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成团泛菌菌株E325产生的抗生作用和酸化作用可能有助于抑制梨火疫病菌。

Antibiosis and acidification by Pantoea agglomerans strain E325 may contribute to suppression of Erwinia amylovora.

作者信息

Pusey P L, Stockwell V O, Rudell D R

机构信息

USDA-ARS, Tree Fruit Research Laboratory, Wenatchee, WA 98801, USA.

出版信息

Phytopathology. 2008 Oct;98(10):1136-43. doi: 10.1094/PHYTO-98-10-1136.

Abstract

Pantoea agglomerans strain E325, a commercially available antagonist for fire blight of apple and pear, was originally selected through screening based on suppression of Erwinia amylovora on flower stigmas, but specific mechanisms of antagonism were unknown. Bacterial modification of pH was evaluated as a possible mechanism by analyzing stigma exudates extracted from 'Gala' apple stigmas. The pH values for field samples were only slightly lower than controls, but indicated a range (pH 5 to 6) conducive for antibiotic activity according to subsequent assays. Under low-phosphate and low-pH conditions, an antibacterial product of E325 with high specificity to E. amylovora was effective at low concentrations. A minimum of 20 to 40 ng of a ninhydrin-reactive compound purified using RP-HPLC caused visible inhibition in assays. Activity was heat stable and unaffected by amino acids, iron, or enzymes known to affect antibiotics of P. agglomerans. Antibiosis was diminished, however, under basic conditions, and with increasing phosphate concentrations at pH 6 and 7. Inhibition was not observed in media containing phosphate concentrations commonly used in antibiosis assays. We propose that E325 suppresses the fire blight pathogen not only by competing for nutrients on the stigma, but by producing an antibiotic specific to E. amylovora. Further work is necessary to substantiate that the compound is produced and active on flower stigmas.

摘要

成团泛菌E325菌株是一种市售的苹果和梨火疫病拮抗剂,最初是通过筛选基于对花柱头处解淀粉欧文氏菌的抑制作用而选出的,但拮抗的具体机制尚不清楚。通过分析从“嘎啦”苹果柱头提取的柱头渗出物,评估了细菌对pH的调节作为一种可能的机制。田间样品的pH值仅略低于对照,但根据后续测定表明其范围(pH 5至6)有利于抗生素活性。在低磷酸盐和低pH条件下,E325对解淀粉欧文氏菌具有高特异性的抗菌产物在低浓度下有效。使用RP-HPLC纯化的至少20至40 ng茚三酮反应性化合物在测定中引起明显抑制。活性是热稳定的,不受氨基酸、铁或已知影响成团泛菌抗生素的酶的影响。然而,在碱性条件下以及在pH 6和7时随着磷酸盐浓度的增加,抗菌作用减弱。在含有抗菌测定中常用磷酸盐浓度的培养基中未观察到抑制作用。我们提出E325不仅通过在柱头上竞争营养物质来抑制火疫病病原体,还通过产生对解淀粉欧文氏菌特异的抗生素来抑制。需要进一步的工作来证实该化合物在花柱头上产生并具有活性。

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