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Effects of Continuous Cropping of Sweet Potato on the Fungal Community Structure in Rhizospheric Soil

机译:甘薯连铸对流离子体土壤真菌群落结构的影响

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摘要

Soil microorganisms play an important role in the ecosystem, and have a certain relationship with the continuous cropping obstacles, which are common with sweet potato. However, there are few reports on the effects of continuous cropping of sweet potato on the microbial community structure in the rhizospheric soil. Here, we investigated the effects of continuous cropping of sweet potato on the fungal community structure in rhizospheric soil, in order to provide theoretical basis for prevention and control of continuous cropping obstacles. This study used X18 and Y138 varieties as experimental materials. Soil samples were collected during the early period of planting and harvest in two consecutive years, and fungi were analyzed using Illumina Miseq. Results showed that the fungi diversity and richness in rhizospheric soil of X18 and Y138 were significantly increased after continuous cropping; the most dominant fungi phylum was Ascomycota, which decreased significantly after continuous cropping. In addition, the content of beneficial fungi such as Chaetomium was reduced, while that of harmful fungi such as Verticillium, Fusarium, and Colletotrichum were increased. The composition of X18 and Y138 fungal community in the same sampling period after continuous cropping was similar, although that of the same sweet potato variety significantly differed with the sampling period. Overall, our results indicate that continuous cropping alters the fungal community structure of the sweet potato rhizospheric soil, such that the content of beneficial fungi decrease, while that of harmful fungi increase, thereby increasing soil-borne diseases and reducing the yield and quality of sweet potato. Furthermore, these effects are different for different sweet potato varieties. Thus, during actual production, attention should be paid to maintain the stability of sweet potato rhizospheric soil micro-ecology through rotation or application of microbial fertilizers and soil amendments to alleviate continuous cropping obstacles.
机译:土壤中的微生物发挥在生态系统中的重要作用,并与连作障碍,这与红薯常见有一定的关系。不过,也有甘薯对根际土壤中的微生物群落结构重茬的影响报道很少。在这里,我们调查,以提供预防和连作障碍的防治提供理论依据红薯对真菌群落结构的根际土壤,重茬的影响。本研究采用X18和Y138品种为实验材料。在种植初期收集土壤样品并收获连续两年,并利用Illumina Miseq分析真菌。结果表明,真菌多样性和丰富性在X18和Y138的根际土壤连作后显著增加;最主要的真菌门子囊菌是,这重茬后显著下降。此外,有益真菌如毛壳菌的含量减少,而有害真菌,如黄萎病,枯萎,和炭疽病增加。 X18和Y138真菌群落的连作后的相同采样周期的组合物相似,尽管这同样甘薯品种显著与采样周期不同。总的来说,我们的结果表明,连作改变了甘薯根际土壤真菌群落结构,从而有利于真菌减少的内容,而有害菌增加,从而增加土传病害,减少甜的产量和质量土豆。此外,这些影响是不同的甘薯品种不同。因此,实际生产过程中,要注意保持红薯根际土壤微生态学的通过旋转或微生物肥料和土壤改良剂应用的稳定性,以减轻连作障碍。

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