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内生毛霉 MHR-7 缓解重金属毒性和刺激油菜生长。

Alleviation of heavy metal toxicity and phytostimulation of Brassica campestris L. by endophytic Mucor sp. MHR-7.

机构信息

Department of Botany, Garden Campus, Abdul Wali Khan University Mardan, Khyber Pakhtunkhwa, Pakistan.

Department of Microbiology, Abdul Wali Khan University Mardan, Khyber Pakhtunkhwa, Pakistan.

出版信息

Ecotoxicol Environ Saf. 2017 Aug;142:139-149. doi: 10.1016/j.ecoenv.2017.04.005. Epub 2017 Apr 11.

Abstract

Heavy metal (HM) pollution is of great concern in countries like Pakistan where a huge proportion of human population is exposed to it. These toxic metals are making their way from water bodies to soil where it not only interferes with plant growth and development but also initiates serious health issues in human consuming the produce of such soils. Bioremediation is one of the most viable and efficient solution for the problem. Purpose of the current study was to isolate endophytic fungi from plants grown on HM contaminated soil and screen them for their ability to tolerate multiple HM including chromium (Cr), manganese (Mn), cobalt (Co), copper (Cu) and zinc (Zn). Out of 27 isolated endophytes, only one strain (MHR-7) was selected for multiple heavy metals tolerance. The strain was identified as Mucor sp. by 18S and 28S ribosomal RNA internal transcribed spacer (ITS) 1 and 4 sequence homology. The strain effectively tolerated up to 900µgmL of these heavy metals showing no remarkable effect on its growth. The adverse effect of the heavy metals, measured as reduction of the fungal growth increased with increasing concentration of the metals. The strain was able to remove 60-87% of heavy metals from broth culture when supplied with 300µgmL of these metals. A trend of decline in bioremediation potential of the strain was observed with increasing amount of metals. The strain removed metals by biotransformation and/or accumulation of heavy metal in its hyphae. Application of Mucor sp. MHR-7 locked down HM in tis mycelium thereby making them less available to plant root reducing HM uptake and toxicity in mustard. Besides its bioremediation potential, the strain was also able to produce IAA, ACC deaminase and solubilize phosphate making it excellent phytostimulant fungus. It is concluded that MHR-7 is an excellent candidate for use as biofertilizer in fields affected with heavy metals.

摘要

重金属(HM)污染是巴基斯坦等国非常关注的问题,这些国家有很大一部分人口暴露在其中。这些有毒金属从水体进入土壤,不仅干扰了植物的生长和发育,而且还引发了人类食用这些土壤所生产的农产品的严重健康问题。生物修复是解决这一问题最可行和最有效的方法之一。本研究的目的是从生长在受 HM 污染土壤上的植物中分离出内生真菌,并筛选它们对多种 HM(包括铬(Cr)、锰(Mn)、钴(Co)、铜(Cu)和锌(Zn))的耐受能力。在所分离的 27 株内生真菌中,只有一株(MHR-7)被选为多种重金属耐受菌株。该菌株通过 18S 和 28S 核糖体 RNA 内部转录间隔区(ITS)1 和 4 序列同源性鉴定为毛霉属。该菌株能有效耐受高达 900μgmL 的这些重金属,对其生长没有显著影响。重金属的不良影响,即真菌生长的减少,随着金属浓度的增加而增加。当供应 300μgmL 的这些金属时,该菌株能够从肉汤培养物中去除 60-87%的重金属。随着金属量的增加,该菌株的生物修复潜力呈下降趋势。该菌株通过生物转化和/或将重金属积累在其菌丝中去除重金属。毛霉属 MHR-7 菌株将 HM 锁定在其菌丝中,从而降低了 HM 对植物根系的可利用性,减少了 HM 在芥菜中的吸收和毒性。除了其生物修复潜力外,该菌株还能够产生 IAA、ACC 脱氨酶和解磷,使其成为一种优秀的植物刺激素真菌。结论是,MHR-7 是作为生物肥料在受重金属影响的田地中使用的优秀候选者。

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