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Expression Pattern Suggests a Role of MiR399 in the Regulation of the Cellular Response to Local Pi Increase During Arbuscular Mycorrhizal Symbiosis

机译:表达模式表明miR399在丛枝菌根共生期间对局部PI增加的细胞反应调节的作用

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摘要

Many plants improve their phosphate (Pi) availability by forming mutualistic associations with arbuscular mycorrhizal (AM) fungi. Pi-repleted plants are much less colonized by AM fungi than Pi-depleted plants. This indicates a link between plant Pi signaling and AM development. MicroRNAs (miR) of the 399 family are systemic Pi-starvation signals important for maintenance of Pi homeostasis in Arabidopsis thaliana and might also qualify as signals regulating AM development in response to Pi availability. MiR399 could either represent the systemic low-Pi signal promoting or required for AM formation or they could act as counter players of systemic Pi-availability signals that suppress AM symbiosis. To test either of these assumptions, we analyzed the miR399 family in the AM-capable plant model Medicago truncatula and could experimentally confirm 10 novel MIR399 genes in this species. Pi-depleted plants showed increased expression of mature miR399 and multiple pri-miR399, and unexpectedly, levels of five of the 15 pri-miR399 species were higher in leaves of mycorrhizal plants than in leaves of nonmycorrhizal plants. Compared with nonmycorrhizal Pi-depleted roots, mycorrhizal roots of Pi-depleted M. truncatula and tobacco plants had increased Pi contents due to symbiotic Pi uptake but displayed higher mature miR399 levels. Expression levels of MtPho2 remained low and PHO2-dependent Pi-stress marker transcript levels remained high in these mycorrhizal roots. Hence, an AM symbiosis-related signal appears to increase miR399 expression and decrease PHO2 activity. MiR399 overexpression in tobacco suggested that miR399 alone is not sufficient to improve mycorrhizal colonization supporting the assumption that, in mycorrhizal roots, increased miR399 are necessary to keep the MtPho2 expression and activity low, which would otherwise increase in response to symbiotic Pi uptake.
机译:许多植物通过形成与丛枝菌根(AM)真菌的互动关联来改善磷酸盐(PI)可用性。 PI折叠植物的植物不如PI耗尽的植物都沉淀得多。这表示工厂PI信令与AM开发之间的联系。 399家族的MicroRNAS(MIR)是全身性PI-饥饿的信号,对于拟南芥PI Hoosostasis进行重要的信号,也可能有资格作为调节AM发展的信号,以应对PI可用性。 MIR399可以代表促进或所需的全系统低PI信号,或者它们可以作为抑制AM共生的系统PI可用性信号的计数器播放器。为了测试这些假设中的任何一种,我们分析了Cheabo植物模型Medicago Truncatula中的MiR399系列,可以在实验中确认该物种中的10个新型MiR399基因。 PI-耗尽的植物显示出成熟MiR399和多个PRI-miR399的表达增加,并且出乎意料地,菌根植物的叶子叶片中的15种中叶中的五种含量高于非生理植物的叶子。与非刺激性PI耗尽的根部相比,PI耗尽的M. Truncatula和烟草植物的菌根根引起的PI含量增加,而具有共生PI摄取,但显示出更高的成熟MiR399水平。 MTPHO2的表达水平仍然低,并且在这些菌根根中,PHO2依赖性PI-应激标记物转录水平仍然很高。因此,AM共生相关信号似乎增加了MiR399表达并降低了PHO2活性。 MiR399在烟草中的过表达表明,单独的miR399不足以改善支持假设的菌根殖民化,在菌根根中,增加MiR399是使MTPHO2表达和活性低的必要条件,否则否则会增加对共生PI摄取的影响。

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