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Biochar and organic fertilizer drive the bacterial community to improve the productivity and quality of in cadmium-contaminated soil. | LitMetric

Excessive Cd accumulation in soil reduces the production of numerous plants, such as Gagnep., which is an important and widely cultivated medicinal plant whose roots and rhizomes are used in traditional Chinese medicine. Applying a mixture of biochar and organic fertilizers improved the overall health of the Cd-contaminated soil and increased the yield and quality of . However, the underlying mechanism between this mixed fertilization and the improvement of the yield and quality of remains uncovered. This study investigated the effect of biochar and organic fertilizer application (BO, biochar to organic fertilizer ratio of 1:2) on the growth of cultivated in Cd-contaminated soil. BO significantly reduced the total Cd content (TCd) in the rhizosphere soil and increased the soil water content, overall soil nutrient levels, and enzyme activities in the soil. Additionally, the α diversity of the soil bacterial community had been significantly improved after BO treatment. Soil pH, total Cd content, total carbon content, and dissolved organic carbon were the main reasons for the fluctuation of the bacterial dominant species. Further investigation demonstrated that the abundance of variable microorganisms, including Acidobacteria, Proteobacteria, Bacteroidetes, Firmicutes, Chloroflexi, Gemmatimonadetes, Patescibacteria, Armatimonadetes, Subgroups_ 6, and , was also significantly changed in Cd-contaminated soil. All these alterations could contribute to the reduction of the Cd content and, thus, the increase of the biomass and the content of the main secondary metabolites (matrine and oxymatrine) in . Our research demonstrated that the co-application of biochar and organic fertilizer has the potential to enhance soil health and increase the productivity and quality of plants by regulating the microorganisms in Cd-contaminated soil.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10800516PMC
http://dx.doi.org/10.3389/fmicb.2023.1334338DOI Listing

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