New approach to soil fertility management: Biogeosystem Technique methodology (critical review)

Author:

Kalinitchenko Valery P.12ORCID,Swidsinski Alexander V.34,Glinushkin Alexey P.5,Overcash Michael R.6,Meshalkin Valery P.7,Minkina Tatiana M.8,Rajput Vishnu D.8,Chernenko Vladimir V.1,Mandzhieva Saglara S.8,Sushkova Svetlana N.8,Rykhlik Artyom E.1,Larin Georgiy S.1,Gudkov Sergey V.29,Baryshev Mikhail G.2,Sevostyanov Mikhail A.210,Makarenkov Dmitry A.11

Affiliation:

1. Institute of Fertility of Soils of South Russia Persianovka Russia

2. Department of Agroecosystem Safety and Productivity All‐Russian Phytopathology Research Institute of the Russian Academy of Sciences Big Vyazemy Russia

3. Moleculargenetic Laboratory for Polymicrobial Infections and Biofilms Charite, University Medicine Berlin Germany

4. Department of General Hygiene, Institute of Public Health M Sechenov First Moscow State Medical University (Sechenov University) Moscow Russia

5. Department of Agricultural Sciences Russian Academy of Science Moscow Russia

6. Department of Sustainability Research Environmental Genome Initiative Raleigh North Carolina USA

7. Department of Logistics and Economic Informatics Mendeleev University of Chemical Technology of Russia Moscow Russia

8. Academy of Biology and Biotechnology Southern Federal University Rostov‐on‐Don Russia

9. Prokhorov General Physics Institute of the Russian Academy of Sciences Moscow Russia

10. Laboratory of Strength and Plasticity of Metallic and Composite Materials and Nanomaterials Institute of Metallurgy and Materials Science of the Russian Academy of Sciences named after A.A. Baikov Moscow Russia

11. Institute of Chemical Reagents and High Purity Chemical Substances National Research Centre “Kurchatov Institute” Moscow Russia

Abstract

AbstractA standard management soil priming effect is short term. A current soil plowing, irrigation and waste utilization soil priming action shortcomings elimination is needed. The Biogeosystem Technique (BGT*) priming action system was developed for soil management to provide a higher‐level priming effect. The BGT* is focused on a soil biogeochemical cycle activation similar to the biodegradation in a colon of a live organism as an efficient benchmark bioreactor. Fluorescence in situ hybridization showed a cooperation of bacteria within polymicrobial biofilms and a probability of the polymicrobial biofilms biodegradation process acceleration and soil organic matter (SOM) regime improvement. The soil priming actions the BGT* technological management is capable of providing are based on the BGT* constituents, whose essence, applications and corresponding detailed data are presented in available studies. The main BGT* components are as follows. The illuvial horizon intra‐soil milling artificial soil aggregation (a form of crumbling and mixing) priming action provides the soil structuring, a SOM content increase and an annual yield increment direct priming effects. A long‐term secondary priming effect is a technology life cycle with higher profitability compared to the standard moldboard, chiseling and three‐tier plowing. The intra‐soil pulse sequential‐discrete watering priming action is performed through water injection into the soil in sequence. A next water spreading provides the soil aggregate stability, the seedling length and weight increment direct priming effect and a water‐saving secondary priming effect. The intra‐soil dispersed liquid, paste‐like and loose granular nutrition and structuring matter intra‐soil milling application priming action ensures soil structuring direct priming effects, heavy metals passivation and long‐term yield increment secondary priming effects. The BGT* methodology could be useful for soil management improvement.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

Wiley

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