بدائل البحث:
significantly improved » significantly increased (توسيع البحث)
improved urease » improved kinase (توسيع البحث), improves disease (توسيع البحث), improved average (توسيع البحث)
i decrease » a decrease (توسيع البحث), _ decreased (توسيع البحث), _ decreases (توسيع البحث)
_ decrease » _ decreased (توسيع البحث), _ decreasing (توسيع البحث)
significantly improved » significantly increased (توسيع البحث)
improved urease » improved kinase (توسيع البحث), improves disease (توسيع البحث), improved average (توسيع البحث)
i decrease » a decrease (توسيع البحث), _ decreased (توسيع البحث), _ decreases (توسيع البحث)
_ decrease » _ decreased (توسيع البحث), _ decreasing (توسيع البحث)
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1
S1 Data -
منشور في 2024"…Meanwhile, plant extract-related treatments significantly increased plant physiological properties and TP (Total protein) content, and decreased the content of MDA (malondialdehyde) by 15.70% -36.59% and PRO (proline) by 30.13% -148.44%. …"
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2
Data Sheet 1_Synchronized nutrition fertilizer improves soil microbial diversity and sugarcane yield through agrochemical and enzymatic regulation.docx
منشور في 2025"…</p>Results<p>Results showed that yield, °Brix in the SNFert, even with 15% and 25% less fertilizer input, were no significant differences with those of CF. Specifically, SNF1 increased sugarcane yield and tillers by 6.84% and 18.63%, raised pH and urease by 0.40 units and 2.29 times, reduced Nmin and EC by 81.69% and 77.69% with 15% lower fertilizer input, respectively. …"
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3
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4
DataSheet1_Synergistic effects of SAP and PGPR on physiological characteristics of leaves and soil enzyme activities in the rhizosphere of poplar seedlings under drought stress.pdf
منشور في 2024"…Compared with normal watering, the DR treatment significantly decreased the contents of dehydroascorbate (DHA; 19.08%), reduced glutathione (GSH; 14.18%), oxidized glutathione, soluble protein (26.84%), indoleacetic acid (IAA; 9.47%), gibberellin (GA) and zeatin (ZT), the IAA/abscisic acid (ABA), GA/ABA, ZT/ABA and (IAA+GA+ZT)/ABA (34.67%) ratios in leaves, and the urease and sucrase activities in the rhizosphere soil. …"
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5
Data Sheet 1_Effects of continuous cropping on soil metabolomics and rhizosphere bacterial communities in Panax quinquefolius L..docx
منشور في 2025"…</p>Methods<p>We investigated the effects of CCOs on soil physicochemical properties, enzyme activities, microbial community composition, and metabolite profiles in the rhizosphere of P. quinquefolius cultivated continuously for one, two, three, and four consecutive years (designated as CC1, CC2, CC3, and CC4, respectively) without crop rotation. …"
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6
Data Sheet 1_Biochar and Bacillus subtilis co-drive dryland soil microbial community and enzyme responses.doc
منشور في 2025"…Meanwhile, except for the YJ treatment, the richness of the fungal community decreased, while the diversity index increased. The experimental results showed that the application of rapeseed straw biochar or the compound microbial inoculant alone significantly increased soil urease activity, reaching 40.34 µg of NH<sup>+</sup><sub>4</sub>-N g<sup>−1</sup> of soil h<sup>−1</sup> and 40.29 µg of NH<sup>+</sup><sub>4</sub>-N g<sup>−1</sup> of soil h<sup>−1</sup> at the end of the incubation period, respectively.…"
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7
Table 1_Effects of grassland degradation on soil ecological stoichiometry and soil microbial community on the South of the Greater Khingan Mountains.docx
منشور في 2024"…Grassland degradation significantly decreased soil bacterial and fungal richness. …"
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8
DataSheet1_Slow-release nitrogen fertilizer application regulated rhizosphere microbial diversity to increase maize yield.docx
منشور في 2024"…Coordinate soil physical and chemical properties, increase soil enzyme activity and soil nutrients, improve soil microenvironment, regulate microbial community composition, and promote above-ground yield increase, in which nitrogen application, urease, nitrate reductase and nitrate nitrogen are the main driving factors for yield increase. …"
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9
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10
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11
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12
Table_1_Bacillus velezensis B105-8, a potential and efficient biocontrol agent in control of maize stalk rot caused by Fusarium graminearum.DOCX
منشور في 2024"…B105-8 could effectively improve soil urease (S-UE), invertase (S-SC), and catalase (S-CAT) activities. …"
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13
Microbial Alliances: Unveiling the Effects of a Bacterial and Fungal Cross-Kingdom SynCom on Bacterial Dynamics, Rhizosphere Metabolites, and Soybean Resilience in Acidic Soils
منشور في 2025"…Metagenomics and metabolomics revealed that RhRi significantly enhanced beneficial microorganisms (<i>AD3, Gemmataceae</i>) and metabolites (putrescine, stearic acid), hence improving nutrient cycling, stress tolerance, and membrane integrity. …"
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14
Table_2_Bacillus velezensis B105-8, a potential and efficient biocontrol agent in control of maize stalk rot caused by Fusarium graminearum.DOCX
منشور في 2024"…B105-8 could effectively improve soil urease (S-UE), invertase (S-SC), and catalase (S-CAT) activities. …"
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15
Table_4_Bacillus velezensis B105-8, a potential and efficient biocontrol agent in control of maize stalk rot caused by Fusarium graminearum.DOCX
منشور في 2024"…B105-8 could effectively improve soil urease (S-UE), invertase (S-SC), and catalase (S-CAT) activities. …"
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16
Table_5_Bacillus velezensis B105-8, a potential and efficient biocontrol agent in control of maize stalk rot caused by Fusarium graminearum.DOCX
منشور في 2024"…B105-8 could effectively improve soil urease (S-UE), invertase (S-SC), and catalase (S-CAT) activities. …"
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17
Table_3_Bacillus velezensis B105-8, a potential and efficient biocontrol agent in control of maize stalk rot caused by Fusarium graminearum.DOCX
منشور في 2024"…B105-8 could effectively improve soil urease (S-UE), invertase (S-SC), and catalase (S-CAT) activities. …"
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18
Data Sheet 2_Effects of continuous cropping on soil metabolomics and rhizosphere bacterial communities in Panax quinquefolius L..docx
منشور في 2025"…</p>Methods<p>We investigated the effects of CCOs on soil physicochemical properties, enzyme activities, microbial community composition, and metabolite profiles in the rhizosphere of P. quinquefolius cultivated continuously for one, two, three, and four consecutive years (designated as CC1, CC2, CC3, and CC4, respectively) without crop rotation. …"