内生植物促生长肠杆菌EB4B对番茄生长的影响

Q3 Agricultural and Biological Sciences Hellenic Plant Protection Journal Pub Date : 2020-04-18 DOI:10.2478/hppj-2020-0006
M.E.A. Bendaha, H. A. Belaouni
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引用次数: 7

摘要

摘要本研究旨在开发一种防治尖孢镰刀菌的生物药剂。番茄根茎-番茄红素(FORL)。为此,采用双平板法对23株内生细菌分离株进行了体外抑制FORL生长的能力筛选。对3株对FORL拮抗活性最好的菌株进行了生长促进性状的定性筛选,以产铁载体、磷酸溶解和吲哚乙酸(IAA)合成为促进性状。3种候选物对FORL的拮抗值分别为51.51% (EB4B)、51.18% (EB22K)和41.40% (EB2A)。根据16S rRNA基因序列分析,分离株EB4B和EB22K与路德维希肠杆菌EN-119亲缘关系较近,而菌株EB2A被鉴定为乳酸菌NBRC 102595。利用EB2A、EB4B和EB22K菌株对植物病原菌FORL的体外促进作用进行了研究。所选菌株处理显著增加了根长和干重。在不添加FORL的情况下,EB4B的生长促进效果最好,与未添加FORL的对照相比,其根长增加了326.60%,植株干重增加了142.70%。在FORL存在下,菌株EB4B的根长提高了180.81%,植株干重提高了202.15%。这些结果鼓励进一步表征所观察到的肠杆菌sp. EB4B的有益作用,可能用作防治FORL的生物肥料和生物防治剂。
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Effect of the endophytic plant growth promoting Enterobacter ludwigii EB4B on tomato growth
Summary This study aims to develop a biocontrol agent against Fusarium oxysporum f.sp. radicis-lycopersici (FORL) in tomato. For this, a set of 23 bacterial endophytic isolates has been screened for their ability to inhibit in vitro the growth of FORL using the dual plate assay. Three isolates with the most sound antagonistic activity to FORL have been qualitatively screened for siderophore production, phosphates solubilization and indolic acetic acid (IAA) synthesis as growth promotion traits. Antagonistic values of the three candidates against FORL were respectively: 51.51 % (EB4B), 51.18 % (EB22K) and 41.40 % (EB2A). Based on 16S rRNA gene sequence analysis, the isolates EB4B and EB22K were closely related to Enterobacter ludwigii EN-119, while the strain EB2A has been assigned to Leclercia adecarboxylata NBRC 102595. The promotion of tomato growth has been assessed in vitro using the strains EB2A, EB4B and EB22K in presence of the phytopathogen FORL. The treatments with the selected isolates increased significantly the root length and dry weight. Best results were observed in isolate EB4B in terms of growth promotion in the absence of FORL, improving 326.60 % of the root length and 142.70 % of plant dry weight if compared with untreated controls. In the presence of FORL, the strain EB4B improved both root length (180.81 %) and plant dry weight (202.15 %). These results encourage further characterization of the observed beneficial effect of Enterobacter sp. EB4B for a possible use as biofertilizer and biocontrol agent against FORL.
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来源期刊
Hellenic Plant Protection Journal
Hellenic Plant Protection Journal Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.50
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