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Arbuscular mycorrhizal colonization reduces arsenate uptake in barley via downregulation of transporters in the direct epidermal phosphate uptake pathway

机译:丛枝菌根定植通过直接表皮磷酸盐吸收途径中转运蛋白的下调来减少大麦中的砷酸盐吸收

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摘要

*Here, we used barley (Hordeum vulgare) grown in normal and compartmented pots to investigate sensitivity to arsenic (As) in the absence of a positive growth response to arbuscular mycorrhizas (AM). *We tested the hypothesis that upon inoculation with AM fungi downregulation of HvPht1;1 and HvPht1;2 genes (encoding high-affinity inorganic orthophosphate (P(i))-uptake systems in a direct pathway via root epidermis and root hairs) and upregulation of the AM-induced HvPht1;8 (encoding the P(i)-uptake system responsible for transfer of P(i) from the symbiotic interface to cortical cells) play a role in decreased As uptake and hence reduced As sensitivity in AM plants. *Barley did not respond, or responded negatively to colonization by Glomus intraradices in terms of growth. In terms of specific phosphorus (P) uptake (P uptake per g of root) barley was nonresponsive. There was a significant interaction between As treatment and colonization, resulting in a lower As concentration and uptake in AM compared with nonmycorrhizal (NM) plants. *The decreased uptake of As and higher P : As molar ratios in the AM barley can be explained by the operation of the AM pathway as indicated by induction of HvPht1;8 and by down-regulation of HvPht1;1 and HvPht1;2.
机译:*在这里,我们使用在普通盆栽和大棚盆栽的大麦(Hordeum vulgare)调查对砷(As)的敏感性,而对丛枝菌根(AM)的生长无积极反应。 *我们检验了以下假设:接种AM真菌后,HvPht1; 1和HvPht1; 2基因(通过根表皮和根毛的直接途径编码高亲和力无机正磷酸盐(P(i))摄取系统)下调并上调AM诱导的HvPht1; 8(编码负责P(i)从共生界面转移到皮层细胞的P(i)吸收系统)的作用在AM植物中降低了As吸收并因此降低了As敏感性。 *大麦在生长方面没有反应,或者对Glomus内辐射对定植没有反应。就特定磷(P)吸收(每克根的P吸收)而言,大麦无反应。与非菌根(NM)植物相比,砷处理和定殖之间存在显着的相互作用,导致AM中较低的砷浓度和吸收。 * AM大麦中As的吸收减少和较高的P:As摩尔比可以通过诱导HvPht1; 8以及下调HvPht1; 1和HvPht1; 2所指示的AM途径来解释。

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