Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
inter decrease » linear decrease (Expand Search), water decreases (Expand Search), step decrease (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
inter decrease » linear decrease (Expand Search), water decreases (Expand Search), step decrease (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
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2821
Image 2_The effect of Torreya grandis inter-cropping with Polygonatum sibiricum on soil microbial community.jpeg
Published 2024“…Inter-cropping increased the abundance of Micrococcaceae, Xanthobacteraceae, Saitozyma, while decreased Bacillus, Burkholderia, Streptomyces, Cladosporium, and Gibberella significantly of the rhizosphere soil of T. grandis. …”
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2822
Table 3_The effect of Torreya grandis inter-cropping with Polygonatum sibiricum on soil microbial community.xlsx
Published 2024“…Inter-cropping increased the abundance of Micrococcaceae, Xanthobacteraceae, Saitozyma, while decreased Bacillus, Burkholderia, Streptomyces, Cladosporium, and Gibberella significantly of the rhizosphere soil of T. grandis. …”
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2823
Table 1_The effect of Torreya grandis inter-cropping with Polygonatum sibiricum on soil microbial community.docx
Published 2024“…Inter-cropping increased the abundance of Micrococcaceae, Xanthobacteraceae, Saitozyma, while decreased Bacillus, Burkholderia, Streptomyces, Cladosporium, and Gibberella significantly of the rhizosphere soil of T. grandis. …”
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2824
Table 4_The effect of Torreya grandis inter-cropping with Polygonatum sibiricum on soil microbial community.xlsx
Published 2024“…Inter-cropping increased the abundance of Micrococcaceae, Xanthobacteraceae, Saitozyma, while decreased Bacillus, Burkholderia, Streptomyces, Cladosporium, and Gibberella significantly of the rhizosphere soil of T. grandis. …”
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2825
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2826
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2827
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2828
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2829
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2830
FBLN1 regulates ferroptosis by reducing free ferrous iron by inhibiting TGF-β/Smad pathway.
Published 2024Subjects: -
2831
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2832
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2833
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2834
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2840