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Effects of beauvericin on root cell transmembrane electric potential, electrolyte leakage and respiration of maize roots with different susceptibility to Fusarium

机译:金霉素对镰刀菌敏感性不同的玉米根细胞跨膜电位,电解质渗漏和呼吸的影响

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Effect of beauvericin on root cell transmembrane electric potential (EM), electrolyte leakage and respiration of roots were studied in two maize cultivars (Zea mays L.) with different susceptibility to this toxigenic metabolite produced by Fusarium. Beauvericin treatment induced rapid and significant depolarisation of membrane potentials of the outer cortical cells of maize roots of tolerant cv. Lucia. The range of depolarisation was dose dependent with maximum depolarisation of 55 mV (55 ± 7 mV, n = 7) at 200µM beauvericin. In contrast, membrane potentials of beauvericin susceptible cv. Pavla was only slightly depolarised by identical concentrations of beauvericin and the value of depolarisation represented only half of the value of tolerant cv. Lucia (27 ± 6 mV, n = 8). The values of membrane potentials of root cells of tolerant cv. Lucia were higher (137 ± 9 mV, n = 26) and more electrogenic (60 ± 2 mV, n = 3) than in susceptible cv. Pavla (125 ± 7 mV, n = 28), (47 ± 2 mV, n = 3), respectively. Our results confirmed that 2 h treatment with 50µM beauvericin does not cause irreversible changes in plasma membrane H+-ATPase, because fusicoccin, an H+-ATPase activator diminished the depolarizing effect of beauvericin on the EM. Further experiments revealed beauvericin-induced increase of membrane conductivity in root cells of Pavla but not in root cells of Lucia. Time-coarse experiments showed that 25µM beauvericin induced slight, but significant inhibition of root respiration in both cultivars during the first two hours of treatment, and the inhibition was higher in cv. Lucia than in cv. Pavla. The depolarisation of EM in the outer cortical cells of maize roots may be the result of a cumulative effect of beauvericin on ATP supply, activity of H+-ATPase and mainly on the permeability of plasmalemma. Increased beauvericin tolerance in maize might be associated with the increased ability of tolerant plant to maintain normal ion fluxes and membrane potentials across the plasmalemma of root cells in the presence of beauvericin.
机译:在对玉米镰刀菌产生的产毒代谢物敏感性不同的两个玉米品种(Zea mays L.)中,研究了金霉素对根细胞跨膜电位(EM),电解质泄漏和根系呼吸的影响。博韦霉素处理可诱导耐性简历玉米根部外皮层细胞膜电位迅速显着去极化。露西亚去极化的范围与剂量有关,在200µM的beauvericin中最大去极化为55 mV(55±7 mV,n = 7)。相反,beauvericin的膜电位易感简历。 Pavla仅在相同浓度的beauvericin中略微去极化,去极化的值仅代表耐受性cv值的一半。露西亚(27±6 mV,n = 8)。耐cv的根细胞的膜电位值。与易感性简历相比,露西娅(Lucia)更高(137±9 mV,n = 26)和更多的电性(60±2 mV,n = 3) Pavla(125±7 mV,n = 28),(47±2 mV,n = 3)。我们的结果证实,用50μM的beauvericin处理2 h不会引起质膜H + -ATPase发生不可逆的变化,这是因为Fusicoccin是一种H + -ATPase激活剂,可减少beauvericin对EM的去极化作用。进一步的实验表明,beauvericin诱导了Pavla根细胞中膜电导率的增加,而在Lucia根细胞中却没有。粗略的时间实验表明,在治疗的前两个小时,25µM的beauvericin对两个品种的根系呼吸作用均产生了轻微但显着的抑制作用,而对cv的抑制作用更高。露西亚比在简历中。帕夫拉玉米根外皮细胞中EM的去极化可能是beauvericin对ATP供应,H + -ATPase活性以及主要对浆膜通透性的累积影响的结果。玉米中对beauvericin的耐受性增加可能与耐受植物在beauvericin的存在下维持穿过根细胞质膜的正常离子通量和膜电位的能力增强有关。

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