Biocontrol and molecular characterization of Bacillus velezensis D against tobacco bacterial wilt

IF 3.2 2区 农林科学 Q2 PLANT SCIENCES
Jiawei Wang, Yulong Peng, Shanshan Xie, Xinru Yu, Chongyu Bian, Huiping Wu, Yun Wang, Ting Ding
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Abstract

Abstract Natural rhizosphere bacteria has the potential to act as an alternative of chemical pesticides for sustainable agriculture. In the current study, tobacco rhizosphere Bacillus velezensis D exhibited great antibacterial effect against Ralstonia solanacearum , and significantly enhanced the tobacco resistance against bacterial wilt in pot experiments. Then Bacillus velezensis D was labeled with gfp marker and found to stably colonize in tobacco root, the colonization density of strain D in root still remained 5.33 × 10 4 CFU/gat 30 days post-inoculation. Subsequently, field trials for two years (2021–2022) showed the control effects of the strain D on the tobacco bacterial wilt were 12.26% and 36.37%, respectively, indicating the application of B. velezensis D could improve plant resistance to R.solanacearum . In order to further study the antibacterial activities of strain D, effects of the crude extracts on the swimming ability, cell viability and the morphology of R. solanacearum were analyzed. The results showed that the crude extracts reduced the motility of R. solanacearum , and caused cell wall rupture and cell death. Furthermore, MALDI-TOF-MS and HPLC-QTOF-MS analysis indicated that lipopeptides (fengycin and iturin) and polyketides (bacillaene) were detected in the crude extracts of strain D. Based on these findings, we speculated that Bacillus velezensis D firstly colonized in tobacco root, then produced antibacterial substances at ecological sites to exert antagonistic effects, inhibiting motility traits of R. solanacearum and damaging the cell well. Hence, Bacillus velezensis D could be used as a potential biological control agents against tobacco bacterial wilt.
velezensis芽孢杆菌D对烟草青枯病的生物防治及分子特性研究
摘要:天然根际细菌有潜力作为化学农药的替代品,实现可持续农业。本研究中,烟草根际芽孢杆菌velezensis D对茄枯病菌(Ralstonia solanacearum)表现出较强的抑菌作用,并在盆栽试验中显著增强了烟草对青枯病的抗性。然后用gfp标记法标记了velezensis D,发现菌株D在烟草根上稳定定植,接种后30 D在根上的定植密度仍为5.33 × 10 4 CFU/ gt。随后,2021-2022年2年的田间试验结果表明,菌株D对烟草青枯病的防治效果分别为12.26%和36.37%,表明菌株D可以提高植株对茄枯病菌的抗性。为了进一步研究菌株D的抑菌活性,分析了粗提物对茄青霉游动能力、细胞活力和形态的影响。结果表明,粗提物降低了龙葵的活力,导致细胞壁破裂和细胞死亡。此外,MALDI-TOF-MS和HPLC-QTOF-MS分析表明,该菌株的粗提物中含有脂肽类物质(风霉素和iturin)和多酮类物质(杆菌烯)。基于这些结果,我们推测velezensis D首先在烟草根中定植,然后在生态位点产生抗菌物质,发挥拮抗作用,抑制茄青霉的运动特性,对细胞有较好的破坏作用。因此,velezensis D可以作为一种潜在的烟草青枯病生物防治剂。
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来源期刊
Phytopathology Research
Phytopathology Research PLANT SCIENCES-
CiteScore
3.30
自引率
5.90%
发文量
40
审稿时长
15 weeks
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