# Optimizing nutrient use efficiency, productivity, energetics, and economics of red cabbage following mineral fertilization and biopriming with compatible rhizosphere microbes

**Authors:** Deepranjan Sarkar, Ardith Sankar, O. Siva Devika, Sonam Singh, Shikha, Manoj Parihar, Amitava Rakshit, R. Z. Sayyed, Abdul Gafur, Mohammad Javed Ansari, Subhan Danish, Shah Fahad, Rahul Datta

PMC · DOI: 10.1038/s41598-021-95092-6 · 2021-08-03

## TL;DR

This study shows that using certain microbes with reduced fertilizer improves cabbage growth, soil health, and economic returns.

## Contribution

The study introduces dual microbial inoculation with reduced fertilizer as a novel sustainable strategy for red cabbage cultivation.

## Key findings

- Dual inoculation with Trichoderma harzianum and Pseudomonas fluorescens improved cabbage growth and soil organic carbon.
- Bio-primed plants showed higher energy output and economic returns compared to conventional methods.
- Reduced fertilizer with microbial treatment maintained soil fertility while increasing productivity.

## Abstract

Conventional agricultural practices and rising energy crisis create a question about the sustainability of the present-day food production system. Nutrient exhaustive crops can have a severe impact on native soil fertility by causing nutrient mining. In this backdrop, we conducted a comprehensive assessment of bio-priming intervention in red cabbage production considering nutrient uptake, the annual change in soil fertility, nutrient use efficiency, energy budgeting, and economic benefits for its sustainable intensification, among resource-poor farmers of Middle Gangetic Plains. The compatible microbial agents used in the study include Trichoderma harzianum, Pseudomonas fluorescens, and Bacillus subtilis. Field assays (2016–2017 and 2017–2018) of the present study revealed supplementing 75% of recommended NPK fertilizer with dual inoculation of T. harzianum and P. fluorescens increased macronutrient uptake (N, P, and K), root length, heading percentage, head diameter, head weight, and the total weight of red cabbage along with a positive annual change in soil organic carbon. Maximum positive annual change in available N and available P was recorded under 75% RDF + P. fluorescens + B. subtilis and 75% RDF + T. harzianum + B. subtilis, respectively. Bio-primed plants were also higher in terms of growth and nutrient use efficiency (agronomic efficiency, physiological efficiency, apparent recovery efficiency, partial factor productivity). Energy output (26,370 and 26,630 MJ ha−1), energy balance (13,643 and 13,903 MJ ha−1), maximum gross return (US $ 16,030 and 13,877 ha−1), and net return (US $ 15,966 and 13,813 ha−1) were considerably higher in T. harzianum, and P. fluorescens treated plants. The results suggest the significance of the bio-priming approach under existing integrated nutrient management strategies and the role of dual inoculations in producing synergistic effects on plant growth and maintaining the soil, food, and energy nexus.

## Linked entities

- **Species:** Trichoderma harzianum (taxon 5544), Pseudomonas fluorescens (taxon 294), Bacillus subtilis (taxon 1423)

## Full-text entities

- **Diseases:** OC (MESH:D000092124)
- **Species:** Trichoderma harzianum (species) [taxon 5544], Pseudomonas plecoglossicida (species) [taxon 70775], Trichotorquatus sp. 5 (species) [taxon 2815555], Paraburkholderia sp. (species) [taxon 1926495], Trichoderma (genus) [taxon 5543], Pseudomonas fluorescens (species) [taxon 294], Pantoea cypripedii (species) [taxon 55209], Azotobacter chroococcum (species) [taxon 353], Abelmoschus esculentus (lady's fingers, species) [taxon 455045], Homo sapiens (human, species) [taxon 9606], Pseudomonas putida (species) [taxon 303], Brassica oleracea var. botrytis (cauliflower, varietas) [taxon 3715], Bacillus subtilis (species) [taxon 1423], Brassica oleracea (wild cabbage, species) [taxon 3712], Cupriavidus necator (species) [taxon 106590], Solanum lycopersicum (tomato, species) [taxon 4081]
- **Cell lines:** T9 — Homo sapiens (Human), Human papillomavirus-related endocervical adenocarcinoma, Cancer cell line (CVCL_M092), S2 — Drosophila melanogaster (Fruit fly), Spontaneously immortalized cell line (CVCL_Z232)

## Figures

3 figures with captions in the complete paper: https://tomesphere.com/paper/PMC8333308/full.md

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Source: https://tomesphere.com/paper/PMC8333308