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Do methanotrophs drive phosphorus mineralization in soil ecosystem?
Mohanty, Santosh Ranjan; Kumar, Adarsh; Parmar, Rakesh; Dubey, Garima; Patra, Ashok; Kollah, Bharati.
Afiliação
  • Mohanty SR; Indian Institute of Soil Science, Indian Council of Agricultural Research, Berasia Road, Nabibagh, Bhopal 462038, India.
  • Kumar A; Indian Institute of Soil Science, Indian Council of Agricultural Research, Berasia Road, Nabibagh, Bhopal 462038, India.
  • Parmar R; National Bureau of Agriculturally Important Microorganisms, Indian Council of Agricultural Research, Kushmaur, Mau, Uttar Pradesh 275101, India.
  • Dubey G; Indian Institute of Soil Science, Indian Council of Agricultural Research, Berasia Road, Nabibagh, Bhopal 462038, India.
  • Patra A; Indian Institute of Soil Science, Indian Council of Agricultural Research, Berasia Road, Nabibagh, Bhopal 462038, India.
  • Kollah B; Indian Institute of Soil Science, Indian Council of Agricultural Research, Berasia Road, Nabibagh, Bhopal 462038, India.
Can J Microbiol ; 67(6): 464-475, 2021 Jun.
Article em En | MEDLINE | ID: mdl-33301360
ABSTRACT
Experiments were carried out to elucidate linkage between methane consumption and mineralization of phosphorous (P) from different P sources. The treatments were (i) no CH4 + no P amendment (absolute control), (ii) with CH4 + no P amendment (control), (iii) with CH4 + inorganic P as Ca3(PO4)2, and (iv) with CH4 + organic P as sodium phytate. P sources were added at 25 µg P·(g soil)-1. Soils were incubated to undergo three repeated CH4 feeding cycles, referred to as feeding cycle I, feeding cycle II, and feeding cycle III. CH4 consumption rate k (µg CH4 consumed·(g soil)-1·day-1) was 0.297 ± 0.028 in no P amendment control, 0.457 ± 0.016 in Ca3(PO4)2, and 0.627 ± 0.013 in sodium phytate. Rate k was stimulated by 2 to 6 times over CH4 feeding cycles and followed the trend of sodium phytate > Ca3(PO4)2 > no P amendment control. CH4 consumption stimulated P solubilization from Ca3(PO4)2 by a factor of 2.86. Acid phosphatase (µg paranitrophenol released·(g soil)-1·h-1) was higher in sodium phytate than the no P amendment control. Abundance of 16S rRNA and pmoA genes increased with CH4 consumption rates. The results of the study suggested that CH4 consumption drives mineralization of unavailable inorganic and organic P sources in the soil ecosystem.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fósforo / Solo / Ecossistema / Metano Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fósforo / Solo / Ecossistema / Metano Idioma: En Ano de publicação: 2021 Tipo de documento: Article