Unveiling the efficacy of Bacillus faecalis and composted biochar in alleviating arsenic toxicity in maize

Yonghui Liao, Humaira Ashraf, Shoucheng Huang,Musarrat Ramzan,Rabia Saba, Muhammad Baqir,Saleh H. Salmen, Sulaiman Ali Alharbi,Misbah Hareem

BMC Plant Biology(2024)

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Abstract
Arsenic (As) contamination is a major environmental pollutant that adversely affects plant physiological processes and can hinder nutrients and water availability. Such conditions ultimately resulted in stunted growth, low yield, and poor plant health. Using rhizobacteria and composted biochar (ECB) can effectively overcome this problem. Rhizobacteria have the potential to enhance plant growth by promoting nutrient uptake, producing growth hormones, and suppressing diseases. Composted biochar can enhance plant growth by improving aeration, water retention, and nutrient cycling. Its porous structure supports beneficial microorganisms, increasing nutrient uptake and resilience to stressors, ultimately boosting yields while sequestering carbon. Therefore, the current study was conducted to investigate the combined effect of previously isolated Bacillus faecalis (B. faecalis) and ECB as amendments on maize cultivated under different As levels (0, 300, 600 mg As/kg soil). Four treatments (control, 0.5
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Key words
Chlorophyll contents,Growth attributes,Heavy metal,Organic amendment,Rhizobacteria,Zea mays L
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