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Chemical-Mediated Toxicity of N-Viro Soil to Heterodera glycines and Meloidogyne incognita

机译:N-维罗土壤对杂草甘氨酸和南方根结线虫的化学介导毒性

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摘要

N-Viro Soil (NVS) is an alkaline-stabilized municipal biosolid that has been shown to lower population densities and reduce egg hatch of Heterodera glycines and other plant-parasitic nematodes; but the mechanism(s) of nematode suppression of this soil amendment are unknown. This study sought to identify NVS-mediated changes in soil chemical properties and their impact upon H. glycines and Meloidogyne incognita mortality. N-Viro Soil was applied to sand in laboratory assays at 0.5%, 1.0%, 2.0%, and 3.0% dry w/w with a nonamended treatment as a control. Nematode mortality and changes in sand-assay chemical properties were determined 24 hours after incubation. Calculated lethal concentration (LC90) values were 1.4% w/w NVS for second-stage juveniles of both nematode species and 2.6 and >3.0% w/w NVS for eggs of M. incognita and H. glycines, respectively. Increasing rates of NVS were strongly correlated (r² = 0.84) with higher sand solution pH levels. Sand solution pH levels and, to a lesser extent, the production of ammonia appeared to be the inorganic chemical-mediated factors responsible for killing plant-parasitic nematodes following amendment with NVS.
机译:N-维罗土壤(NVS)是一种碱性稳定的市政生物固体,已显示出可以降低杂种优势甘氨酸和其他植物寄生线虫的种群密度并减少卵孵化;但这种土壤改良剂的线虫抑制机制尚不清楚。这项研究试图确定NVS介导的土壤化学性质的变化及其对甘氨酸链球菌和根结线虫致死率的影响。在实验室分析中,将N-Viro土壤以0.5%,1.0%,2.0%和3.0%的干重施于沙子上,并以未经修正的处理作为对照。孵化后24小时测定线虫死亡率和沙测化学性质的变化。对于两种线虫物种的第二代幼虫,计算的致死浓度(LC90)值分别为1.4%w / w NVS,对于隐身梭状芽胞杆菌和甘氨酸螺旋体的卵分别为2.6%和> 3.0%w / w NVS。 NVS的增加速率与较高的砂溶液pH值密切相关(r²= 0.84)。砂溶液的pH值水平以及较小程度的氨产生似乎是用NVS修饰后杀死植物寄生线虫的无机化学介导因素。

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