Université de Lorraine, CNRS, LIEC, 54000, Nancy, France.
Mycorrhiza. 2022 Mar;32(2):165-175. doi: 10.1007/s00572-022-01073-6. Epub 2022 Mar 7.
Rare earth elements (REEs) are widely used in high-tech industries, and REE waste emissions have become a concern for ecosystems, food quality and human beings. Arbuscular mycorrhizal fungi (AMF) have repeatedly been reported to alleviate plant stress in metal-contaminated soils. To date, little information is available concerning the role of AMF in REE-contaminated soils. We recently showed that there was no transfer of Sm to alfalfa by Funneliformis mosseae, but only a single REE was examined, while light and heavy REEs are present in contaminated soils. To understand the role of AMF on the transfer of REEs to plants, we carried out an experiment using alfalfa (Medicago sativa) and ryegrass (Lolium perenne) in compartmented pots with separate bottom compartments that only were accessible by F. mosseae fungal hyphae. The bottom compartments contained a mixture of four REEs at equal concentrations (La, Ce, Sm and Yb). The concentration of REEs in plants was higher in roots than in shoots with higher REE soil-root than root-shoot transfer factors. Moreover, significantly higher light-REEs La and Ce were transferred to ryegrass shoots than Sm and the heavy-REE Yb, but this was not observed for alfalfa. Alfalfa dry weight was significantly increased by F. mosseae inoculation, but not ryegrass dry weight. For both plant species, there was significantly higher P uptake by the mycorrhizal plants than the nonmycorrhizal plants, but there was no significant transfer of La, Ce, Sm or Yb to alfalfa and ryegrass roots or shoots due to F. mosseae inoculation.
稀土元素(REEs)广泛应用于高科技产业,REE 废物排放已成为生态系统、食品质量和人类关注的问题。丛枝菌根真菌(AMF)已被多次报道可缓解重金属污染土壤中植物的胁迫。迄今为止,有关 AMF 在 REE 污染土壤中的作用的信息很少。我们最近表明,摩西管柄囊霉(Funneliformis mosseae)不会将 Sm 转移到紫花苜蓿中,但只检查了单个 REE,而污染土壤中存在轻REE 和重 REE。为了了解 AMF 对 REE 向植物转移的作用,我们使用紫花苜蓿(Medicago sativa)和黑麦草(Lolium perenne)进行了一项实验,在带分隔底部隔室的分隔盆中进行,摩西管柄囊霉的真菌菌丝只能进入这些底部隔室。底部隔室包含四种 REE 的混合物,浓度相等(La、Ce、Sm 和 Yb)。植物中 REE 的浓度在根部高于地上部分,根-土转移系数高于土壤-根转移系数。此外,与 Sm 和重 REE Yb 相比,较高浓度的轻REE La 和 Ce 显著转移到黑麦草地上部分,而不是紫花苜蓿。摩西管柄囊霉接种显著增加了紫花苜蓿的干重,但对黑麦草的干重没有影响。对于这两种植物,与非菌根植物相比,菌根植物的磷吸收量显著增加,但由于摩西管柄囊霉的接种,La、Ce、Sm 或 Yb 并没有显著转移到紫花苜蓿和黑麦草的根或地上部分。