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首页> 外文期刊>BMC Plant Biology >Jasmonate-dependent induction of polyphenol oxidase activity in tomato foliage is important for defense against Spodoptera exigua but not against Manduca sexta
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Jasmonate-dependent induction of polyphenol oxidase activity in tomato foliage is important for defense against Spodoptera exigua but not against Manduca sexta

机译:番茄叶中茉莉酸酯依赖性的多酚氧化酶活性诱导对防御斜纹夜蛾具有重要的作用,但对六倍体不起作用。

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Background Jasmonates are involved in plant defense, participating in the timely induction of defense responses against insect herbivores from different feeding guilds and with different degrees of host specialization. It is less clear to what extent the induction of plant defense is controlled by different members of the jasmonate family and how specificity of the response is achieved. Using transgenic plants blocked in jasmonic acid (JA) biosynthesis, we previously showed that JA is required for the formation of glandular trichomes and trichome-borne metabolites as constitutive defense traits in tomato, affecting oviposition and feeding behavior of the specialist Manduca sexta. In contrast, JA was not required for the local induction of defense gene expression after wounding. In JA-deficient plants, the JA precursor oxophytodienoic acid (OPDA) substituted as a regulator of defense gene expression maintaining considerable resistance against M. sexta larvae. In this study, we investigate the contribution of JA and OPDA to defense against the generalist herbivore Spodoptera exigua. Results S. exigua preferred JA-deficient over wild-type tomato plants as a host for both oviposition and feeding. Feeding preference for JA-deficient plants was caused by constitutively reduced levels of repellent terpenes. Growth and development of the larvae, on the other hand, were controlled by additional JA-dependent defense traits, including the JA-mediated induction of foliar polyphenol oxidase (PPO) activity. PPO induction was more pronounced after S. exigua herbivory as compared to mechanical wounding or M. sexta feeding. The difference was attributed to an elicitor exclusively present in S. exigua oral secretions. Conclusions The behavior of M. sexta and S. exigua during oviposition and feeding is controlled by constitutive JA/JA-Ile-dependent defense traits involving mono- and sesquiterpenes in both species, and cis-3-hexenal as an additional chemical cue for M. sexta. The requirement of jasmonates for resistance of tomato plants against caterpillar feeding differs for the two species. While the OPDA-mediated induction of local defense is sufficient to restrict growth and development of M. sexta larvae in absence of JA/JA-Ile, defense against S. exigua relied on additional JA/JA-Ile dependent factors, including the induction of foliar polyphenol oxidase activity in response to S. exigua oral secretions.
机译:背景茉莉酸酯参与植物防御,参与适时诱导来自不同进食行会和不同宿主专业化程度的对食草动物的防御反应。尚不清楚茉莉酸酯家族的不同成员在何种程度上控制植物防御的诱导以及如何实现应答的特异性。使用茉莉酸(JA)生物合成中受阻的转基因植物,我们先前表明JA是形成番茄毛状毛状体和毛状体代谢产物的必需成分,是番茄的本构防御性状,影响了番石榴(Manduca sexta)的产卵和喂养行为。相反,创伤后局部诱导防御基因表达并不需要JA。在缺乏JA的植物中,JA前体氧代乙二酸(OPDA)被取代为防御基因表达的调节剂,维持了对六面体分枝杆菌幼虫的相当大的抗性。在这项研究中,我们调查了JA和OPDA对防御一般食草动物斜纹夜蛾的贡献。结果作为产卵和饲喂的宿主,S。exigua优先选择JA缺陷型而不是野生型番茄植株。缺乏JA的植物的采食偏好是由于驱避性萜烯水平的组成性降低而引起的。另一方面,幼虫的生长和发育受其他依赖JA的防御性状控制,包括JA介导的叶多酚氧化酶(PPO)活性的诱导。与机械伤或M. sexta喂养相比,S。exigua食草后PPO诱导更为明显。差异归因于仅存在于exigua口腔分泌物中的激发子。结论在产卵和摄食过程中,M。sexta和S. exigua的行为受包括JA / JA-Ile在内的两个物种的单萜和倍半萜组成的防御性状的控制,而cis-3-hexenal作为M的附加化学提示。sexta。茉莉酸盐对番茄植物抵抗毛毛虫摄食的需求因两种物种而异。尽管在没有JA / JA-Ile的情况下,由OPDA介导的局部防御的诱导足以限制性分枝杆菌幼虫的生长和发育,但是对S. exigua的防御依赖于其他JA / JA-Ile依赖性因子,包括诱导JA / JA-Ile。叶S. exigua口腔分泌物响应的叶多酚氧化酶活性。

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