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首页> 外文期刊>Chemosphere >Symbiotic microbes of Saxifraga stellaris ssp. alpigena from the copper creek of Schwarzwand (Austrian Alps) enhance plant tolerance to copper
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Symbiotic microbes of Saxifraga stellaris ssp. alpigena from the copper creek of Schwarzwand (Austrian Alps) enhance plant tolerance to copper

机译:虎耳草共生菌的共生微生物。 Schwarzwand(奥地利阿尔卑斯山)的铜小溪中的白粉病增强了植物对铜的耐受性

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Saxifrage stellaris var. alpigena grows as one of the very few higher plants in the copper rich area of the "blue creek" in Austria. Two endophytes were isolated from it: Mortierella sp. (fungus), and Stenotrophomonas maltophilia (bacterium). Both microbes were practically inseparable due to resistance of the bacteria to the antibiotics tested. On PDA media, the fungus showed higher tolerance to copper than the bacterium, which disappeared from both the media and the surface of the fungus in the presence of 150 mu M of Cu. However, at this Cu concentration, the bacteria were still detectable inside the mycelium and reappeared on the outside when transferred to media of lower Cu concentration. Microscopic studies of in vitro cultivated plants showed that the fungus was present in both, the roots and shoots of the plant. The effects of endophytes on plant performance were assessed in rhizoboxes filled with Cu-rich substratum; plants inoculated with both microbes showed better growth, survival and photosynthesis performance than the non-inoculated controls. The results of this study prove the beneficial influence of the isolated endophytes on the Cu tolerance of S. stellaris, and indicate the ecological potential of applying microbial consortia to plants under extreme environmental conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:虎耳草变种。在奥地利“蓝色小河”的富铜地区,阿尔卑斯山是少数极少数的高级植物之一。从中分离出了两种内生菌:Mortierella sp.。 (真菌)和嗜麦芽窄食单胞菌(细菌)。由于细菌对所测试的抗生素具有抗性,因此两种微生物实际上是不可分离的。在PDA培养基上,真菌显示出比细菌更高的铜耐受性,在150μM的Cu存在下,真菌从培养基和真菌表面都消失了。但是,在此Cu浓度下,菌丝在转移到Cu浓度较低的培养基中时,仍可在菌丝体内检测到细菌,并在外部再次出现。体外培养植物的显微镜研究表明,真菌存在于植物的根和芽中。在充满富含铜的基质的根际箱中评估了内生菌对植物生长的影响。接种两种微生物的植物均比未接种的对照具有更好的生长,存活和光合作用性能。这项研究的结果证明了分离的内生菌对恒星链球菌的铜耐受性具有有益的影响,并表明了在极端环境条件下将微生物菌群应用于植物的生态潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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