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首页> 外文期刊>Ecological indicators >Temperate grassland shifted from nitrogen to phosphorus limitation induced by degradation and nitrogen deposition: Evidence from soil extracellular enzyme stoichiometry
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Temperate grassland shifted from nitrogen to phosphorus limitation induced by degradation and nitrogen deposition: Evidence from soil extracellular enzyme stoichiometry

机译:温带草地从氮气转移到通过降解和氮沉积诱导的磷局限性:来自土壤细胞外酶化学计量的证据

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摘要

Soil extracellular enzyme activity (EEA) and enzymatic stoichiometry (ES) can provide a good indication of changes in soil nutrient availability and microbial demands for energy and nutrients. However, across different levels of degraded grasslands, whether the responses of soil EEAs to increasing nitrogen (N) deposition are consistent remains unclear. To explore the effects of N addition on soil EEAs in natural and degraded grasslands, we conducted a 3-year N addition experiment (0, 10, 20, 30, 40 and 50 g N m(-2) yr(-1)) at four sites in temperate grassland of northern China with different levels of degradation. We measured seven soil EEAs, including carbon (C)-acquiring enzyme (beta-1,4-glucosidase (BG)), N-acquiring enzymes (beta-N-acetyl-glucosaminidase (NAG) and leucine aminopeptidase (LAP)) and phosphorus (P)-acquiring enzyme (acid phosphatase (AP)) activities. The length and angle of vectors defined by ratios of enzyme activities (BG/(NAG + LAP) vs. BG/AP) were used to indicate relative microbial investments in C- (length), and N- and P- (angle) acquiring enzymes. Our results showed that N addition significantly increased AP activity by 176%, 116%, 220% and 268%, decreased LAP activity by 39%, 70%, 67% and 99%, but increased NAG activity by 185%, 137%, 164% and 118% in non-degraded, moderately degraded, severely degraded and extremely degraded grassland, respectively. Decreasing enzyme N: P and C: P ratios and increasing vector angle with the increasing levels of degradation suggested that temperate grassland could transform into P-limitation (angles 45 degrees) from N-limitation (angles 45 degrees). N addition significantly decreased the enzyme N: P ratio and increased the vector angle (angles 45 degrees), indicating that N addition further aggravated P limitation. Our findings highlight that grassland degradation would affect the responses of soil EEAs to N addition and cause nutrient limitation transformation. Soil ES might be a sensitive indicator mediated by soil microorganisms to the relative resource limitation in temperate grasslands.
机译:土壤细胞外酶活性(EEA)和酶化学计量(ES)可以良好地指示土壤养分可用性和微生物需求对能量和营养的微生物需求。然而,跨越不同水平的降解草原,土壤eeas对增加氮气(n)沉积的反应是一致的,仍然不清楚。为了探讨N添加对土壤eys的N添加到自然和退化的草原中的影响,我们进行了3年的添加实验(0,10,20,30,40和50g N m(-2)Yr(-1))在中国北方温带草地的四个地点,具有不同水平的降解。我们测量了七种土壤eeas,包括碳(c)-acquiring酶(β-1,4-葡糖苷酶(bg)),n获取酶(β-乙酰基 - 葡糖胺酶(nag)和亮氨酸氨基肽酶(leap))和磷(P)-Acquiring酶(酸性磷酸酶(AP))活性。用酶活性比率(BG /(NAG + LAP)与BG / AP)定义的载体的长度和角度用于表示C-(长)和N-(角)获取中的相对微生物投资酶。我们的研究结果表明,N添加显着提高了AP活性的176%,116%,220%和268%,速度下降39%,70%,67%和99%,但营养量增加185%,137%,在非降级,中度劣化,严重降级和极其降级的草原中,164%和118%。降低酶N:P和C:P比率和增加载体角度随着降解水平的增加表明,温带草原可以从n限制(角度<45度)转变为p限制(角度> 45度)。 N添加显着降低了酶N:P比并增加了矢量角度(角度> 45度),表明N添加进一步加剧的P限制。我们的研究结果强调,草地降解会影响土壤eeas的反应,并引起养分限制转化。土壤ES可能是由土壤微生物介导的对温带草地上相对资源限制的敏感指标。

著录项

  • 来源
    《Ecological indicators》 |2019年第6期|453-464|共12页
  • 作者单位

    Peking Univ Coll Urban & Environm Sci Dept Ecol Beijing 100871 Peoples R China|Peking Univ Minist Educ Key Lab Earth Surface Proc Beijing 100871 Peoples R China|Peking Univ Shenzhen Grad Sch Sch Urban Planning & Design Shenzhen 518055 Peoples R China;

    Peking Univ Coll Urban & Environm Sci Dept Ecol Beijing 100871 Peoples R China|Peking Univ Minist Educ Key Lab Earth Surface Proc Beijing 100871 Peoples R China|Peking Univ Shenzhen Grad Sch Sch Urban Planning & Design Shenzhen 518055 Peoples R China;

    Peking Univ Coll Urban & Environm Sci Dept Ecol Beijing 100871 Peoples R China|Peking Univ Minist Educ Key Lab Earth Surface Proc Beijing 100871 Peoples R China;

    Peking Univ Coll Urban & Environm Sci Dept Ecol Beijing 100871 Peoples R China|Peking Univ Minist Educ Key Lab Earth Surface Proc Beijing 100871 Peoples R China;

    Peking Univ Coll Urban & Environm Sci Dept Ecol Beijing 100871 Peoples R China|Peking Univ Minist Educ Key Lab Earth Surface Proc Beijing 100871 Peoples R China|Peking Univ Shenzhen Grad Sch Sch Urban Planning & Design Shenzhen 518055 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbial activity; Enzymatic stoichiometry; Grassland degradation; Nitrogen addition; Nutrient limitation shift;

    机译:微生物活性;酶化学计量;草地降解;氮气添加;营养限制变化;

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