首页> 外文OA文献 >Insect-Induced Conifer Defense. White Pine Weevil and Methyl Jasmonate Induce Traumatic Resinosis, de Novo Formed Volatile Emissions, and Accumulation of Terpenoid Synthase and Putative Octadecanoid Pathway Transcripts in Sitka Spruce1[w]
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Insect-Induced Conifer Defense. White Pine Weevil and Methyl Jasmonate Induce Traumatic Resinosis, de Novo Formed Volatile Emissions, and Accumulation of Terpenoid Synthase and Putative Octadecanoid Pathway Transcripts in Sitka Spruce1[w]

机译:昆虫诱导的针叶树防御。白松象鼻虫和​​茉莉酸甲酯可导致创伤性树脂病,从头形成的挥发性排放以及Sitka Spruce1中萜类合酶和推定的十八烷类途径转录物的积累[w]

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摘要

Stem-boring insects and methyl jasmonate (MeJA) are thought to induce similar complex chemical and anatomical defenses in conifers. To compare insect- and MeJA-induced terpenoid responses, we analyzed traumatic oleoresin mixtures, emissions of terpenoid volatiles, and expression of terpenoid synthase (TPS) genes in Sitka spruce (Picea sitchensis) following attack by white pine weevils (Pissodes strobi) or application of MeJA. Both insects and MeJA caused traumatic resin accumulation in stems, with more accumulation induced by the weevils. Weevil-induced terpenoid emission profiles were also more complex than emissions induced by MeJA. Weevil feeding caused a rapid release of a blend of monoterpene olefins, presumably by passive evaporation of resin compounds from stem feeding sites. These compounds were not found in MeJA-induced emissions. Both weevils and MeJA caused delayed, diurnal emissions of (−)-linalool, indicating induced de novo biosynthesis of this compound. TPS transcripts strongly increased in stems upon insect attack or MeJA treatment. Time courses and intensity of induced TPS transcripts were different for monoterpene synthases, sesquiterpene synthases, and diterpene synthases. Increased levels of weevil- and MeJA-induced TPS transcripts accompanied major changes in terpenoid accumulation in stems. Induced TPS expression profiles in needles were less complex than those in stems and matched induced de novo emissions of (−)-linalool. Overall, weevils and MeJA induced similar, but not identical, terpenoid defense responses in Sitka spruce. Findings of insect- and MeJA-induced accumulation of allene oxide synthase-like and allene oxide cyclase-like transcripts are discussed in the context of traumatic resinosis and induced volatile emissions in this gymnosperm system.
机译:枯燥的昆虫和茉莉酸甲酯(MeJA)被认为在针叶树中诱导了类似的复杂化学和解剖防御。为了比较昆虫和MeJA诱导的萜类化合物反应,我们分析了白松树象鼻虫(Pissodes strobi)攻击或应用后,Sitka云杉(Picea sitchensis)中的创伤性油树脂混合物,萜类化合物挥发物的释放以及萜类合酶(TPS)基因的表达。 MeJA。昆虫和MeJA都引起茎中外伤性树脂的积累,而象鼻虫则引起更多的积累。象鼻虫引起的类萜排放概况也比MeJA引起的排放更为复杂。象鼻虫进食引起单萜烯烯烃混合物的快速释放,大概是由于树脂化合物从茎部进食部位被动蒸发所致。在MeJA诱导的排放中未发现这些化合物。象鼻虫和MeJA均导致(-)-芳樟醇的昼夜排放延迟,表明该化合物从头进行了生物合成。昆虫攻击或MeJA处理后,茎中的TPS转录物会大大增加。对于单萜合酶,倍半萜合酶和二萜合酶,TPS转录物的时程和强度不同。象鼻和MeJA诱导的TPS转录物水平的增加伴随着茎中萜类化合物积累的重大变化。针中诱导的TPS表达谱不如茎中诱导的TPS表达谱复杂,并且与诱导的(-)-芳樟醇从头排放相匹配。总体而言,象鼻虫和MeJA在Sitka云杉中诱导出相似但不相同的萜类防御反应。在外伤性树脂病和裸子植物系统中诱发挥发物释放的背景下,讨论了昆虫和MeJA诱导的类似氧化烯合酶样和氧化烯环化酶样转录物积累的发现。

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