Xia Yun-sheng, Chen Bao-dong, Christie Peter, Smith F Andrew, Wang You-shan, Li Xiao-lin
College of Resources and Environmental Sciences, China Agricultural University, Beijing 100094, China.
J Environ Sci (China). 2007;19(10):1245-51. doi: 10.1016/s1001-0742(07)60203-4.
The effects of arbuscular mycorrhizal (AM) fungus (Glomus mosseae) and phosphorus (P) addition (100 mg/kg soil) on arsenic (As) uptake by maize plants (Zea mays L.) from an As-contaminated soil were examined in a glasshouse experiment. Non-mycorrhizal and zero-P addition controls were included. Plant biomass and concentrations and uptake of As, P, and other nutrients, AM colonization, root lengths, and hyphal length densities were determined. The results indicated that addition of P significantly inhibited root colonization and development of extraradical mycelium. Root length and dry weight both increased markedly with mycorrhizal colonization under the zero-P treatments, but shoot and root biomass of AM plants was depressed by P application. AM fungal inoculation decreased shoot As concentrations when no P was added, and shoot and root As concentrations of AM plants increased 2.6 and 1.4 times with P addition, respectively. Shoot and root uptake of P, Mn, Cu, and Zn increased, but shoot Fe uptake decreased by 44.6%, with inoculation, when P was added. P addition reduced shoot P, Fe, Mn, Cu, and Zn uptake of AM plants, but increased root Fe and Mn uptake of the nonmycorrhizal ones. AM colonization therefore appeared to enhance plant tolerance to As in low P soil, and have some potential for the phytostabilization of As-contaminated soil, however, P application may introduce additional environmental risk by increasing soil As mobility.
在温室试验中,研究了丛枝菌根(AM)真菌(摩西球囊霉)和添加磷(100毫克/千克土壤)对玉米植株(玉米)从砷污染土壤中吸收砷的影响。设置了非菌根和不添加磷的对照。测定了植物生物量、砷、磷和其他养分的浓度及吸收量、AM真菌定殖率、根长和菌丝长度密度。结果表明,添加磷显著抑制根定殖和根外菌丝体的发育。在不添加磷的处理下,菌根定殖使根长和干重均显著增加,但施磷使AM植物的地上部和根部生物量降低。不添加磷时,接种AM真菌降低了地上部砷浓度,添加磷后,AM植物地上部和根部砷浓度分别增加了2.6倍和1.4倍。添加磷时,接种使地上部磷、锰、铜和锌的吸收量增加,但地上部铁吸收量降低了44.6%。添加磷降低了AM植物地上部磷、铁、锰、铜和锌的吸收量,但增加了非菌根植物根部铁和锰的吸收量。因此,AM真菌定殖似乎增强了低磷土壤中植物对砷的耐受性,对砷污染土壤的植物稳定修复具有一定潜力,然而,施磷可能会因增加土壤中砷的移动性而带来额外的环境风险。