文章摘要
杨彩宏, 张 妤, 崔 烨,等.二氯喹啉酸在水旱条件下对土壤酶活性及微生物群落的影响[J].广东农业科学,2015,42(6):70-73
查看全文    HTML 二氯喹啉酸在水旱条件下对土壤酶活性及微生物群落的影响
Effects of quinclorac on soil enzymes activities and microbialcommunity under flooded and non-flooded conditions
  
DOI:
中文关键词: 二氯喹啉酸  土壤酶活性  土壤微生物  淹水土壤  相关性
英文关键词: quinclorac  soil enzyme activity  soil microbial community  flooded paddy soil  correlation
基金项目:
作者单位
杨彩宏, 张 妤, 崔 烨,等 广东省农科院植物保护研究所/广东省植物保护新技术重点实验室华中农业大学食品科技学院 
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中文摘要:
      二氯喹啉酸是稻田常用的除草剂,通过在稻田土壤中施加不同含量的二氯喹啉酸后在淹水和不淹 水条件下暗培养(25益),探讨其对土壤酶活及微生物群落的影响。 结果表明:淹水条件下,相同处理时间,稻田土 壤施加二氯喹啉酸后,药剂处理土壤过氧化氢酶被激活的程度较大,而脲酶、脱氢酶和纤维素酶的活性也出现一 定的波动,但均与对照的酶变化趋势同步。 土壤中细菌 PLFA 大于真菌,过氧化氢酶与土壤细菌脂肪酸 23颐0 呈极 显著正相关;在不淹水状态下,土壤中过氧化氢酶、脱氢酶、纤维素酶和脲酶受到含磷脂脂肪酸 12颐0、14颐0、14颐1、 15颐1、16颐1、17颐1、22颐0、24颐0、18颐1n9t 等微生物的调节,真菌生物量与淹水条件下相比,有所下降,二氯喹啉酸土壤 PLFA 总生物量与过氧化氢酶和脲酶呈显著负相关,而与脱氢酶和纤维素酶呈一定的正相关。
英文摘要:
      To explore the effects of quinclorac, a common herbicide in paddy field, on soil enzymes activities and microbial community structure, soil samples from non -flooded paddy soil and flooded paddy soil were supplemented with various concentrations of quinclorac and kept in the dark at 25℃. The results showed that the catalase activity was significantly activated by quinloarc in the flooded soil. The change trend of other three enzymes activities, urease, dehydrogenase and cellulose, were similar to the control, in spite of some change occurred in the three enzymes. PLFA biomass of bacteria was much more than that of fungi. The correlation analysis showed that there was a significantly positive relationship between catalase and 23:0 of soil fatty acid. After the non-flooded soil were treated with quinclorac, analysis of the correlation between enzymes activities and soil PLFAs indicated that, urease, catalase, dehydrogenase and cellulase were regulated mostly by the microorganisms which contained 12:0, 14: 0, 14:1, 15:1, 16:1, 17:1, 22:0, 24:0 and 18:1n9t, and there was a significantly negative relationship between total PLFA biomass in soil and catalase and urease, but a positive relationship between total PLFA biomass and dehydrogenase and cellulose.
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