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Differences in Distribution of Potassium-Solubilizing Bacteria in Forest and Plantation Soils in Myanmar

Bibliographic Data

ID7440723
AuthorsXin Dong (0000-0001-9908-4838, University of Science and Technology Beijing), Le Lv (0000-0001-7356-7444, University of Science and Technology Beijing), Weijun Wang (0000-0002-6077-1101, University of Science and Technology Beijing), Yongzhi Liu (0000-0002-5700-9888, University of Science and Technology Beijing), Chunhua Yin (0000-0002-5067-2951, University of Science and Technology Beijing), Qianqian Xu (0000-0003-2575-2068, University of Science and Technology Beijing), Hai Yan (0000-0002-2589-4798, University of Science and Technology Beijing), Jinxia Fu (0000-0001-9881-3699, University of Hawaii System, corresponding author), Xiaolu Liu (0000-0003-4034-963X, University of Science and Technology Beijing, corresponding author)
Year2019
Volume16
Issue5
Pages700-700
Publication date2019-02-27
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph16050700
PMID30818756
OpenAlexW2915755235
LanguageEN
Citations received1
References cited45

Potassium (K) has been recognized as an essential element in intensive agricultural production systems, and deficiency of K usually results in a decrease in crop yields. The utilization of potassium-solubilizing bacteria (KSB) to increase the soluble K content in soil has been regarded as a desirable pathway to increase plant yields. Following the inoculation of KSB in the soil, potassium can be released (in the form of K+) and consumed by plants. This study aims to investigate and compare the distribution characteristics of potassium-solubilizing bacteria between forest and plantation soils in Myanmar. In this study, 14 KSB strains were isolated from rhizosphere samples collected from forest soil, as well as fertilized rubber tree rhizosphere soil and fertilized bare soil from a plantation. Broadleaf forests with high levels of canopy cover mainly comprised the forest environment, and rubber trees were planted in the plantation environment. The Chao and abundance-based coverage estimator (ACE) indices showed that the microbial abundance of the plantation soil was higher than that of the forest soil. According to the Illumina MiSeq sequencing analysis results, the Shannon index of the forest soil was lower while the Simpson index was higher, which demonstrated that the microbial diversity of the forest soil was higher than that of the plantation soil. Potassium-solubilizing test results showed that the strains E, I, M, and N were the most effective KSB under liquid cultivation conditions. Additionally, KSB only accounted for less than 5.47% of the total bacteria detected in either of the sample types, and the distribution of dominant KSB varied with the soil samples. As another result, the abundance of Pseudomonas spp. in S1 was higher than in S2 and S3, indicating a negative impact on the growth of Pseudomonas in the fertilized rubber tree rhizosphere soil. The significance of our research is that it proves that the increasing use of KSB for restoring soil is a good way to reduce the use of chemical fertilizers, which could further provide a relatively stable environment for plant growth

Soil test · Clay minerals and soil interactions · Soil and Unsaturated Flow · Soil Carbon and Nitrogen Dynamics

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    Open Access•D Jini, V S Ganga et al.•Environment Development and…•2023

Unique citing works1
Citations per year0,33
Citation span2023 - 2023 (1)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 1

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