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首页> 外文期刊>Journal of soils & sediments >Soil alkaline phosphatase activity and bacterial phoD gene abundance and diversity under regimes of inorganic fertilizer reduction with straw
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Soil alkaline phosphatase activity and bacterial phoD gene abundance and diversity under regimes of inorganic fertilizer reduction with straw

机译:土壤碱性磷酸酶活性和秸秆无机肥料制度下的细菌磷酸基因丰富与多样性

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摘要

Purpose Alkaline phosphatase (ALP), which was encoded by bacterialphoDgenes, hydrolyzes organic phosphorus (P) into dissolved phosphorus in soils and is therefore vital for absorbing phosphorus (P) in vegetation. However, the unreasonable application of chemical fertilizer will inhibit this process of dissolving phosphorus. Until now, although the fact that straw is the optimal C source has been recognized, its impact onphoD-harboring bacteria under decreasing chemical fertilizer is not clear. Materials and methods A field experiment was established with chemical fertilizer only (F) and the gradient inorganic fertilizer reduction with straw: inorganic fertilizer with straw (FS), 70% inorganic fertilizer with straw (0.7FS), 60% inorganic fertilizer with straw (0.6FS), and 50% inorganic fertilizer with straw (0.5FS). Mixed treatments received equal amounts of straw. Integrated high-throughput absolute abundance quantification (iHAAQ) was used to investigate thephoDbacterial community structure. Results and discussion From the correlation between the plant-total P of three vegetables and microbial variables, only the plant-total P of chili was significantly related to ALP and the abundance ofphoDgene. Although the total vegetable yield was significantly increased by the addition of straw, no correlation with ALP andphoDbacterial community was found. In addition, the abundance of thephoDbacterial community and the levels of ALP activity were both higher in a regime featuring 70% inorganic fertilization with straw (0.7FS), but the ability ofphoDbacteria ALP release was strongly activated in a regime featuring 50% inorganic fertilization with straw (0.5FS). Distance-based redundancy analysis (db-RDA) indicated that the community ofphoDbacteria clustered four groups and suggested that a number of soil factors played key roles in shaping the entirephoDbacterial community, including soil organic carbon, total nitrogen, available phosphorus, Ca2+-Ex, and total potassium. The correlation between the absolute abundance of ALP-regulating bacteria and ALP activity suggests thatAmycolatopsismay predominantly account for ALP activity, especially in the 0.5FS regime. Conclusion In the reduction of chemical fertilizer, the straw substitution did not reshape the structure of thephoDbacterial community but strongly activatedphoDbacteria to release ALP.
机译:用碱性磷酸酶(ALP),用杀菌非杀菌剂编码,将有机磷(P)水解成溶解磷,因此对于吸收植被中的磷(P)至关重要。然而,化肥的不合理应用将抑制溶解磷的这种过程。到目前为止,虽然秸秆是最佳的C源的事实已经认识到,但它在减少化肥减少的腹腔内腹腔细菌的影响尚不清楚。材料和方法采用田间实验,仅采用化肥(F)和梯度无机肥料用稻草减少,用稻草(FS),70%无机肥料,秸秆(0.7FS),60%无机肥料,带秸秆的无机肥料( 0.6FS)和50%的秸秆(0.5FS)的无机肥料。混合治疗接收相等量的吸管。集成的高通量绝对丰度量化(IHAAQ)用于研究非基因分区结构。结果与探讨了三种蔬菜和微生物变量的植物总P之间的相关性,只有辣椒的植物总P与ALP和丰度有关。虽然通过添加吸管,植物总产量显着增加,但没有发现与ALP andphod基团群落的相关性。此外,在具有70%的秸秆(0.7FS)的政权具有70%的无机施肥中,患有非基因群落和ALP活性水平的丰富性均均高,但在具有50%无机施肥的政权中,医药释放的能力强烈激活。稻草(0.5fs)。基于距离的冗余分析(DB-RDA)表明,非齐突的社区聚集了四组,并建议许多土壤因素在塑造Entilephocococation群落中发挥了关键作用,包括土壤有机碳,总氮,可用磷,Ca2 + -ex,和总钾。 ALP调节细菌和ALP活性的绝对丰度与ALP活性之间的相关性表明ComColatopsismay主要占ALP活动,特别是在0.5FS制度中。结论在减少化肥中,秸秆取代并未重塑神法群落的结构,但强烈的活化非释放ALP。

著录项

  • 来源
    《Journal of soils & sediments》 |2021年第1期|388-402|共15页
  • 作者单位

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China;

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China|Sichuan Agr Univ Coll Resources Chengdu 611130 Peoples R China;

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China;

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China;

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China;

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China;

    Southwest Univ Coll Resources & Environm 2 Tiansheng St Chongqing 400716 Peoples R China;

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

    phoDbacterial community; Inorganic fertilizer reduction; Integrated high-throughput absolute abundance quantification (iHAAQ);

    机译:植物群落;无机肥料减少;集成的高通量绝对丰富量化(IHAAQ);

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