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铜水平微量增加对低营养土壤中可培养担子菌酵母菌的影响。

Effects of small increases in copper levels on culturable basidiomycetous yeasts in low-nutrient soils.

机构信息

Department of Microbiology, Stellenbosch University, Stellenbosch, South Africa.

出版信息

J Appl Microbiol. 2010 Oct;109(4):1411-21. doi: 10.1111/j.1365-2672.2010.04770.x. Epub 2010 Aug 19.

Abstract

AIMS

Investigating the effect of perturbations, with relatively low Cu concentrations, on yeast community composition in low-nutrient virgin soil.

METHODS AND RESULTS

Culturable soil yeast populations were monitored at an experimental site treated with the fungicide copper oxychloride (10 mg Cu per kg soil). Yeast numbers were unaffected by additional Cu; however, a shift in yeast community composition from Hymenomycetes to Urediniomycetes species occurred. Subsequent growth experiments conducted with a synthetic liquid medium revealed that hymenomycetous and urediniomycetous yeasts were affected differently by 1 and 10 mg l(-1) Cu. Soil microcosm experiments then indicated that additional 10 mg kg(-1) Cu may improve the competitive ability of urediniomycetous yeasts in the presence of hymenomycetous yeasts.

CONCLUSIONS

The shift from hymenomycetous to urediniomycetous yeasts, as a result of slightly increased soil Cu levels, may be because of hymenomycetous yeasts being more sensitive to elevated Cu levels and urediniomycetous yeasts having an improved competitive ability in the presence of elevated Cu levels.

SIGNIFICANCE AND IMPACT OF THE STUDY

Yeast community composition of pristine low-nutrient soils may change as a result of perturbations with relatively low concentrations of Cu. Urediniomycetous yeasts should be studied as potential bio-indicators of Cu perturbations.

摘要

目的

研究低浓度铜对贫营养原始土壤中酵母群落组成的影响。

方法和结果

在使用杀菌剂氧化氯铜(每公斤土壤 10 毫克铜)处理的实验点监测可培养土壤酵母种群。额外的铜对酵母数量没有影响;然而,酵母群落组成从担子菌门向锈菌门物种发生了转移。随后在合成液体培养基上进行的生长实验表明,担子菌门和锈菌门酵母对 1 和 10 毫克/升铜的影响不同。然后,土壤微宇宙实验表明,额外的 10 毫克/公斤铜可能会提高锈菌门酵母在担子菌门酵母存在下的竞争能力。

结论

由于土壤铜水平略有升高,从担子菌门到锈菌门酵母的转变可能是由于担子菌门酵母对高铜水平更敏感,而锈菌门酵母在高铜水平下具有更好的竞争能力。

这项研究的意义和影响

由于相对低浓度的铜的干扰,原始贫营养土壤中的酵母群落组成可能会发生变化。锈菌门酵母应该作为铜干扰的潜在生物指示剂进行研究。

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