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基于碳酸氢铵的土壤熏蒸策略对植物寄生线虫的抑制作用及其对线虫群落的影响。

Suppression on plant-parasitic nematodes using a soil fumigation strategy based on ammonium bicarbonate and its effects on the nematode community.

作者信息

Su Lanxi, Ruan Yunze, Yang Xiujuan, Wang Kang, Li Rong, Shen Qirong

机构信息

Jiangsu Key Lab for Solid Organic Waste Utilization, National Engineering Research Center for Organic-based Fertilizers, Jiangsu Collaborative Innovation Center for Solid Organic Waste Resource Utilization, Nanjing Agricultural University, 210095, Nanjing, China.

Hainan key Laboratory for Sustainable Utilization of Tropical Bio-resources, College of Agriculture, Hainan University, 570228, Haikou, China.

出版信息

Sci Rep. 2015 Dec 1;5:17597. doi: 10.1038/srep17597.

Abstract

Banana production is severely hindered by plant-parasitic nematodes in acidic, sandy soil. This study investigated the possibility of applying a novel fumigation agent based on ammonium bicarbonate as a strategy for controlling plant-parasitic nematodes under sealed conditions. Moreover, its effects on the nematode community in pot and field experiments were also measured using morphology and feeding-habit based classification and the PCR-DGGE method. Results showed that a mixture (LAB) of lime (L) and ammonium bicarbonate (AB) in suitable additive amounts (0.857 g kg(-1) of L and 0.428 g kg(-1) of AB) showed stronger nematicidal ability than did the use of AB alone or the use of ammonium hydroxide (AH) and calcium cyanamide (CC) with an equal nitrogen amount. The nematode community was altered by the different fumigants, and LAB showed an excellent plant-parasitic nematicidal ability, especially for Meloidogyne and Rotylenchulus, as revealed by morphology and feeding-habit based classification, and for Meloidogyne, as revealed by the PCR-DGGE method. Fungivores and omnivore-predators were more sensitive to the direct effects of the chemicals than bacterivores. This study explored a novel fumigation agent for controlling plant-parasitic nematodes based on LAB and provides a potential strategy to ensure the worldwide development of the banana industry.

摘要

在酸性沙质土壤中,香蕉生产受到植物寄生线虫的严重阻碍。本研究探讨了应用一种基于碳酸氢铵的新型熏蒸剂作为在密封条件下控制植物寄生线虫的策略的可能性。此外,还通过基于形态学和取食习性的分类以及PCR-DGGE方法,在盆栽和田间试验中测定了其对线虫群落的影响。结果表明,石灰(L)和碳酸氢铵(AB)以合适的添加量(0.857 g kg⁻¹的L和0.428 g kg⁻¹的AB)混合而成的混合物(LAB),比单独使用AB或使用等量氮的氢氧化铵(AH)和氰胺化钙(CC)表现出更强的杀线虫能力。不同的熏蒸剂改变了线虫群落,LAB表现出优异的植物寄生线虫杀灭能力,基于形态学和取食习性的分类显示,对根结线虫属和螺旋线虫属尤其有效,PCR-DGGE方法显示对根结线虫属有效。食真菌线虫和杂食性捕食线虫比食细菌线虫对化学物质的直接影响更敏感。本研究探索了一种基于LAB的控制植物寄生线虫的新型熏蒸剂,并为确保香蕉产业在全球范围内的发展提供了一种潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d85f/4664931/dede02c23994/srep17597-f1.jpg

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