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Endophytic fungal communities associated with field-grown soybean roots and seeds in the Huang-Huai region of China

机译:中国黄淮地区与田间大豆根和种子相关的内生真菌群落

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摘要

Plants depend on beneficial interactions between roots and fungal endophytes for growth, disease suppression, and stress tolerance. In this study, we characterized the endophytic fungal communities associated with the roots and corresponding seeds of soybeans grown in the Huang-Huai region of China. For the roots, we identified 105 and 50 genera by culture-independent and culture-dependent (CD) methods, respectively, and isolated 136 fungal strains (20 genera) from the CD samples. Compared with the 52 soybean endophytic fungal genera reported in other countries, 28 of the genera we found were reported, and 90 were newly discovered. Even though Fusarium was the most abundant genus of fungal endophyte in every sample, soybean root samples from three cities exhibited diverse endophytic fungal communities, and the results between samples of roots and seeds were also significantly different. Together, we identified the major endophytic fungal genera in soybean roots and seeds, and revealed that the diversity of soybean endophytic fungal communities was influenced by geographical effects and tissues. The results will facilitate a better understanding of soybean–endophytic fungi interaction systems and will assist in the screening and utilization of beneficial microorganisms to promote healthy of plants such as soybean.
机译:植物依靠根与真菌内生菌之间的有益相互作用来生长,抑制疾病和承受压力。在这项研究中,我们表征了与在中国黄淮地区生长的大豆的根和相应种子相关的内生真菌群落。对于根,我们分别通过不依赖培养的和不依赖培养的(CD)方法鉴定了105和50属,并从CD样品中分离了136个真菌菌株(20属)。与其他国家报道的52个大豆内生真菌属相比,我们发现了28个属,其中90个是新发现的。尽管镰刀菌是每个样品中真菌内生菌最丰富的属,但三个城市的大豆根样品表现出不同的内生真菌群落,根和种子样品之间的结果也存在显着差异。我们在一起确定了大豆根和种子中的主要内生真菌属,并揭示了大豆内生真菌群落的多样性受地理效应和组织的影响。结果将有助于更好地了解大豆与内生真菌的相互作用系统,并有助于筛选和利用有益微生物以促进大豆等植物的健康。

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