首页> 外文期刊>Australasian Plant Pathology >The impact of organic amendments, mulching and tillage on plant nutrition, Pythium root rot, root-knot nematode and other pests and diseases of capsicum in a subtropical environment, and implications for the development of more sustainable vegetable farming systems
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The impact of organic amendments, mulching and tillage on plant nutrition, Pythium root rot, root-knot nematode and other pests and diseases of capsicum in a subtropical environment, and implications for the development of more sustainable vegetable farming systems

机译:亚热带环境中有机改良剂,覆盖和耕作对植物营养,腐霉根腐病,根结线虫和其他辣椒害虫和病害的影响,以及对发展更可持续的蔬菜种植系统的影响

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摘要

Modifications to the capsicum farming system (adding an organic amendment and replacing the standard plastic mulch with a layer of plant residue) were assessed for their potential to reduce losses from soilborne diseases. An amendment of sugarcane residue (12.5 t dry matter/ha) plus ammonium nitrate (100 kg N/ha) incorporated 4 months before planting capsicum enhanced microbial activity, increased numbers of free-living nematodes, decreased populations of root-knot nematode (Meloidogyne incognita) and reduced the severity of galling caused by the nematode. The amendment also reduced the severity of Pythium root rot caused by Pythium aphanidermatum, while a similar effect was obtained in a pot experiment with Pythium myriotylum. Damage from Pythium root rot was more severe in plastic-covered beds than in beds mulched with plant residue, probably because the organic mulch reduced soil temperatures by as much as 12°C. Mulching with plant residue also changed the pest and disease spectrum because it increased losses from cutworms (larvae of Agrostis sp.) and the severity of a leaf spot disease caused by Xanthomonas campestris pv. vesicatoria. The organic mulch also reduced fruit yield, largely because heavy rainfall leached nutrients (particularly N, K, Ca and Mg) from beds that were not covered with plastic. These results indicate that organic amendments and mulches have the potential to reduce losses from soilborne diseases in vegetable crops, provided plant nutrition can be managed satisfactorily when beds are mulched with organic matter.
机译:评估了辣椒种植系统的修改(添加有机改良剂并用植物残渣层代替标准塑料覆盖物)减少土壤传播疾病损失的潜力。种植辣椒之前4个月,对甘蔗残渣(12.5吨干物质/公顷)和硝酸铵(100千克氮/公顷)的修正进行了整合,从而增强了微生物活性,增加了生活性线虫的数量,减少了根结线虫的种群(Meloidogyne)线虫)并减少了由线虫引起的擦伤的严重程度。该修正案还减轻了由瓜果腐霉引起的腐霉根腐病的严重性,而在用腐霉病的盆栽实验中也获得了类似的效果。覆塑料床中腐霉根腐病的危害要比用植物残渣覆盖的床严重得多,这可能是因为有机覆盖物使土壤温度降低了12°C之多。用植物残渣覆盖还改变了病虫害和病害范围,因为它增加了地老虎(Agrostis sp。的幼虫)的损失以及由油菜黄单胞菌(Xanthomonas campestris pv)引起的叶斑病的严重性。 vesicatoria。有机覆盖物也降低了水果产量,这主要是因为大雨从没有覆盖塑料的床上浸出了养分(特别是N,K,Ca和Mg)。这些结果表明,有机肥料和覆盖物有可能减少蔬菜作物因土壤传播的疾病而造成的损失,但前提是当有机物覆盖在床上时,可以令人满意地管理植物营养。

著录项

  • 来源
    《Australasian Plant Pathology》 |2008年第2期|p.123-131|共9页
  • 作者单位

    A Biological Crop Protection Pty Ltd, 3601 Moggill Road, Moggill, Qld 4070, Australia. B Current address: Botany Department, University of Queensland, St Lucia, Qld 4072, Australia. C Corresponding author. Email: graham.stirling@biolcrop.com.au;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biological suppression, soil fumigation.;

    机译:生物抑制;土壤熏蒸。;

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