Effects of Co-Inoculating Saccharomyces spp. with Bradyrhizobium japonicum on Atmospheric Nitrogen Fixation in Soybeans (Glycine max (L.))

Author:

Zveushe Obey Kudakwashe1ORCID,de Dios Victor Resco123ORCID,Zhang Hengxing1,Zeng Fang1,Liu Siqin1,Shen Songrong1,Kang Qianlin1,Zhang Yazhen1,Huang Miao1,Sarfaraz Ahmed1,Prajapati Matina1,Zhou Lei4,Zhang Wei5,Han Ying1,Dong Faqin67

Affiliation:

1. School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China

2. Department of Crop and Forest Sciences, University of Lleida, 25198 Lleida, Spain

3. Joint Research Unit CTFC-AGROTECNIO, Universitat de Lleida, 25198 Lleida, Spain

4. Fundamental Science on Nuclear Wastes and Environmental Safety Laboratory, Southwest University of Science and Technology, Mianyang 621010, China

5. Center of Analysis and Testing, Southwest University of Science and Technology, Mianyang 621010, China

6. School of Environment and Resource, Southwest University of Science and Technology, Mianyang 621010, China

7. Key Laboratory of Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang 621010, China

Abstract

Crop production encounters challenges due to the dearth of nitrogen (N) and phosphorus (P), while excessive chemical fertilizer use causes environmental hazards. The use of N-fixing microbes and P-solubilizing microbes (PSMs) can be a sustainable strategy to overcome these problems. Here, we conducted a greenhouse pot experiment following a completely randomized blocked design to elucidate the influence of co-inoculating N-fixing bacteria (Bradyrhizobium japonicum) and PSMs (Saccharomyces cerevisiae and Saccharomyces exiguus) on atmospheric N2-fixation, growth, and yield. The results indicate a significant influence of interaction on Indole-3-acetic acid production, P solubilization, seedling germination, and growth. It was also found that atmospheric N2-fixation, nodule number per plant, nodule dry weight, straw, and root dry weight per plant at different growth stages were significantly increased under dual inoculation treatments relative to single inoculation or no inoculation treatment. Increased seed yield and N and P accumulation were also noticed under co-inoculation treatments. Soil available N was highest under sole bacterial inoculation and lowest under the control treatment, while soil available P was highest under co-inoculation treatments and lowest under the control treatment. We demonstrated that the co-inoculation of N-fixing bacteria and PSMs enhances P bioavailability and atmospheric N2-fixation in soybeans leading to improved soil fertility, raising crop yields, and promoting sustainable agriculture.

Funder

National Key Research and Development Plan

National Natural Science Foundation of China

Key Research & Development Plan of Sichuan Science and Technology Department

Doctor’s Fund of Southwest University of Science and Technology

Sichuan Natural Science Foundation

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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