Article ID Journal Published Year Pages File Type
305418 Soil and Tillage Research 2016 9 Pages PDF
Abstract

•One-time strategic tillage was used in continuous no-till Calcisol in Australia.•Chisel or offset disc tillage did not exert negative effects on soil biological properties.•Chisel tillage increased soil microbial biomass carbon.•Chisel tillage increased soil ability for degradation of D + cellubiose and mannitol.•Chisel tillage increased Alphaproteobacteria, Bacteroidetes and Firmicutes.

Strategic tillage (or occasional tillage) has been touted as a potential solution for the severe weed infestations of long-term no-till (NT). Nevertheless, there is little information on the influence of strategic tillage on microbial properties of Australian NT soils. In the present study, we assessed the influence of strategic tillage on the microbial properties of a seven years’ NT Calcisol in Moonie, Queensland, Australia. We tested the hypothesis that the application of one-time strategic tillage with chisel or offset disc does not cause major impacts on soil biological health in a NT system. Strategic tillage was applied once and soil samples were collected 13 months after tillage from the depths 0–10 and 10–20 cm. The measured biological indicators included soil microbial biomass carbon, catabolic activity (MicroResp™ assay) and total microbial activity (fluorescein diacetate method). The structure of bacterial communities was profiled by quantitative polymerase chain reaction (qPCR) and terminal reaction fragment length polymorphism (T-RFLP). Principal components analyses based on qPCR and T-RFLP data did not show tillage effects on soil bacterial communities. However, relative to the NT, chisel tillage led to significant increases in microbial biomass carbon (+34.4%), abundances of Alphaproteobacteria (+74.6%), Bacteroidetes (+113.7%) and Firmicutes (+36.5%), and the utilisation of D+ cellubiose (+178.4%) as well as mannitol (+167.2%) at 0–10 cm depth. In contrast, the influence of offset disc tillage was restricted to an increased abundance of Alphaproteobacteria (+64.6%) at 0–10 cm depth. Our study suggests that, overall, one-time strategic tillage using either chisel or offset disc had a minor positive influence on soil biological attributes of the NT Calcisol 13 months after tillage.

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Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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