...
首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Changes in weathering effectiveness and community of culturable mineral-weathering bacteria along a soil profile
【24h】

Changes in weathering effectiveness and community of culturable mineral-weathering bacteria along a soil profile

机译:土壤剖面上风化有效性和可培养矿物风化细菌群落的变化

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Bacteria play important roles in mineral weathering, element mobilization, and soil formation. However, little is known about the mineral-weathering bacteria in subsurface soil environments. In this study, a total of 360 bacterial isolates were isolated from the different horizons of a soil profile and characterized for their mineral-weathering abilities and diversity along the soil profile. Among the 360 isolates, 226 isolates were found to have the ability to weather biotite. The average of released Fe, Si, and Al were significantly higher by the isolates from deeper horizons than from upper horizons. Although the proportion of the highly effective Fe solubilizers was not significantly different among the different horizons, the proportion of the highly effective Si and Al solubilizers was significantly higher in the deeper horizons than in the upper horizons. Furthermore, the element-releasing patterns of the mineral-weathering bacteria were different among the different horizons. Most of mineral-weathering bacteria from the soil profile could significantly lower the culture medium pH in the mineral-weathering process. The diversity of the mineral-weathering bacteria was higher in the upper horizons than in the deeper horizons. The weathering bacteria belonged to 12 bacterial genera, among which Burkholderia, Bacillus, and Lysinibacillus were the dominant and high-efficient weathering bacteria. The results showed the depth-related changes in the weathering capacity and community structures of the culturable mineral-weathering bacteria and suggested the possible roles of the bacteria in the mineral-weathering and element mobilization along the soil profile.
机译:细菌在矿物风化,元素动员和土壤形成中起重要作用。但是,对于地下土壤环境中的矿物风化细菌知之甚少。在这项研究中,从土壤剖面的不同视野中分离出总共360种细菌分离株,并对其矿物耐候性和沿土壤剖面的多样性进行了表征。在360种分离物中,发现226种具有抵抗黑云母的能力。从较深层分离出的Fe,Si和Al的平均值明显高于从上层分离出的。尽管高效Fe增溶剂的比例在不同层之间没有显着差异,但在较深层较上层,高效Si和Al增溶剂的比例明显更高。此外,矿物风化细菌的元素释放模式在不同的水平之间也不同。来自土壤剖面的大多数矿物风化细菌可在矿物风化过程中显着降低培养基的pH。矿物风化细菌的多样性在较高层比在较深层高。风化细菌属于12个细菌属,其中伯克霍尔德氏菌,芽孢杆菌和溶菌杆菌是优势和高效的风化细菌。结果表明,可培养矿物风化细菌的风化能力和群落结构与深度有关,并暗示了细菌在沿土壤剖面的矿物风化和元素动员中的可能作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号