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枫树皮生物炭影响茄丝核菌代谢并增加猝倒病严重程度。

Maple Bark Biochar Affects Rhizoctonia solani Metabolism and Increases Damping-Off Severity.

作者信息

Copley Tanya R, Aliferis Konstantinos A, Jabaji Suha

机构信息

Plant Science Department, McGill University, Ste-Anne-de-Bellevue, Quebec, Canada H9X 3V9.

出版信息

Phytopathology. 2015 Oct;105(10):1334-46. doi: 10.1094/PHYTO-08-14-0231-R. Epub 2015 Sep 2.

Abstract

Many studies have investigated the effect of biochar on plant yield, nutrient uptake, and soil microbial populations; however, little work has been done on its effect on soilborne plant diseases. To determine the effect of maple bark biochar on Rhizoctonia damping-off, 11 plant species were grown in a soilless potting substrate amended with different concentrations of biochar and inoculated or not with Rhizoctonia solani anastomosis group 4. Additionally, the effect of biochar amendment on R. solani growth and metabolism in vitro was evaluated. Increasing concentrations of maple bark biochar increased Rhizoctonia damping-off of all 11 plant species. Using multivariate analyses, we observed positive correlations between biochar amendments, disease severity and incidence, abundance of culturable bacterial communities, and physicochemical parameters. Additionally, biochar amendment significantly increased R. solani growth and hyphal extension in vitro, and altered its primary metabolism, notably the mannitol and tricarboxylic acid cycles and the glycolysis pathway. One or several organic compounds present in the biochar, as identified by gas chromatography-mass spectrometry analysis, may be metabolized by R. solani. Taken together, these results indicate that future studies on biochar should focus on the effect of its use as an amendment on soilborne plant pathogens before applying it to soils.

摘要

许多研究调查了生物炭对植物产量、养分吸收和土壤微生物种群的影响;然而,关于其对土传植物病害的影响却鲜有研究。为了确定枫树皮生物炭对立枯丝核菌猝倒病的影响,在添加了不同浓度生物炭的无土盆栽基质中种植了11种植物,并接种或未接种立枯丝核菌融合群4。此外,还评估了生物炭改良剂对立枯丝核菌体外生长和代谢的影响。枫树皮生物炭浓度的增加会加重所有11种植物的立枯丝核菌猝倒病。通过多变量分析,我们观察到生物炭改良剂、病害严重程度和发病率、可培养细菌群落丰度以及理化参数之间存在正相关。此外,生物炭改良剂显著增加了立枯丝核菌在体外的生长和菌丝延伸,并改变了其初级代谢,特别是甘露醇和三羧酸循环以及糖酵解途径。气相色谱 - 质谱分析确定的生物炭中存在的一种或几种有机化合物可能被立枯丝核菌代谢。综上所述,这些结果表明,未来关于生物炭的研究在将其应用于土壤之前,应关注其作为改良剂对土传植物病原体的影响。

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