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首页> 外文期刊>The Plant Cell >Abscisic Acid Coordinates Nod Factor and Cytokinin Signaling during the Regulation of Nodulation in Medicago truncatula
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Abscisic Acid Coordinates Nod Factor and Cytokinin Signaling during the Regulation of Nodulation in Medicago truncatula

机译:截断苜蓿结瘤过程中脱落酸与结瘤因子和细胞分裂素信号的协调

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Nodulation is tightly regulated in legumes to ensure appropriate levels of nitrogen fixation without excessive depletion of carbon reserves. This balance is maintained by intimately linking nodulation and its regulation with plant hormones. It has previously been shown that ethylene and jasmonic acid (JA) are able to regulate nodulation and Nod factor signal transduction. Here, we characterize the nature of abscisic acid (ABA) regulation of nodulation. We show that application of ABA inhibits nodulation, bacterial infection, and nodulin gene expression in Medicago truncatula. ABA acts in a similar manner as JA and ethylene, regulating Nod factor signaling and affecting the nature of Nod factor-induced calcium spiking. However, this action is independent of the ethylene signal transduction pathway. We show that genetic inhibition of ABA signaling through the use of a dominant-negative allele of ABSCISIC ACID INSENSITIVE1 leads to a hypernodulation phenotype. In addition, we characterize a novel locus of M. truncatula, SENSITIVITY TO ABA, that dictates the sensitivity of the plant to ABA and, as such, impacts the regulation of nodulation. We show that ABA can suppress Nod factor signal transduction in the epidermis and can regulate cytokinin induction of the nodule primordium in the root cortex. Therefore, ABA is capable of coordinately regulating the diverse developmental pathways associated with nodule formation and can intimately dictate the nature of the plants' response to the symbiotic bacteria.
机译:在豆科植物中严格控制结瘤,以确保适当程度的固氮,而不会过度消耗碳储备。通过将结瘤及其调控与植物激素紧密联系,可以维持这种平衡。先前已证明,乙烯和茉莉酸(JA)能够调节结瘤和Nod因子信号转导。在这里,我们表征了结瘤脱落酸(ABA)调节的性质。我们表明,ABA的应用可抑制Medi藜苜蓿中的结节,细菌感染和结节蛋白基因表达。 ABA以与JA和乙烯相似的方式起作用,调节Nod因子信号转导并影响Nod因子引起的钙峰值的性质。然而,该作用独立于乙烯信号转导途径。我们显示通过使用ABSCISIC ACID INSENSITIVETIVE1的显性负等位基因对ABA信号的遗传抑制导致超结瘤表型。此外,我们表征了特产毛run分支杆菌的一个新位点,即对ABA的敏感性,它决定了植物对ABA的敏感性,因此影响根瘤的调控。我们表明,ABA可以抑制表皮中的Nod因子信号转导,并且可以调节根皮层中结节原基的细胞分裂素诱导。因此,ABA能够协调调节与根瘤形成相关的多种发育途径,并可以直接决定植物对共生细菌的反应性质。

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