Scientific and Technological Nucleus of Bioresources, BIOREN-UFRO, Universidad de La Frontera, P.O. Box 54-D, Temuco, Chile.
Environ Sci Pollut Res Int. 2014 Jun;21(12):7403-12. doi: 10.1007/s11356-014-2696-z. Epub 2014 Mar 4.
A greenhouse experiment was carried out in order to investigate the effects of arbuscular mycorrhizal (AM) fungi inoculation and the use of composted olive waste (COW) in the establishment of Tetraclinis articulata and soil properties in a heavy metal-polluted soil. The treatments assayed were as follows: AM + 0% COW, AM + 1% COW, and AM + 3% COW. The higher doses of COW in combination with AM fungi increased shoot and root biomass production of T. articulata by 96 and 60%, respectively. These treatments trended to improve the soil properties evaluated, highlighting the C compounds and N as well as the microbiological activities. In relation to the metal translocation in T. articulata, doses of COW applied decreased the Cr, Ni, and Pb contents in shoot, as well as Cr and As in root, although the most of them reached low levels and far from phytotoxic. The COW amendment aided Glomus mosseae-inoculated T. articulata plants to thrive in contaminated soil, mainly through an improvement in both nutrients uptake, mainly P and soil microbial function. In addition, the combined use of AM fungi plus COW could be a feasible strategy to be incorporated in phytoremediation programs because it promotes soil properties, a better performance of plants for supporting the stress in heavy metal-contaminated soils derived from the mining process, and also can be a good way for olive-mill waste disposal.
为了研究丛枝菌根(AM)真菌接种和利用堆肥橄榄废物(COW)对重金属污染土壤中四合木(Tetraclinis articulata)的建立和土壤特性的影响,进行了温室实验。测定的处理如下:AM+0% COW、AM+1% COW 和 AM+3% COW。较高剂量的 COW 与 AM 真菌结合使用,分别使四合木的地上和根生物量增加了 96%和 60%。这些处理趋势改善了评估的土壤特性,突出了 C 化合物、N 以及微生物活性。关于四合木中的金属迁移,施用的 COW 剂量降低了地上部分的 Cr、Ni 和 Pb 含量,以及根部分的 Cr 和 As 含量,尽管它们大多数都达到了低水平,远低于植物毒性。COW 改良剂有助于接种摩西球囊霉(Glomus mosseae)的四合木植物在污染土壤中茁壮成长,主要是通过提高养分吸收(特别是 P)和土壤微生物功能。此外,AM 真菌与 COW 的联合使用可能是一种可行的策略,可以纳入植物修复计划,因为它可以促进土壤特性,提高植物在重金属污染土壤中的性能,以支持采矿过程产生的压力,也是处理橄榄厂废物的好方法。