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超声辅助蓝藻毒素提取抑制土壤线虫。

Ultrasound assisted cyanotoxin extraction for nematode inhibition in soil.

机构信息

University of Guelph, School of Engineering, 50 Stone Road East, Guelph, Ontario, Canada.

Ontario Ministry of Agriculture, Food and Rural Affairs, 1 Stone Road West, Guelph, Ontario, Canada.

出版信息

Ultrason Sonochem. 2022 Sep;89:106120. doi: 10.1016/j.ultsonch.2022.106120. Epub 2022 Aug 10.

Abstract

Root-knot nematodes are one of the plant damaging nematodes in agriculture causing a projected annual yield loss of ∼12 % (∼$160 billion) worldwide. Conventional solutions to control these plant-parasitic nematodes involve chemical nematicides. To reduce the use of harmful chemicals, microalgal extracts can be used as greener alternatives for nematode management. Microalgae produce valuable metabolites, including cyanotoxins which can aid in nematode suppression. In this study, two microalgae species, Trichormus variabilis and Nostoc punctiforme, were treated with ultrasound for intensified recovery of secondary metabolites. Ultrasound results in cell wall disruption of the microalgal species, thus resulting in enhanced release of secondary metabolites. Microalgal biomass was treated with an ultrasound probe at 50 % amplitude, 20 kHz frequency, using water as the extraction medium, for 5-30 min. The extraction efficiency was determined in terms of the total chlorophyll (Chl) content of the extract. Microscopic images of the treated cells were also investigated to gain insight into the effect of the ultrasonication time on the cell morphology. Our results suggest that ultrasonication resulted in the intensified release of secondary metabolites, as established through the total chlorophyll content of the ultrasonicated microalgal samples as well as the microscopic images of the ruptured cells. The best extraction for Trichormus variabilis was achieved with 15 min extraction time where the Total Chl content increased by 29 times (compared to the non-ultrasonicated sample), and for the Nostoc punctiforme, 30 min extraction time gave the highest metabolite recovery of 6.4 times higher than the non-ultrasonicated sample. Ultrasonicated algal extracts were then tested for their nematicidal potential against root-knot nematode, Meloidogyne hapla, in infested field soil samples. Experimental study was conducted using different concentrations of each microalga, Trichormus sp. and Nostoc sp., individually, as well as in combination. The nematode count for the treated soil was compared with that of the control (untreated soil). Ultrasonicated microalgal extracts showed 66% to 100% inhibition on root-knot nematodes in the soil samples tested.

摘要

根结线虫是农业中破坏植物的线虫之一,在全球范围内造成了约 12%(约 1600 亿美元)的预计年产量损失。控制这些植物寄生线虫的常规方法涉及化学杀线虫剂。为了减少有害化学品的使用,可以使用微藻提取物作为更环保的线虫管理替代品。微藻产生有价值的代谢物,包括可以帮助抑制线虫的蓝藻毒素。在这项研究中,两种微藻物种,Trichormus variabilis 和 Nostoc punctiforme,经过超声处理以强化次生代谢物的回收。超声导致微藻物种的细胞壁破裂,从而导致次生代谢物的释放增强。微藻生物质在 50%幅度、20 kHz 频率下用超声探头处理,使用水作为提取介质,处理时间为 5-30 分钟。提取效率根据提取物的总叶绿素 (Chl) 含量来确定。还研究了处理细胞的显微镜图像,以深入了解超声时间对细胞形态的影响。我们的结果表明,超声处理导致次生代谢物的释放加剧,这可以通过超声处理后的微藻样品的总叶绿素含量以及破裂细胞的显微镜图像来确定。对于 Trichormus variabilis,最佳提取时间为 15 分钟,总 Chl 含量增加了 29 倍(与非超声样品相比),对于 Nostoc punctiforme,30 分钟的提取时间获得了最高的代谢物回收率,比非超声样品高 6.4 倍。然后测试超声藻类提取物对受根结线虫(Meloidogyne hapla)感染的田间土壤样本的杀线虫潜力。使用每种微藻的不同浓度(Trichormus sp. 和 Nostoc sp.)单独以及组合进行实验研究。将处理过的土壤中的线虫计数与对照(未处理的土壤)进行比较。超声微藻提取物在测试的土壤样本中对根结线虫表现出 66%至 100%的抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1e2/9403550/21f03328be69/gr1.jpg

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