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Beneficial contribution of the arbuscular mycorrhizal fungus, Rhizophagus irregularis, in the protection of Medicago truncatula roots against benzo[a]pyrene toxicity

机译:丛枝菌根真菌的有益贡献,根瘤菌不规则,在保护Medicago truncatula根系对苯并[a]芘的毒性

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摘要

Arbuscular mycorrhizal fungi are able to improve plant establishment in polluted soils but little is known about the genes involved in the plant protection against pollutant toxicity by mycorrhization, in particular in the presence of polycyclic aromatic hydrocarbons (PAH). The present work aims at studying in both symbiotic partners, Medicago truncatula and Rhizophagus irregularis: (i) expression of genes putatively involved in PAH tolerance (MtSOD, MtPOX, MtAPX, MtGST, MtTFIIS, and MtTdp1 alpha), (ii) activities of antioxidant (SOD, POX) and detoxification (GST) enzymes, and (iii) H2O2 and the heavy PAH, benzo[a]pyrene (B[a]P) accumulation. In the presence of B[a]P, whereas induction of the enzymatic activities was detected in R. irregularis and non-mycorrhizal roots as well as upregulation of the gene expressions in the non-mycorrhizal roots, downregulation of the gene expressions and decrease of enzyme activities were observed in mycorrhizal roots. Moreover, B[a]P increased H2O2 production in non-mycorrhizal roots and in R. irregularis but not in mycorrhizal roots. In addition, a lower B[a]P bioaccumulation in mycorrhizal roots was measured in comparison with non-mycorrhizal roots. Being less affected by pollutant toxicity, mycorrhizal roots did not activate any defense mechanism either at the gene expression regulation level or at the enzymatic level.
机译:丛枝菌根真菌能够改善污染土壤的植物建立,但对植物保护毒性的基因毫无疑问,特别是在多环芳烃(PAH)存在下。目前的工作旨在在共生合作伙伴,Medicago Truncatula和Rhizophagus Ifregularis中学:(i)表达抗氧化剂(II)抗氧化剂活性的PAH耐受性(MTSOD,MTPOX,MTAPX,MTGST,MTTFIIS和MTTDP1α)的表达(SOD,POX)和排毒(GST)酶,和(III)H 2 O 2和重型PAH,苯并[a]芘(b [a] p)积累。在B [a] p的存在下,诱导酶活性在R. unregularis和非菌根根中检测到,并且在非菌根根部的基因表达中检测到,下调基因表达和减少在菌根根中观察到酶活性。此外,B [A] P增加非菌根根部的H2O2生产和R. InRegularis,但不在菌根根中。此外,与非菌根根部相比,测量了菌根根部的较低的B [A] p生物累积。受污染物毒性的影响较小,菌根根部未在基因表达调控水平或酶水平处激活任何防御机制。

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