Back to Search Start Over

Organic Amendments and Elemental Sulfur Stimulate Microbial Biomass and Sulfur Oxidation in Alkaline Subtropical Soils.

Authors :
Malik, Kouser Majeed
Khan, Khalid Saifullah
Billah, Motsim
Akhtar, Mohammad Saleem
Rukh, Shah
Alam, Sadia
Munir, Asia
Mahmood Aulakh, Azhar
Rahim, Majid
Qaisrani, Muther Mansoor
Khan, Naeem
Source :
Agronomy; Dec2021, Vol. 11 Issue 12, p2514-2514, 1p
Publication Year :
2021

Abstract

Sulfur deficiency arising due to intensive cultivation, use of sulfur free fertilizers and reduction in atmospheric sulfur depositions has become a major issue limiting crop production in many parts of the world. Elemental sulfur could be a good source of available S, but its slow oxidation is a problem for its efficient use as a sulfur fertilizer. Main objective of the study was to assess the effect of organic amendments (OA) and elemental sulfur (ES) on microbial activities, sulfur oxidation and availability in soil. A laboratory incubation experiment was carried out for a 56 days period using two sulfur deficient alkaline soils. Organic amendments (OA), i.e., farmyard manure (FYM), poultry litter (PL) and sugarcane filter cake (SF), were applied (1% w/w) with or without elemental sulfur (ES) at 50 mg kg<superscript>−1</superscript>. Application of ES alone or in combination with OA significantly increasedCO<subscript>2</subscript>-C evolution, microbial biomass, and enzyme activities in the soils, except dehydrogenase activity (DHA) which was not affected by ES application. Combined application of OA and ES had a more pronounced effect on microbial parameters compared to ES or OA applied alone. Ratios of dehydrogenase activity-to-microbial biomass C and arylsulfatase activity-to-microbial biomass C were high in ES+FYM and ES+SF treatments, respectively. Elemental sulfur got sufficiently oxidized resulting in significant improvement in plant available S. Relatively more ES was distributed into C-bonded-S than ester bonded-S. Increase in sulfur availability in ES+OA amended soils was the combined function of sulfur oxidation and mineralization processes through improved microbial activity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20734395
Volume :
11
Issue :
12
Database :
Complementary Index
Journal :
Agronomy
Publication Type :
Academic Journal
Accession number :
154317498
Full Text :
https://doi.org/10.3390/agronomy11122514