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首页> 外文期刊>The Plant Cell >An Arabidopsis soil-salinity-tolerance mutation confers ethylene-mediated enhancement of sodium/potassium homeostasis.
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An Arabidopsis soil-salinity-tolerance mutation confers ethylene-mediated enhancement of sodium/potassium homeostasis.

机译:拟南芥耐盐碱突变赋予乙烯介导的钠/钾稳态平衡。

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摘要

High soil Na concentrations damage plants by increasing cellular Na accumulation and K loss. Excess soil Na stimulates ethylene-induced soil-salinity tolerance, the mechanism of which we here define via characterization of an Arabidopsis thaliana mutant displaying transpiration-dependent soil-salinity tolerance. This phenotype is conferred by a loss-of-function allele of ETHYLENE OVERPRODUCER1 (ETO1; mutant alleles of which cause increased production of ethylene). We show that lack of ETO1 function confers soil-salinity tolerance through improved shoot Na/K homeostasis, effected via the ETHYLENE RESISTANT1-CONSTITUTIVE TRIPLE RESPONSE1 ethylene signaling pathway. Under transpiring conditions, lack of ETO1 function reduces root Na influx and both stelar and xylem sap Na concentrations, thereby restricting root-to-shoot delivery of Na. These effects are associated with increased accumulation of RESPIRATORY BURST OXIDASE HOMOLOG F (RBOHF)-dependent reactive oxygen species in the root stele. Additionally, lack of ETO1 function leads to significant enhancement of tissue K status by an RBOHF-independent mechanism associated with elevated HIGH-AFFINITY K+ TRANSPORTER5 transcript levels. We conclude that ethylene promotes soil-salinity tolerance via improved Na/K homeostasis mediated by RBOHF-dependent regulation of Na accumulation and RBOHF-independent regulation of K accumulation.
机译:高浓度的土壤钠会增加细胞中的钠积累和钾素损失,从而损害植物。过量的土壤Na刺激了乙烯诱导的土壤盐分耐受性,我们在这里通过表征拟南芥突变体的表现来定义其机制,该突变体表现出依赖于蒸腾作用的土壤盐分耐受性。该表型是由乙炔过生产者1(ETO1;其突变等位基因引起乙烯产量增加)的功能丧失等位基因赋予的。我们表明,缺乏ETO1功能通过改善茎芽Na / K稳态而赋予土壤耐盐性,这是通过乙烯抵抗1-组成性三重反应1乙烯信号传导途径实现的。在蒸腾条件下,缺乏ETO1功能会降低根系Na的流入量,同时降低茎和木质部汁液中Na的浓度,从而限制了根系对茎叶的Na传递。这些作用与根尖碑中呼吸爆发性氧化酶同系物F(RBOHF)依赖性活性氧的积累增加有关。此外,缺乏ETO1功能会通过与RBOHF无关的机制显着增强组织K状态,而这种机制与HIGH-AFFINITY K + TRANSPORTER5转录水平的升高有关。我们得出的结论是,乙烯通过改善Na / K稳态而提高了土壤盐碱耐受性,所述Na / K稳态由RBOHF依赖性的Na积累调控和RBOHF依赖性的K积累调控。

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