these leaf surface traits correlate with decreased resistance to insect herbivory.
机译:毛癣菌是专门的表皮结构,可作为对节肢动物食草动物的物理和化学威慑作用。栽培番茄(茄属番茄)的气道组织中分布有几种形态独特的毛状体,其中最丰富的是产生各种专门代谢产物的VI型腺毛状体。在此,研究了无毛(hl)突变对番茄毛线密度和形态,化学组成以及对天然食草动物的抗性的影响。结果表明,hl对青春期的主要影响是由气管组织中所有毛状体类型的结构变形(弯曲和肿胀)引起的。来自hl植物的叶表面提取物和分离的VI型腺体含有野生型水平的单萜,糖生物碱和酰基糖,但是缺乏倍半萜烯和涉及抗昆虫防御作用的多酚化合物。无选择生物测定法显示,hl植物对专业食草动物曼杜卡六倍体的抗性受到损害。这些结果在栽培番茄的腺毛状体的形态和化学组成之间建立了联系,并且表明这些叶表面性状的hl介导的变化与对昆虫食草性的抗性降低相关。

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