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Evaluation of Rhizosphere Bacterial Antagonists for the Management of Fusarium Wilt in Tomato Plants

机译:根际细菌拮抗剂对番茄植物镰刀菌枯萎病的评价

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Fusarium wilt of tomato caused by Fusarium oxysporum f. sp. lycopersici is a serious problem limiting tomato production worldwide. The intent of the study was to evaluate potential of bacterial antagonists to suppress fusarium wilt disease development and evaluate the role of the strains as plant growth-promoting rhizobacteria (PGPR) in tomato. Among fifty-two bacterial strains isolated from rhizoplane and rhizosphere of healthy tomato roots, five isolates viz . isolate-01, isolate-17, isolate-23, isolate-24 and isolate-32 were found highly inhibitory against mycelial growth of Fusarium sp., in dual cultures.? Highest inhibition of radial mycelial growth of pathogen in dual culture was induced by isolate-24 (72.2%) followed by isolate-32 (71.9%). In greenhouse experiments percent disease incidence (PDI) was lower in artificially inoculated tomato plants treated with isolate-32 (7.8%) and isolate-24 (8.9%), with percent disease reduction over control of 85.6% and 83.6%, respectively. These isolates also exhibited significant difference in seed germination percentage under artificial inoculation along with pathogen, highest germination percentage was recorded by isolate-32 (91%) followed by isolate-24 (89%) as compared to pathogen inoculated control (24%). The study concluded that the two native rhizobacteria isolated from root zone of healthy tomato plants could successfully protect the tomato plants from the lethal infection by Fusarium sp. while enhancing the germination of the treated plants.
机译:由雪松oxysporum f引起的番茄枯萎病。 sp。 Lycopersici是一个严重的问题,限制了全球番茄生产。该研究的目的是评估细菌拮抗剂的潜力,以抑制镰刀菌枯萎病的发育,并评估菌株作为植物生长促进番茄植物的作用(PGPR)。在从rhizoplane和健康番茄根的根际分离的五十二个细菌菌株中,五个分离株。分离物-01,分离物-17,分离物-23,分离物-24和分离物-22的高度抑制抑制镰刀菌SP的菌丝体生长。,在双重培养中。通过分离-24(72.2%)诱导双重培养物中病原体桡骨菌菌丝生长的最高抑制(72.2%),然后分离为-32(71.9%)。在温室实验中,用分离株-32(7.8%)和分离物-24(8.9%)处理的人工接种番茄植物中疾病发病率(PDI)较低,疾病百分比分别减少85.6%和83.6%。这些分离物也表现出人工接种下的种子萌发百分比差异,以及病原体,与病原体接种对照(24%)相比,通过分离物-32(91%)进行分离物-22(91%)的最高萌发百分比。该研究得出结论,从健康番茄植物的根区分离的两种天然流脉杆菌可以成功地保护番茄植物免受致死感染的镰刀菌。同时增强经处理的植物的萌发。

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