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Suppression of Allene Oxide Cyclase in Hairy Roots of Medicago truncatula Reduces Jasmonate Levels and the Degree of Mycorrhization with Glomus intraradices

机译:截断紫花苜蓿毛状根中的烯丙基氧化环化酶可降低茉莉酸酯水平和Glomus intraradices的菌根化程度

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摘要

During the symbiotic interaction between Medicago truncatula and the arbuscular mycorrhizal (AM) fungus Glomus intraradices, an endogenous increase in jasmonic acid (JA) occurs. Two full-length cDNAs coding for the JA-biosynthetic enzyme allene oxide cyclase (AOC) from M. truncatula, designated as MtAOC1 and MtAOC2, were cloned and characterized. The AOC protein was localized in plastids and found to occur constitutively in all vascular tissues of M. truncatula. In leaves and roots, MtAOCs are expressed upon JA application. Enhanced expression was also observed during mycorrhization with G. intraradices. A partial suppression of MtAOC expression was achieved in roots following transformation with Agrobacterium rhizogenes harboring the MtAOC1 cDNA in the antisense direction under control of the cauliflower mosaic virus 35S promoter. In comparison to samples transformed with 35S∷uidA, roots with suppressed MtAOC1 expression exhibited lower JA levels and a remarkable delay in the process of colonization with G. intraradices. Both the mycorrhization rate, quantified by fungal rRNA, and the arbuscule formation, analyzed by the expression level of the AM-specific gene MtPT4, were affected. Staining of fungal material in roots with suppressed MtAOC1 revealed a decreased number of arbuscules, but these did not exhibit an altered structure. Our results indicate a crucial role for JA in the establishment of AM symbiosis.
机译:Medi藜苜蓿与丛枝菌根真菌(AM)真菌Glomus intraradices之间的共生相互作用期间,茉莉酸(JA)发生内源性增加。克隆并鉴定了两个来自截短支原体的JA生物合成酶丙二烯氧化环化酶(AOC)的全长cDNA,分别命名为MtAOC1和MtAOC2。 AOC蛋白位于质体中,并发现其组成性地存在于截叶芒藻的所有血管组织中。在叶和根中,MtAOC在JA施用后表达。内生根瘤菌在菌根菌落期间也观察到表达增强。在用花椰菜花叶病毒35S启动子控制的情况下,在反义方向上带有MtAOC1 cDNA的发根农杆菌转化后,在根中实现了对MtAOC表达的部分抑制。与用35S∷uidA转化的样品相比,具有抑制的MtAOC1表达的根表现出较低的JA含量,并且在G. intraradices移殖过程中显着延迟。通过真菌rRNA定量的菌根形成率和通过AM特异性基因MtPT4的表达水平分析的丛枝形成都受到影响。抑制了 MtAOC1 的根部真菌材料的染色显示丛枝数量减少,但这些丛枝并未表现出改变的结构。我们的结果表明JA在AM共生建立中的关键作用。

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