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高耐铝红酵母RS1耐铝特性初步研究 被引量:3
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作者 王超 赵学强 沈仁芳 《土壤》 CAS CSCD 北大核心 2013年第3期501-505,共5页
红酵母RS1是从酸性土壤中筛选出的一株高耐铝微生物,本文对其耐铝特性进行了初步研究。结果发现,RS1可以在pH 2.5的培养基中生长,50~200 mmol/LAl3+处理对RS1产生了毒害作用,其毒害并未对细胞表面形态产生影响。RS1对Al2(SO4)3的忍耐... 红酵母RS1是从酸性土壤中筛选出的一株高耐铝微生物,本文对其耐铝特性进行了初步研究。结果发现,RS1可以在pH 2.5的培养基中生长,50~200 mmol/LAl3+处理对RS1产生了毒害作用,其毒害并未对细胞表面形态产生影响。RS1对Al2(SO4)3的忍耐能力高于AlCl3,这种高的忍耐能力是遗传固有的,并不被诱导产生。此外,RS1可以增加体内蛋白含量来适应高的铝毒,其中蛋白型巯基可能在耐铝中表现重要作用。 展开更多
关键词 红酵母rs1 铝毒 PH 蛋白质 巯基
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High Aluminum Tolerance of Rhodotorula sp. RS1 is Associated with Thickening of the Cell Wall Rather than Chelation of Aluminum Ions 被引量:9
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作者 WANG Chao ZHAO Xue-Qiang +2 位作者 T.AIZAWA M.SUNAIRI SHEN Ren-Fang 《Pedosphere》 SCIE CAS CSCD 2013年第1期29-38,共10页
Aluminum (Al) is very toxic to many living organisms, including plants, animals and microorganisms. However, despite many studies on Al tolerance in plants, little has been reported concerning these mechanisms in mi... Aluminum (Al) is very toxic to many living organisms, including plants, animals and microorganisms. However, despite many studies on Al tolerance in plants, little has been reported concerning these mechanisms in microorganisms. In this study, a red yeast, which could tolerate Al3+ concentrations as high as 200 mmol L-1, was isolated from acidic soils, identified as Rhodotorula sp. and designated as RS1. As the medium compositions can greatly affect the responses of microorganisms to Al, two culture mediums, glucose medium (GM) and lysogeny broth medium containing soil extract (S-LBM), were used. During growth of RS1, the pH of medium decreased in GM but increased in S-LBM. These changes in the pH of the media were not induced by Al addition. No or little secretion of organic acids was observed in RS1 growth media. Importantly, the thickness of the cell walls and the ratio of cell wall to biomass of RS1 significantly increased in GM with high Al3+ concentrations. In the presence of 100 mmol Al L-1, 78.0% of the total A1 of whole cells was present in the thickened cell walls. The Al in cell walls was mostly bound to OH, amide and CO groups of polysaccharides. These results suggest that thickening of the cell wall in response to the high Al3+ concentrations may play an important role in the high tolerance of RS1 to Al and that pH increase of the medium and chelation of Al ions are not involved in Al tolerance of this organism. 展开更多
关键词 medium organic acids pH POLYSACCHARIDES soil microorganisms
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