Publications by authors named "Cunpu Qiu"

Article Synopsis
  • - This study investigates how combining humic acids (HAs) and chitosan can inhibit the growth of the soil-borne fungus Alternaria solani, which causes plant diseases.
  • - The results show that this combination leads to a maximum growth inhibition rate of 33.33%, along with significant changes in fungal cell structure, as confirmed by RNA sequencing that identified 239 differentially expressed genes.
  • - Ultimately, the research concludes that the effectiveness of HAs and chitosan in suppressing A. solani is linked to decreased expression of genes that facilitate fungal growth and metabolism.
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Understanding the chemical composition and molecular transformation in soil dissolved organic matter (DOM) is important to the global carbon cycle. To address this issue, ultrahigh-resolution Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) was applied to investigate DOM molecules in 36 paddy soils collected from subtropical China. All the detected 7576 unique molecules were divided into seven compound groups, and nine trade-off relationships between different compound groups were revealed based on principal component analysis and Pearson's correlation.

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Elucidation of the inhibitory effects of humic substances (HSs) on phytopathogenic fungi and the underlying molecular mechanisms are highly important for improved biocontrol. In this study, we investigated the growth suppression, morphological characteristics, transcriptomic sequence, and radical signals of Rhizoctonia solani following HS addition (50 mg/L). Through mycelial cultured experiment, mycelia growth of R.

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The impacts of nanoFeO on the composition of degradation products, microbial community, and microbial metabolic functions during rice straw anaerobic degradation were investigated. Under nanoFeO addition, CH production and straw degradation increased by 81% and 10.4%, respectively, in paddy soil enrichment.

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