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Community of Arbuscular Mycorrhizal Fungi in Soybean Roots after Cultivation with Different Cropping Systems

机译:不同种植制度对大豆根系丛枝菌根真菌的影响

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Crop growth was enhanced in fields previously cultivated with host plants colonized by arbuscular mycorrhizal fungi (AMF), compared with fields previously cultivated with non-mycorrhizal plants. To clarify the effect of previous cropping on the community structure of AMF in soybean roots, soybean were grown in fields which were cultivated after mycorrhizal plants, non-mycorrhizal plants, or left in uncropped condition over three years (in 2004, 2006, and 2007) in two different soils (Thaptoupland Wet Andosol and Low-humic Andosol). The partial region in the 18S rDNA of AMF from soybean roots was amplified by a nested PCR method using primers specific for AMF and sequenced. The sequence homology search and phylogenetic analysis revealed that the AMF community in soybean roots was unaffected by the preceding crop. Further, it was shown that the AMF phylotype “Glo-B1”, which included Glomus sp. ZJ (AB076344), was the most frequently detected, irrespective of the preceding cropping system. However, in 2007, the community structure of AMF in the soybean roots from the Low-humic Andosol field, which had been used as grassland for several years, was relatively different from that of the Thapto-upland Wet Andosol fields. It was implied that the AMF community could be affected by environmental condition or long-term vegetation.
机译:与先前使用非菌根真菌种植的田地相比,以前使用丛枝菌根真菌(AMF)克隆的寄主植物栽培的田地中作物的生长得到了增强。为了阐明以前的种植对大豆根系AMF群落结构的影响,将大豆种植在分别种植菌根植物,非菌根植物或三年不种植的情况下种植的田地(2004年,2006年和2007年) )在两种不同的土壤中(塔普托普兰湿润的Andosol和低腐殖质的Andosol)。通过巢式PCR方法,使用对AMF特异的引物,对来自大豆根的AMF的18S rDNA中的部分区域进行扩增,然后进行测序。序列同源性搜索和系统发育分析表明,大豆根中的AMF群落不受先前作物的影响。此外,表明包括Glomus sp。的AMF系统型“ Glo-B1”。 ZJ(AB076344)是最常检测到的,与先前的种植系统无关。然而,在2007年,用作草地的低腐殖质安多索尔田地大豆根中的AMF群落结构与塔普托湿地安多索尔田地的相比相对较大。这暗示着AMF社区可能会受到环境条件或长期植被的影响。

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