首页> 外文期刊>European Journal of Soil Biology >Changes in the soil bacterial community structure and enzyme activities after intercrop mulch with cover crop for eight years in an orchard
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Changes in the soil bacterial community structure and enzyme activities after intercrop mulch with cover crop for eight years in an orchard

机译:果园覆盖作物覆盖作物八年后土壤细菌群落结构及酶活性的变化

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Bacteria are major decomposers of plant residues in soil and play important roles in nutrient cycling. However, in apple orchards, little is known about the responses of soil bacterial communities to intercrop mulch of the cover crop. Thus, two treatments were tested in this study: 1) conventional approach (CT), where no cover crop was planted and natural weeds were controlled every month by a farmer; 2) intercrop-mulch of the cover crop (GC), where the cover crop grew from late March to early July and it was mowed in early July, August, and September, and residues were left on the soil surface as mulch. Intercrop mulch of the cover crop enhanced the total nitrogen (TN), soil organic carbon (SOC), and soil water content (SWC) by approximately 19%, 15%, and 28%, respectively, compared with CT. The activities of beta-glucosidase (BG), beta-xylosidase (BXYL), and cellobiohydrolase (CBH) were also increased by the intercrop-mulch of the cover crop, where the activities after the GC treatment were 12.3%, 22.0%, and 14.7% higher than CK, respectively. The relative abundances of the phylum Firmicutes, class Clostridia, order Clostridiales, and families Rwninococcaceae and Lachnospiraceae were enhanced greatly by GC. The relative abundances of some genera (relative abundance & 0.05%) in the families Ruminococcaceae and Lachnospiraceae differed significantly under GC and CT (GC & CT, p & 0.05). Some of these genera had positive correlation (p & 0.05) with TN, SOC, BG, BXYL, and CBH. However, PICRUSt and Tax4Fun analyses indicated that the relative abundances of potential genes encoding BG and BXYL were not increased by GC, and the relative abundance of the potential gene encoding CBH was higher in GC according to PICRUSt analysis. We conclude that intercrop mulch with the cover crop can increase the BG, BXYL, CBH activities and the relative abundances of some bacteria which were related to plant biomass degradation.
机译:细菌是土壤中植物残留物的主要分解,并在营养循环中发挥重要作用。然而,在苹果园,对土壤细菌社区对覆盖作物的覆盖物的反应很少。因此,在该研究中测试了两种治疗方法:1)常规方法(CT),没有种植覆盖作物,每月由农民控制天然杂草; 2)封面作物(GC)的覆盖物,其中掩护作物从3月下旬到7月初,它在7月初,8月和9月割草,残留物留在土壤表面上作为覆盖物。与CT相比,覆盖作物的覆盖作物的总氮(TN),土壤有机碳(SOC)和土壤含水量(SWC)分别增强约19%,15%和28%。覆盖作物的覆盖覆盖物也增加了β-葡萄糖苷酶(Bx-磷酸酯酶(Bxysid酶(Bxyla)和纤维水解酶(CBH)的活性,其中GC处理后的活性为12.3%,22.0%,和分别比CK高14.7%。 GC大大提高了场理梭菌,阶级梭菌,梭菌,梭菌和Rwninococcaceae和Lachnospiraceae的相对丰富。在GC和CT(GC& GT; CT,P& CT,P& LT; 0.05)下,一些属(相对丰度和amp; 0.05%)的相对丰度在钻头发和Lachnospireae的差异显着不同。其中一些属性具有阳性相关性(P& LT; 0.05),具有Tn,SoC,Bg,Bxyl和CBH。然而,Picrust和Tax4Fun分析表明,通过GC增加了编码BG和Bxyl的潜在基因的相对丰度,并且根据Picrust分析,在GC中编码CBH的潜在基因的相对丰度较高。我们得出结论,具有覆盖作物的间覆盖物可以增加与植物生物质降解有关的一些细菌的BG,Bxyl,CBH活性和相对丰度。

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