Cheng Cheng, Wang Qi, He Linyan, Sheng Xiafang
Key Laboratory of Agricultural, Environmental Microbiology, College of Life Science, Nanjing Agricultural University, Ministry of Agriculture, Nanjing, PR China.
J Basic Microbiol. 2017 Apr;57(4):293-301. doi: 10.1002/jobm.201600652. Epub 2017 Jan 31.
Bacteria play important roles in mineral weathering and soil formation. However, little is known about the nutrition-related changes in mineral weathering potential and pattern of bacteria. In this study, mineral weathering behaviors of a novel mineral-weathering bacterium Chitinophaga jiangningensis JN53 were characterized in the presence of three contrasting biotite or potassium feldspar-added media. C. jiangningensis JN53 increased more Fe release from the minerals in the M-BHm (nutrition-poor medium) than in the SSKM (nutrition-rich medium) and BHm (nutrition-moderate medium), while C. jiangningensis JN53 released more Al from the minerals and Si from biotite in the SSKM. Similar Si release from potassium feldspar by C. jiangningensis JN53 was observed in the SSKM, BHm, and M-BHm. K releasing ability of C. jiangningensis JN53 was significantly higher in the biotite-added M-BHm. Highest and lowest growth of C. jiangningensis JN53 was observed in the SSKM and M-BHm, respectively. In the presence of the minerals, C. jiangningensis JN53 mainly produced gluconic acid in the SSKM and acetic acid in the BHm and M-BHm. C. jiangningensis JN53 also produced large amount of succinic acid in the biotite-added SSKM and oxalic acid in the potassium feldspar-added M-BHm. The results showed the growth, production of organic acids, and mineral weathering ability of C. jiangningensis JN53 in the three contrasting nutrition conditions. The results also suggested the change in the mineral weathering behaviors of C. jiangningensis JN53 under different levels of nutrition conditions.
细菌在矿物风化和土壤形成过程中发挥着重要作用。然而,关于细菌矿物风化潜力和模式中与营养相关的变化却知之甚少。在本研究中,在三种不同的添加黑云母或钾长石的培养基存在下,对一种新型矿物风化细菌江宁几丁质噬纤维菌JN53的矿物风化行为进行了表征。与在SSKM(营养丰富培养基)和BHm(营养适中培养基)中相比,江宁几丁质噬纤维菌JN53在M - BHm(营养贫瘠培养基)中从矿物中释放出更多的铁,而在SSKM中,江宁几丁质噬纤维菌JN53从矿物中释放出更多的铝以及从黑云母中释放出更多的硅。在SSKM、BHm和M - BHm中观察到江宁几丁质噬纤维菌JN53从钾长石中释放出相似量的硅。江宁几丁质噬纤维菌JN53在添加黑云母的M - BHm中的钾释放能力显著更高。江宁几丁质噬纤维菌JN53在SSKM中生长最高,而在M - BHm中生长最低。在有矿物存在的情况下,江宁几丁质噬纤维菌JN53在SSKM中主要产生葡萄糖酸,在BHm和M - BHm中主要产生乙酸。江宁几丁质噬纤维菌JN53在添加黑云母的SSKM中还产生大量琥珀酸,在添加钾长石的M - BHm中产生草酸。结果表明了江宁几丁质噬纤维菌JN53在三种不同营养条件下的生长、有机酸产生以及矿物风化能力。结果还表明了江宁几丁质噬纤维菌JN53在不同营养水平条件下矿物风化行为的变化。