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The Plant Growth Promoting Substance, Lumichrome, Mimics Starch, and Ethylene-Associated Symbiotic Responses in Lotus and Tomato Roots

机译:莲and和番茄根中的植物生长促进物质,发光色素,模拟淀粉和乙烯相关的共生响应

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摘要

Symbiosis involves responses that maintain the plant host and symbiotic partner’s genetic program; yet these cues are far from elucidated. Here we describe the effects of lumichrome, a flavin identified from Rhizobium spp., applied to lotus (Lotus japonicus) and tomato (Solanum lycopersicum). Combined transcriptional and metabolite analyses suggest that both species shared common pathways that were altered in response to this application under replete, sterile conditions. These included genes involved in symbiosis, as well as transcriptional and metabolic responses related to enhanced starch accumulation and altered ethylene metabolism. Lumichrome priming also resulted in altered colonization with either Mesorhizobium loti (for lotus) or Glomus intraradices/G. mossea (for tomato). It enhanced nodule number but not nodule formation in lotus; while leading to enhanced hyphae initiation and delayed arbuscule maturation in tomato.
机译:共生涉及维持植物宿主和共生伴侣的遗传程序的反应;但是这些线索还远没有阐明。在这里,我们描述了适用于荷叶(Lotus japonicus)和番茄(Solanum lycopersicum)的发光素(一种从根瘤菌属中鉴定出的黄酮)的作用。组合的转录和代谢产物分析表明,这两种物种在共同的无菌条件下均具有共同的途径,这些途径会因应此应用而改变。这些包括与共生有关的基因,以及与淀粉积累增加和乙烯代谢改变有关的转录和代谢反应。发光的底漆还导致定殖的中生根瘤菌(对于莲花)或Glomus intraradices / G发生改变。 mossea(用于番茄)。它增加了莲子的结节数,但没有增加结节的形成。同时导致番茄的菌丝萌发增强和丛枝成熟延迟。

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