4.7 Article

Screening, Identification and Growth-Promotion Products of Multifunctional Bacteria in a Chinese Fir Plantation

Journal

FORESTS
Volume 12, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/f12020120

Keywords

Chinese fir; soil; phosphorus-dissolving bacteria; nitrogenase activity; promoting characteristics

Categories

Funding

  1. State Key Research and Development Program of China [2016YFD0600300]
  2. Special Fund for Basic Scientific Research Business of Central Public Research Institutes [CAFYBB2018SY001]

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This study successfully screened and identified a multifunctional phosphorus-dissolving bacterium P5 in Chinese fir plantation, which showed excellent growth-promoting capabilities, with higher IAA production, ACC deaminase activity, and siderophore performance than other strains.
Purpose: This research was aimed to screen and identify multifunctional phosphorus-dissolving bacteria of a Chinese fir (Cunninghamia lanceolata) plantation and study its phosphorus-dissolving characteristics in order to provide strain resources and a theoretical basis for developing the appropriate bacterial fertilizer of a Chinese fir plantation. Methods: First, phosphorus-dissolving bacteria were isolated from the woodland soil of a Chinese fir plantation by Pikovskava inorganic phosphorus medium (PVK). Then, some growth-promoting indicators of primary screening strains were determined, including the capacity of phosphorus-solubilized, nitrogenase activity, 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase activity, production of indole-3-acetic acid (IAA), secretion of iron carrier and so on. Finally, the screening multifunctional phosphorus-dissolving bacteria were identified, which were combined with colony characteristics, physiological and biochemical tests and molecular biotechnology. Results: (1) Thirteen phosphorus-dissolving bacteria were isolated and screened in total, and P5 (195.61 mg center dot L-1) had the strongest capacity of phosphorus-solubilized. Five phosphorus-dissolving bacteria were provided with nitrogenase activity, and the highest activity of nitrogenase was P10 and P5 (71.90 C2H4 nmol center dot mL(-1)center dot h(-1) and 71.00 C2H4 nmol center dot mL(-1)center dot h(-1), respectively). Four strains were provided with ACC deaminase activity, and the highest activity of ACC deaminase was P5 and P9, (0.74 mu mol center dot mg(-1)center dot h(-1) and 0.54 mu mol center dot mg(-1)center dot h(-1), respectively). Most strains could secrete IAA, and three strains of bacteria had a strong secretory ability, which could secrete IAA with a concentration greater than 15 mg center dot mL(-1), and P5 was 18.00, P2 was 17.30, P6 was 15.59 (mg center dot mL(-1)). P5 produced carriers of iron better than others, and the ratio of the diameter of the iron production carrier ring to the diameter of the colony was 1.80, respectively, which was significantly higher than other strains. Combining all kinds of factors, P5 multifunctional phosphorus-dissolving bacteria were screened for eventual further study. (2) Strain P5 was identified as Burkholderia ubonensis, based on the colony characteristics, physiological and biochemical tests, 16SrDNA sequence analysis and phylogenetic tree construction. Conclusion: P5 has a variety of high-efficiency growth-promoting capabilities, and the ability to produce IAA, ACC deaminase activity and siderophore performance are significantly higher than other strains, which had great potential in the development of microbial fertilizer.

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