首页> 外文期刊>Soil Biology & Biochemistry >Bacterial pollution induced community tolerance (PICT) to Cu and interactions with pH in long-term polluted vineyard soils
【24h】

Bacterial pollution induced community tolerance (PICT) to Cu and interactions with pH in long-term polluted vineyard soils

机译:细菌污染引起长期污染的葡萄园土壤对铜的耐受性(PICT)以及与pH的相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

Pollution induced community tolerance (PICT) has been suggested as an end-point measurement less affected by confounding environmental factors compared to standard methods of microbial growth, activity and community composition. We evaluated the use of PICT to determine Cu toxicity in vineyard soils polluted with Cu based fungicides (25-1120 mg Cu kg(-1)). These soils also varied in pH (4.3-7.3), organic C (0.31-6.91%) and texture (14-56% silt). PICT was estimated as bacterial community tolerance to Cu measured by the [H-3]leucine incorporation method. Bacterial tolerance to Cu increased 9 times in the most polluted compared to the unpolluted soils. Cu tolerance was also affected to a minor degree by pH, organic C and soil texture. Lower bacterial tolerance was found in soils with high pH and organic C, probably due to Cu becoming less bioavailable in soils with high pH and organic C content. The silt content appeared to increase bacterial tolerance, probably due to fine soil particles decreasing Cu bioavailability during the PICT detection phase. Despite the effects of other environmental factors, the main determinant of increased bacterial community tolerance to Cu was the pollution level. PICT measured with the leucine incorporation technique thus appears to be a sensitive and stable concept to evaluate toxic impacts, unless soils with very different pH, organic C or texture are studied
机译:与微生物生长,活性和群落组成的标准方法相比,污染诱导的群落耐受性(PICT)已被建议作为终点测量方法,受环境因素的干扰较小。我们评估了使用PICT来确定被铜基杀菌剂(25-1120 mg Cu kg(-1))污染的葡萄园土壤中Cu的毒性。这些土壤的pH值(4.3-7.3),有机碳(0.31-6.91%)和质地(14-56%淤泥)也各不相同。通过[H-3]亮氨酸掺入法测得PICT估计为对Cu的细菌群落耐受性。与未污染的土壤相比,最污染的土壤对铜的细菌耐受性提高了9倍。 pH,有机碳和土壤质地对铜的耐受性也有较小的影响。在高pH和有机C的土壤中发现较低的细菌耐受性,这可能是由于Cu在高pH和有机C的土壤中生物利用度降低。淤泥含量似乎增加了细菌的耐受性,这可能是由于细小的土壤颗粒降低了PICT检测阶段的Cu生物利用度。尽管受到其他环境因素的影响,细菌群落对Cu耐受性增加的主要决定因素还是污染水平。因此,除非研究了pH,有机碳或质地差异很大的土壤,否则使用亮氨酸掺入技术测量的PICT似乎是评估毒性影响的敏感且稳定的概念。

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