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Updated: Jan 8, 2026

Physical, Chemical and Biological Characterization of Six Biochars Produced for the Remediation of Contaminated Sites
Published on: November 28, 2014
Phosphate-modified biochar synergized with AM mitigate cell death in Malus roots by regulating Cd accumulation and
Wenran Liu1, Zhiwen Qi1, Jiali Wang1
1College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an, Shandong 271018, China; Apple Technology Innovation Center of Shandong Province, Tai'an, Shandong 271018, China.
Abstract:
The safe disposal of apple pruning waste and mitigation of cadmium (Cd) toxicity in orchards are pressing environmental challenges. This study developed a synergistic strategy using phosphate-modified carbonized apple branches (PCAB) and arbuscular mycorrhizal (AM) fungi to immobilize Cd and reduce its uptake in apple trees. Compared to unmodified carbonized apple branches (CAB), PCAB exhibited a 1.35-fold higher Cd2 + adsorption capacity and was more effective in converting soil acid-soluble Cd into stable residual fractions. The combination of PCAB and AM fungi (PCAB+AM) was most effective, enhancing AM root colonization by over 200 % under Cd stress. This synergy increased rhizosphere available phosphorus by 128 % and the proportion of labile P by 50 %, while reducing bioavailable Cd to less than half of that in CAB+AM treatment. Consequently, PCAB+AM minimized root Cd2+ influx to 31 % of the control, reduced leaf Cd concentration by 86 %, and decreased Cd translocation factor by 66 %. This treatment also more effectively alleviated Cd-induced oxidative stress and cell death, downregulating key apoptosis genes (MhVPEγ/MhBAX1) and VPEγ activity. Our findings demonstrate that the PCAB-AM combination creates a protective rhizosphere barrier, offering a sustainable waste-to-wealth solution for Cd-contaminated orchards.

