Cao Ruiwen, Zhang Yiling, Ju Yuhao, Wang Wei, Zhao Yanqiu, Liu Nan, Zhang Gangrui, Wang Xingbao, Xie Xuesong, Dai Cunxi, Liu Yue, Yin Hongfei, Shi Kaiyuan, He Chenchen, Wang Weiyan, Zhao Lingyu, Jeon Che Ok, Hao Lujiang
State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology (Shandong Academy of Sciences), Jinan, China.
Department of Life Science, Chung-Ang University, Seoul, Republic of Korea.
Front Microbiol. 2023 Mar 9;14:1117312. doi: 10.3389/fmicb.2023.1117312. eCollection 2023.
Lead (Pb) contamination of planting soils is increasingly serious, leading to harmful effects on soil microflora and food safety. Exopolysaccharides (EPSs) are carbohydrate polymers produced and secreted by microorganisms, which are efficient biosorbent materials and has been widely used in wastewater treatment to remove heavy metals. However, the effects and underlying mechanism of EPS-producing marine bacteria on soil metal immobilization, plant growth and health remain unclear. The potential of Hao 2018, a high EPS-producing marine bacterium, to produce EPS in soil filtrate, immobilize Pb, and inhibit its uptake by pakchoi ( L.) was studied in this work. The effects of strain Hao 2018 on the biomass, quality, and rhizospheric soil bacterial community of pakchoi in Pb-contaminated soil were further investigated. The results showed that Hao 2018 reduced the Pb concentration in soil filtrate (16%-75%), and its EPS production increased in the presence of Pb. When compared to the control, Hao 2018 remarkably enhanced pakchoi biomass (10.3%-14.3%), decreased Pb content in edible tissues (14.5%-39.2%) and roots (41.3%-41.9%), and reduced the available Pb content (34.8%-38.1%) in the Pb-contaminated soil. Inoculation with Hao 2018 raised the pH of the soil, the activity of several enzymes (alkaline phosphatase, urease, and dehydrogenase), the nitrogen content (NH -N and NO -N), and the pakchoi quality (Vc and soluble protein content), while also raising the relative abundance of bacteria that promote plant growth and immobilize metals, such as and . In conclusion, Hao 2018 reduced the available Pb in soil and pakchoi Pb absorption by increasing the pH and activity of multiple enzymes and regulating microbiome composition in rhizospheric soil.
种植土壤的铅(Pb)污染日益严重,对土壤微生物区系和食品安全产生有害影响。胞外多糖(EPSs)是微生物产生和分泌的碳水化合物聚合物,是高效的生物吸附材料,已广泛应用于废水处理以去除重金属。然而,产EPS的海洋细菌对土壤金属固定、植物生长和健康的影响及潜在机制仍不清楚。本研究考察了高产EPS的海洋细菌Hao 2018在土壤滤液中产生EPS、固定Pb以及抑制小白菜(Brassica rapa chinensis (L.))对其吸收的潜力。进一步研究了菌株Hao 2018对铅污染土壤中小白菜生物量、品质及根际土壤细菌群落的影响。结果表明,Hao 2018降低了土壤滤液中的Pb浓度(16%-75%),且在有Pb存在的情况下其EPS产量增加。与对照相比,Hao 2018显著提高了小白菜生物量(10.3%-14.3%),降低了可食用组织(14.5%-39.2%)和根部(41.3%-41.9%)中的Pb含量,并降低了铅污染土壤中有效Pb含量(34.8%-38.1%)。接种Hao 2018提高了土壤pH值、几种酶(碱性磷酸酶、脲酶和脱氢酶)的活性、氮含量(NH₄⁺-N和NO₃⁻-N)以及小白菜品质(Vc和可溶性蛋白含量),同时还提高了促进植物生长和固定金属的细菌的相对丰度,如芽孢杆菌属(Bacillus)和贪铜菌属(Cupriavidus)。总之,Hao 2018通过提高土壤pH值和多种酶的活性以及调节根际土壤微生物群落组成,降低了土壤中有效Pb含量和小白菜对Pb的吸收。