Soil and Land Systems, School of Environmental Sciences, The University of Adelaide, Adelaide, South Australia 5005, Australia.
New Phytol. 2009 Dec;184(4):962-74. doi: 10.1111/j.1469-8137.2009.03009.x. Epub 2009 Sep 14.
*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.
在这里,我们使用在常规和分隔盆中种植的大麦(Hordeum vulgare)来研究在没有丛枝菌根(AM)正向生长响应的情况下对砷(As)的敏感性。我们检验了这样一个假设,即在接种 AM 真菌后,HvPht1;1 和 HvPht1;2 基因(编码通过根表皮和根毛的直接途径对高亲和力无机正磷酸盐(Pi)的摄取系统)的下调,以及 AM 诱导的 HvPht1;8(编码负责从共生界面向皮质细胞转移 Pi 的 Pi 摄取系统)的上调,在降低 AM 植物的 As 摄取量和降低 As 敏感性方面发挥作用。大麦没有响应,或者对 Glomus intraradices 的定殖没有响应,表现在生长方面。就特定磷(P)摄取(每克根的 P 摄取量)而言,大麦没有反应。As 处理和定殖之间存在显著的相互作用,导致 AM 中的 As 浓度和摄取量低于非菌根(NM)植物。AM 大麦中 As 摄取量的减少和更高的 P:As 摩尔比可以通过 AM 途径的运作来解释,这表现为 HvPht1;8 的诱导和 HvPht1;1 和 HvPht1;2 的下调。