Bacillus subtilis strain BS87 as a biocontrol agent against spot blotch disease: effect on growth, nutrient status, and antioxidant enzymes in wheat

IF 2.4 4区 生物学 Q2 PLANT SCIENCES Acta Physiologiae Plantarum Pub Date : 2024-02-27 DOI:10.1007/s11738-024-03657-5
Priyanka Chandra, Rinki Khobra, Parul Sundha, Amaresh Chandra, Rakesh Kumar Sharma, Gyanendra Pratap Singh
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Abstract

Bacillus spp. being rhizospheric bacteria has the potential to provide protection from biotic stresses and also to enhance plant growth. The present study was carried out on bacterial isolate, Bacillus subtilis strain BS87 which has the potential to inhibit several phytopathogens (Bipolaris sorokiniana, Fusarium oxysporum, Fusarium spp., Aspergillus niger, Aspergillus sp., Penicillium sp. and, Rhizoctonia solani) in vitro and is also able to secrete cell-wall-degrading enzymes including protease and chitinase. Isolate BS87, also exhibited several plant growth-promoting traits, such as nutrient solubilization, siderophore, indole-3-acetic acid (IAA), and hydrogen cyanide (HCN) production. Hence, a pot experiment was carried out to evaluate the efficacy of bacterial isolate on plant growth and spot blotch disease in wheat. Results demonstrated that BS87 significantly (p < 0.05) enhanced plant growth and yield in wheat. Chlorophyll content was significantly (p < 0.05) improved when treated with BS87. The spot blotch disease was significantly (p < 0.05) inhibited in wheat by isolate BS87. Lower levels of antioxidant enzymes, including superoxide dismutase, peroxidase, polyphenol oxidase, and phenylalanine ammonia-lyase in the plants infected with spot blotch were observed in bacterial-treated plants. BS87 also significantly reduces malondialdehyde and proline contents in diseased plants. BS87 could successfully colonize and persist in the wheat rhizosphere, providing an advantage to the host plant. Therefore, the study suggested that Bacillus subtilis strain BS87 may be used as an effective bioinoculant, enhancing plant growth and controlling spot blotch disease in wheat caused by Bipolaris sorokiniana.

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枯草芽孢杆菌菌株 BS87 作为斑枯病生物控制剂:对小麦生长、营养状况和抗氧化酶的影响
芽孢杆菌属根瘤菌具有抵御生物胁迫和促进植物生长的潜力。本研究对细菌分离物枯草芽孢杆菌菌株 BS87 进行了研究,该菌株具有体外抑制多种植物病原体(Bipolaris sorokiniana、Fusarium oxysporum、Fusarium spp.、Aspergillus niger、Aspergillus sp.、Penicillium sp.和Rhizoctonia solani)的潜力,还能分泌细胞壁降解酶,包括蛋白酶和几丁质酶。菌株 BS87 还表现出一些促进植物生长的特性,如营养溶解、苷元、吲哚-3-乙酸(IAA)和氰化氢(HCN)的产生。因此,我们进行了盆栽试验,以评估细菌分离物对小麦植株生长和斑点病害的影响。结果表明,BS87 能显著(p < 0.05)提高小麦的植株生长和产量。用 BS87 处理后,叶绿素含量明显提高(p < 0.05)。分离物 BS87 对小麦斑点病有明显的抑制作用(p < 0.05)。在细菌处理过的植株中,感染斑枯病的植株抗氧化酶水平较低,包括超氧化物歧化酶、过氧化物酶、多酚氧化酶和苯丙氨酸氨化酶。BS87 还能明显降低病株中丙二醛和脯氨酸的含量。BS87 能在小麦根瘤层中成功定殖和存活,为寄主植物提供了优势。因此,该研究表明枯草芽孢杆菌菌株 BS87 可作为一种有效的生物接种剂,促进植物生长并控制由 Bipolaris sorokiniana 引起的小麦斑点病。
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来源期刊
Acta Physiologiae Plantarum
Acta Physiologiae Plantarum 生物-植物科学
CiteScore
5.10
自引率
3.80%
发文量
125
审稿时长
3.1 months
期刊介绍: Acta Physiologiae Plantarum is an international journal established in 1978 that publishes peer-reviewed articles on all aspects of plant physiology. The coverage ranges across this research field at various levels of biological organization, from relevant aspects in molecular and cell biology to biochemistry. The coverage is global in scope, offering articles of interest from experts around the world. The range of topics includes measuring effects of environmental pollution on crop species; analysis of genomic organization; effects of drought and climatic conditions on plants; studies of photosynthesis in ornamental plants, and more.
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