...
首页> 外文期刊>Plant Disease >Efficacy of Anaerobic Soil Disinfestation for Control of Prunus Replant Disease
【24h】

Efficacy of Anaerobic Soil Disinfestation for Control of Prunus Replant Disease

机译:厌氧土壤消毒治疗孕产病患者的疗效

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Prunus replant disease (PRD) is an important soilborne complex that suppresses growth and productivity of replanted stone fruit and nut orchards. It is effectively managed with pieplant soil fumigauon but, due to regulatory challenges, nonfumigant-based control strategies for PRD and other soil-borne disease problems may become increasingly important, especially in California. We examined the potential of preplant anaerobic soil disin-festation (ASD) for control of PRD in four repeated orchard replant trials on sandy loam soil near Parlier, CA. After removal of the old orchard trees, alternative ASD treatments, all using rice bran as the main carbon source, were implemented, starting in late September. The alternative treatments incorporated rice bran at (i) 20 t ha , alone, in 3.0-m-wide row strips; (ii) 201 ha-', preceded by incorporation of a sudangrass cover crop and followed by drip application of molasses (10 t ha-'), in 3.0-m-wide row strips; (iii) 20 t ha-1, alone, in 1.8-m-wide strips; or(iv) 12 t ha-', alone, in 1.8-m-wide strips. All ASD-treated areas were covered with clear tarpand drip irrigated with 25 cm of water. Tarps remained for 6 weeks, during which the soil moisture level was kept at or above field capacity by drip irrigation. All trials included nontreated control and fumigated standard treatments. ASD raised temperature and reduced redox potential in soil at 15- and 46-cm depths for 6 weeks. Fumigauon and ASD treatments both nearly eradicated bioassay inoculum of Pythium ultimum in the soil before almond trees were replanted and significantly affected almond tree root communities of fungi and oomycetes after planting. Fumigation treatments and ASD treatments with rice bran at 201 ha-' in 3.0-m strips increased tree growth significantly and by similar magnitudes. Among repeated experiments, mean increases in trunk cross-sectional area growth due to fumigation ranged from 137 to 264%, while the increases due to ASD at 201 ha-1 in 3.0-m strips ranged from 148 to 214%, compared with controls. ASD offers effective control of PRD and is worthy of further optimization and testing for management of PRD and additional orchard replant problems.
机译:Prunus Replant疾病(PRD)是一种重要的碎石综合体,抑制了可重新的石材水果和螺母果园的生长和生产率。它有效地与白垩土Fumigauon进行管理,但由于监管挑战,PRD和其他土壤中疾病问题的非重量控制策略可能越来越重要,特别是在加利福尼亚州。我们研究了佩戴植物厌氧土壤消防(ASD)的潜力,以控制帕尔迪尔,加利福尼亚岛附近的桑迪湖土壤中的四个重复果树园的PRD。在去除旧果树树树木后,替代ASD治疗,所有使用米糠作为主要碳源,在9月下旬开始。替代治疗在(i)20 t ha,单独,在3.0米宽的行条中加入了米糠; (ii)201 - '在苏丹草覆盖作物中的结合之前,然后用泥浆施用(10 t ha-'),在3.0米宽的行条中; (iii)20 t ha-1,单独,在1.8米宽的条带中;或(iv)仅在1.8米宽的条带中单独12 t ha-'。所有款待处理的区域都覆盖着用25厘米水灌溉的透明耳包滴水。 Tarps保持6周,在此期间,通过滴灌灌溉将土壤水分水平保持或以上的现场容量。所有试验均包括非生成的对照和熏蒸的标准治疗方法。 ASD温度和降低土壤中的氧化还原潜力在15-和46厘米深度的深度6周。 Fumigauon和ASD治疗在杏仁树被重新植入和显着影响种植后真菌和oomycetes的杏仁树根社区,在土壤中几乎消除的土壤生物测定近肥。熏蒸处理和稻米糠在2018英尺的水稻麸皮中的治疗方法在3.0米的3.0 m中显着增加树生长,并通过相似的幅度增加。在重复的实验中,由于熏蒸导致的树干横截面积增长的平均值为137%至264%,而与对照相比,3.0米的3.0 m条带中的ASD增加的增加。 ASD提供了对PRD的有效控制,值得进一步优化和测试PRD管理和额外的果园补充问题。

著录项

  • 来源
    《Plant Disease》 |2018年第1期|共11页
  • 作者单位

    United States Department of Agriculture-Agricultural Research Service Crops Pa-thology and Genetics Research Unit Department of Plant Pathology University of California Davis;

    United States Department of Agriculture-Agricultural Research Service Crops Pa-thology and Genetics Research Unit Department of Plant Pathology University of California Davis;

    United States Department of Agriculture-Agricultural Research Service Crops Pa-thology and Genetics Research Unit Department of Plant Pathology University of California Davis;

    United States Department of Agriculture-Agricultural Research Service Crops Pa-thology and Genetics Research Unit Department of Plant Pathology University of California Davis;

    Department of Plant Sciences University of California Davis;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号