首页> 外文OA文献 >Root Fungal Endophytes Enhance Heavy-Metal Stress Tolerance of Clethra barbinervis Growing Naturally at Mining Sites via Growth Enhancement, Promotion of Nutrient Uptake and Decrease of Heavy-Metal Concentration
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Root Fungal Endophytes Enhance Heavy-Metal Stress Tolerance of Clethra barbinervis Growing Naturally at Mining Sites via Growth Enhancement, Promotion of Nutrient Uptake and Decrease of Heavy-Metal Concentration

机译:根真菌内生菌通过增强生长,促进养分吸收和降低重金属含量,提高了在采矿场所自然生长的小菜蛾的重金属胁迫耐受性

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摘要

Clethra barbinervis Sieb. et Zucc. is a tree species that grows naturally at several mine sites and seems to be tolerant of high concentrations of heavy metals, such as Cu, Zn, and Pb. The purpose of this study is to clarify the mechanism(s) underlying this species’ ability to tolerate the sites’ severe heavy-metal pollution by considering C. barbinervis interaction with root fungal endophytes. We measured the heavy metal concentrations of root-zone soil, leaves, branches, and fine roots collected from mature C. barbinervis at Hitachi mine. We isolated fungal endophytes from surface-sterilized root segments, and we examined the growth, and heavy metal and nutrient absorption of C. barbinervis seedlings growing in sterilized mine soil with or without root fungal endophytes. Field analyses showed that C. barbinervis contained considerably high amounts of Cu, Zn, and Pb in fine roots and Zn in leaves. The fungi, Phialocephala fortinii, Rhizodermea veluwensis, and Rhizoscyphus sp. were frequently isolated as dominant fungal endophyte species. Inoculation of these root fungal endophytes to C. barbinervis seedlings growing in sterilized mine soil indicated that these fungi significantly enhanced the growth of C. barbinervis seedlings, increased K uptake in shoots and reduced the concentrations of Cu, Ni, Zn, Cd, and Pb in roots. Without root fungal endophytes, C. barbinervis could hardly grow under the heavy-metal contaminated condition, showing chlorosis, a symptom of heavy-metal toxicity. Our results indicate that the tree C. barbinervis can tolerate high heavy-metal concentrations due to the support of root fungal endophytes including P. fortinii, R. veluwensis, and Rhizoscyphus sp. via growth enhancement, K uptake promotion and decrease of heavy metal concentrations.
机译:Clethra barbinervis Sieb。 et Zucc。是一种可以在多个矿场自然生长的树种,似乎可以忍受高浓度的重金属,例如铜,锌和铅。这项研究的目的是通过考虑巴氏梭状芽孢杆菌与根真菌内生菌的相互作用来阐明该物种耐受该地点严重重金属污染的能力的机制。我们测量了从日立矿山成熟的C. barbinervis收集的根区土壤,叶子,树枝和细根中的重金属浓度。我们从经过表面灭菌的根段中分离出真菌内生菌,并研究了在有或没有根真菌内生菌的灭菌矿土中生长的巴比氏梭菌幼苗的生长,重金属和养分吸收。田间分析表明,巴比氏梭菌在细根中和叶片中的锌中都含有大量的铜,锌和铅。真菌,福尔氏菌,根瘤菌和根瘤菌。通常被分离为优势真菌内生菌种。将这些根真菌内生菌接种到无菌矿土壤中生长的巴氏梭菌幼苗表明,这些真菌显着增强了巴氏梭菌幼苗的生长,增加了芽中钾的吸收并降低了Cu,Ni,Zn,Cd和Pb的浓度。扎根。没有根真菌内生菌,巴比氏梭状芽胞杆菌在重金属污染的条件下几乎无法生长,显示出萎黄病,这是重金属毒性的症状。我们的结果表明,由于根真菌内生菌(包括fortinii菌,R。veluwensis和Rhizoscyphus sp。)的支持,C。barbinervis树可以耐受高重金属浓度。通过促进生长,促进钾吸收和降低重金属浓度。

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