Wen Zhugui, Shi Liang, Tang Yangze, Shen Zhenguo, Xia Yan, Chen Yahua
a College of Life Sciences , Nanjing Agricultural University , Nanjing , China.
b Jiangsu Coastal Area Institute of Agricultural Sciences , Yancheng , China.
Int J Phytoremediation. 2017 Apr 3;19(4):387-394. doi: 10.1080/15226514.2016.1244155.
We used Pisolithus tinctorius and Cenococcum geophilum to determine the copper (Cu) resistance of ectomycorrhizal (ECM) fungi and their potential for improving phytoremediation of Cu-contaminated soil by Chinese red pine (Pinus tabulaeformis). The results showed that nutrient accumulation in C. geophilum mycelium was significantly lower under higher Cu concentrations in the soil, which was not observed in P. tinctorius. Meanwhile, P. tinctorius exhibited greater Cu tolerance than C. geophilum. Inoculation with ECM fungi significantly improved the growth of pine shoots planted in polluted soil in pot experiments (p < 0.01). The total accumulated Cu in pine seedlings planted in Cu-contaminated soil increased by 72.8% and 113.3% when inoculated with P. tinctorius and C. geophilum, respectively, indicating that ECM fungi may help their host to phytoextract heavy metals. Furthermore, the majority of the total absorbed metals remained in the roots, confirming the ability of ECM fungi to promote heavy metal phytostabilization. There were no differences between the effects of the two fungi in helping the host stabilize and absorb Cu, even though they have different Cu tolerances. Inoculation with ECM fungi can benefit plant establishment in polluted environments and assist plants with phytoremediating heavy-metal-contaminated soils.
我们使用彩色豆马勃和土生空团菌来测定外生菌根(ECM)真菌对铜(Cu)的抗性,以及它们促进油松对铜污染土壤进行植物修复的潜力。结果表明,在土壤中铜浓度较高的情况下,土生空团菌菌丝体中的养分积累显著降低,而彩色豆马勃则未出现这种情况。同时,彩色豆马勃比土生空团菌表现出更强的耐铜性。在盆栽试验中,接种外生菌根真菌显著促进了种植在污染土壤中的油松嫩枝生长(p < 0.01)。接种彩色豆马勃和土生空团菌后,种植在铜污染土壤中的油松幼苗体内铜的总积累量分别增加了72.8%和113.3%,这表明外生菌根真菌可能有助于其宿主植物进行重金属植物提取。此外,吸收的金属大部分保留在根部,证实了外生菌根真菌促进重金属植物稳定化的能力。尽管这两种真菌的耐铜性不同,但它们在帮助宿主稳定和吸收铜方面的效果没有差异。接种外生菌根真菌有利于植物在污染环境中生长,并协助植物对重金属污染土壤进行植物修复。