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Substrate control of sulphur utilisation and microbial stoichiometry in soil: Results of 13C, 15N, 14C, and 35S quad labelling

  • Qingxu Ma
  • , Yakov Kuzyakov
  • , Wankun Pan
  • , Sheng Tang
  • , David R. Chadwick
  • , Yuan Wen
  • , Paul W. Hill
  • , Andy Macdonald
  • , Tida Ge
  • , Linlin Si
  • , Lianghuan Wu
  • , Davey L. Jones
  • University of Göttingen
  • Zhejiang University
  • Rothamsted Research Limited
  • Ningbo University
  • Zhejiang Academy of Agricultural Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

Global plant sulphur (S) deficiency is increasing because of a reduction in sulphate-based fertiliser application combined with continuous S withdrawal during harvest. Here, we applied 13C, 15N, 14C, and 35S quad labelling of the S-containing amino acids cysteine (Cys) and methionine (Met) to understand S cycling and microbial S transformations in the soil. The soil microorganisms absorbed the applied Cys and Met within minutes and released SO42− within hours. The SO42− was reutilised by the MB within days. The initial microbial utilisation and SO42− release were determined by amino acid structure. Met released 2.5-fold less SO42− than Cys. The microbial biomass retained comparatively more C and S from Met than Cys. The microorganisms decomposed Cys to pyruvate and H2S whereas they converted Met to α-ketobutyrate and S-CH3. The microbial stoichiometries of C, N, and S derived from Cys and Met were balanced after 4 d by Cys-derived SO42− uptake and Met-derived CO2 release. The microbial C:N:S ratio dynamics showed rapid C utilisation and loss, stable N levels, and S accumulation. Thus, short-term organic S utilisation by soil microorganisms is determined by amino acid structure whilst long-term organic S utilisation by soil microorganisms is determined by microbially controlled stoichiometry.
Original languageEnglish
Pages (from-to)3148-3158
Number of pages11
JournalThe ISME Journal
Volume15
Issue number11
Early online date11 May 2021
DOIs
Publication statusPublished - Nov 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 2 - Zero Hunger
    SDG 2 Zero Hunger

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