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淡紫拟青霉和巨大芽孢杆菌对甘薯茎线虫和根际细菌群落的影响。

Effects of Paecilomyces lilacinus and Bacillus pumilus on stem nematode and rhizosphere bacterial communities of sweet potato.

机构信息

Hebei Key Laboratory of Crop Stress Biology, Hebei Normal University of Science and Technology, Qinghuangdao, Hebei, China.

Institute of Plant Nutrition, Resources and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.

出版信息

Sci Rep. 2024 Oct 7;14(1):23290. doi: 10.1038/s41598-024-74268-w.

Abstract

Stem nematode (Ditylenchus destructor Thorne) is considered one of the most economically devastating species affecting sweet potato production. Biocontrol offers a sustainable strategy for nematode control. This study conducted a pot experiment to evaluate the biocontrol efficacy of Paecilomyces lilacinus CS-Z and Bacillus pumilus Y-26 against the stem nematode, as well as to examine their influence on the bacterial communities in the sweet potato rhizosphere. The findings indicated that B.pumilus Y-26 and P.lilacinus CS-Z exhibited respective suppression rates of 82.9% and 85.1% against the stem nematode, while also stimulating sweet potato plant growth. Both high-throughput sequencing and Biolog analysis revealed distinct impacts of the treatments on the bacterial communities. At the phylum level, B.pumilus Y-26 enhanced the abundance of Actinobacteria but reduced the abundance of Cyanobacteria, with P.lilacinus CS-Z exhibiting similar effects. Additionally, the treatment with B.pumilus Y-26 resulted in increased abundances of Crossiella, Gaiella, Bacillus, and Streptomyces at the genus level, while the treatment with P.lilacinus CS-Z showed increased abundances of Crossiella and Streptomyces. In contrast, the abundance of Pseudarthrobacter was reduced in the treatment with B.pumilus Y-26. Conversely, the application of the nematicide fosthiazate exhibited minor influence on the bacterial community. The findings indicated that the application of P.lilacinus CS-Z and B.pumilus Y-26 led to an increase in the relative abundances of beneficial microorganisms, including Gaiella, Bacillus, and Streptomyces, in the rhizosphere soil. In conclusion, P.lilacinus CS-Z and B.pumilus Y-26 demonstrated their potential as environmentally friendly biocontrol agents for managing stem nematode disease of sweet potato.

摘要

茎线虫(Ditylenchus destructor Thorne)被认为是对甘薯生产危害最大的经济物种之一。生物防治为线虫控制提供了一种可持续的策略。本研究进行了盆栽试验,以评估淡紫拟青霉 CS-Z 和短小芽孢杆菌 Y-26 对茎线虫的生物防治效果,以及它们对甘薯根际细菌群落的影响。结果表明,B.pumilus Y-26 和 P.lilacinus CS-Z 对茎线虫的抑制率分别为 82.9%和 85.1%,同时也刺激了甘薯植物的生长。高通量测序和 Biolog 分析都表明,处理对细菌群落有明显的影响。在门水平上,B.pumilus Y-26 增加了放线菌的丰度,而减少了蓝藻的丰度,P.lilacinus CS-Z 则表现出类似的效果。此外,B.pumilus Y-26 的处理导致 Crossiella、Gaiella、Bacillus 和 Streptomyces 属的丰度增加,而 P.lilacinus CS-Z 的处理则导致 Crossiella 和 Streptomyces 属的丰度增加。相反,B.pumilus Y-26 的处理减少了 Pseudarthrobacter 的丰度。相比之下,杀线虫剂噻唑膦对细菌群落的影响较小。研究结果表明,应用 P.lilacinus CS-Z 和 B.pumilus Y-26 导致根际土壤中有益微生物(包括 Gaiella、Bacillus 和 Streptomyces)的相对丰度增加。综上所述,P.lilacinus CS-Z 和 B.pumilus Y-26 作为防治甘薯茎线虫病的环保型生物防治剂具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c66a/11458784/1308fcfd8cab/41598_2024_74268_Fig1_HTML.jpg

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