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首页> 外文期刊>Pedobiologia >Effects of the earthworm Pontoscolex corethrurus on banana plants infected or not with the plant-parasitic nematode Radopholus similis
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Effects of the earthworm Pontoscolex corethrurus on banana plants infected or not with the plant-parasitic nematode Radopholus similis

机译:Pont蓬对未受植物寄生线虫Radopholus similis感染的香蕉植物的影响

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Radopholus banana (Musa acuminata, Cavendish subgroup) productivity. Earthworms are known to closely interact with above-ground and under-ground soil biota and particularly with plants and microfaunal. communities. This study was aimed at investigating, under greenhouse conditions, the effects of the earthworm Pontoscolex corethrurus on banana growth and nutrient uptake, and assessing the influences of this earthworm on the development of an inoculated population of R. similis. Six-week-old tissue culture banana plants were submitted to four treatments: with P corethrurus, R. similis, P corethrurus+R. similis, and a control with no earthworms or nematodes. At the end of the experiment, the P corethrurus treatments showed significantly higher leaf surface areas, shoot dry root weights, and root fresh weights than those without earthworms. This root growth enhancement probably contributed to the evident but non-significant decrease in the density of nematodes in the roots, even though earthworms did not reduce the total. number of nematodes per whole root system. Moreover, the presence of earthworms slightly alleviated the severity of root damage. N bioavailability in the soil, along with N, Ca, and Mg content of banana plants, were also significantly increased in the presence of earthworms. Our results demonstrated that banana plant growth and nutrition were positively influenced by earthworms. Cropping practices that boost the development of earthworm communities in soil should therefore be promoted to enhance sustainability and to naturally alleviate nematode impact. (c) 2007 Elsevier GmbH. All rights reserved.
机译:Radopholus香蕉(Musa acuminata,卡文迪许亚组)的生产力。 worm与地上和地下的土壤生物区系,特别是与植物和微动物群落密切相互作用。社区。这项研究的目的是在温室条件下调查Pont蓬对香蕉生长和养分吸收的影响,并评估这种on对拟南芥接种种群发展的影响。六周龄的组织培养香蕉植物接受了四种处理:用P corethrurus,R。similis,P corethrurus + R处理。类似物,无no或线虫的对照。在实验结束时,与不使用。的处理相比,P核心thr处理显示出明显更高的叶表面积,茎干重和根鲜重。这种根生长的增强可能导致了根中线虫密度的明显降低,但没有显着降低,尽管earth并未降低其总数。每个整个根系的线虫数。此外,worm的存在稍微减轻了根部损害的严重性。在earth存在下,土壤中的氮生物利用度以及香蕉植物的氮,钙和镁含量也显着提高。我们的结果表明,earth对香蕉植物的生长和营养产生积极影响。因此,应促进可促进earth在土壤中生长的耕作方法,以增强可持续性并自然减轻线虫的影响。 (c)2007 Elsevier GmbH。版权所有。

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