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Effects of Two Trichoderma Strains on Plant Growth, Rhizosphere Soil Nutrients, and Fungal Community of Pinus sylvestris var. mongolica Annual Seedlings

机译:两种Trichoderma菌株对植物生长,根际土壤养分和樟子松真菌群落的影响。蒙古氏年度幼苗

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摘要

Trichoderma spp. are proposed as major plant growth-promoting fungi that widely exist in the natural environment. These strains have the abilities of rapid growth and reproduction and efficient transformation of soil nutrients. Moreover, they can change the plant rhizosphere soil environment and promote plant growth. Pinus sylvestris var. mongolica has the characteristics of strong drought resistance and fast growth and plays an important role in ecological construction and environmental restoration. The effects on the growth of annual seedlings, root structure, rhizosphere soil nutrients, enzyme activity, and fungal community structure of P. sylvestris var. mongolica were studied after inoculation with Trichoderma harzianum E15 and Trichoderma virens ZT05, separately. The results showed that after inoculation with T. harzianum E15 and T. virens ZT05, seedling biomass, root structure index, soil nutrients, and soil enzyme activity were significantly increased compared with the control (p < 0.05). There were significant differences in the effects of T. harzianum E15 and T. virens ZT05 inoculation on the growth and rhizosphere soil nutrient of P. sylvestris var. mongolica (p < 0.05). For the E15 treatment, the seedling height, ground diameter, and total biomass of seedlings were higher than that those of the ZT05 treatment, and the rhizosphere soil nutrient content and enzyme activity of the ZT05 treatment were higher than that of the E15 treatment. The results of alpha and beta diversity analyses showed that the fungi community structure of rhizosphere soil was significantly different (p < 0.05) among the three treatments (inoculated with T. harzianum E15, T. virens ZT05, and not inoculated with Trichoderma). Overall, Trichoderma inoculation was correlated with the change of rhizosphere soil nutrient content.
机译:Trichoderma SPP。被提议作为主要植物生长促进自然环境中广泛存在的真菌。这些菌株具有快速增长和繁殖和繁殖和有效转化的土壤营养的能力。此外,它们可以改变植物根际土壤环境,促进植物生长。 Pinus sylvestris var。蒙古有强劲的干旱抵抗和快速增长的特点,并在生态建设和环境恢复方面发挥着重要作用。对幼苗,根结构,根际土壤养分,酶活性和真菌群落结构的影响对Sylvestris var的影响。用Trichoderma Harzianum E15和Trichoderma Virens Zt05接种后研究了蒙古,分别研究。结果表明,与对照相比,幼苗生物量ZT05,幼苗生物量,根结构指数,土壤营养物和土壤酶活性显着提高(P <0.05)。 T. harzianum e15和virens zt05接种对Sylvestris var的生长和根际土壤营养的影响存在显着差异。蒙古(P <0.05)。对于E15处理,幼苗高度,地面直径和幼苗的总生物量高于ZT05处理的幼苗,而ZT05处理的根际土壤养分含量和酶活性高于E15处理。 α和β多样性分析的结果表明,三种处理中根际土壤的真菌群落结构显着差异(P <0.05)(接种与T. harzianum E15,T.Virens ZT05,而不是用Trichoderma接种)。总体而言,Trichoderma接种与根际土壤营养含量的变化相关。

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