As shown in Table S3 , straw depth had no significant effect on the carbon cycle processes of straw degradation for methane oxidation, but had significant effects on methanogenesis, 3-hydroxypyruvate cycle, and dicarboxylic acid-hydroxybutyrate cycle, while the rest of the carbon cycle processes had highly significant effects.
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Effects of different nitrogen applications and straw return depth on straw microbial and carbon and nitrogen cycles in paddy fields in the cool zone.
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The sentences
At 71 days of straw return, the nitrogen cycling function decreased and some carbon functional genes showed an increasing trend with the increase of straw return depth.