<p>Aniline blue (AB) is a toxic dye with a wide range of applications. Although bacteria can degrade AB, their biodiversity remains limited. In this study, strain MD-1<sup>&#xa0;T</sup>, capable of degrading AB, was screened from corn field soil obtained in Tongliao city in Inner Mongolia Autonomous Region, China. Strain MD-1<sup>&#xa0;T</sup> degraded 81.7% of AB (100&#xa0;mg·L<sup>−1</sup>) within 72&#xa0;h. Cells were aerobic, short rod, non-spore-forming and non-motile. The strain grew optimally at 30&#xa0;°C, 1% (w/v) NaCl and pH 7.0. Phylogenetic trees of 16S rRNA gene sequences indicated that strain MD-1<sup>&#xa0;T</sup> was classified in the genus <i>Chryseobacterium</i>, and shared 95.9%-96.8% similarities with type strains of the genus <i>Chryseobacterium</i>. The digital DNA-DNA hybridization (dDDH) and average nucleotide identity (ANI) values between strain MD-1<sup>&#xa0;T</sup> and the related <i>Chryseobacterium</i> type strains were in the range of 20.9–41.2% and 76.9–90.3%, respectively. The fatty acid profile was mainly composed of C<sub>15:0</sub> iso, summed feature 9 (C<sub>17:1</sub> iso <i>ω</i>9c and/or C<sub>16:0</sub> 10-methyl), C<sub>17:0</sub> iso 3OH and summed feature 3 (C<sub>16:1</sub> <i>ω</i>7c and/or C<sub>16:1</sub> <i>ω</i>6c), the major polar lipids were phosphatidylethanolamine (PE), three unidentified aminolipids (AL1-3), an unidentified aminophospholipid (APL) and seven unidentified lipids (L1-7). The only isoprenoid quinone was MK-6. The size of the genome of strain MD-1<sup>&#xa0;T</sup> was 4.5&#xa0;Mb with a G + C content of 36.5&#xa0;mol%. Based on the low 16S rRNA gene sequence similarities, low dDDH and ANI values and differential phenotypic characteristics, we hypothesized that strain MD-1<sup>&#xa0;T</sup> represents a novel species in the genus <i>Chryseobacterium</i>, for which the name <i>Chryseobacterium tongliaoense</i> sp. nov is proposed. The type strain is MD-1<sup>&#xa0;T</sup> (= MCCC 1K09437<sup>T</sup> = KCTC 102309<sup>&#xa0;T</sup>). This study provided new microbial resource potential for remediation of AB pollution sustainably and efficiently.</p>

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Chryseobacterium tongliaoense sp. nov., an aniline blue-degrading strain isolated from agricultural soil

  • Ying Zhou,
  • Lu Xu,
  • Jiale Ma,
  • Yu Lv,
  • Qi Zhang,
  • Jiandong Jiang,
  • Jiguo Qiu,
  • Zongzhuan Shen,
  • Qirong Shen

摘要

Aniline blue (AB) is a toxic dye with a wide range of applications. Although bacteria can degrade AB, their biodiversity remains limited. In this study, strain MD-1 T, capable of degrading AB, was screened from corn field soil obtained in Tongliao city in Inner Mongolia Autonomous Region, China. Strain MD-1 T degraded 81.7% of AB (100 mg·L−1) within 72 h. Cells were aerobic, short rod, non-spore-forming and non-motile. The strain grew optimally at 30 °C, 1% (w/v) NaCl and pH 7.0. Phylogenetic trees of 16S rRNA gene sequences indicated that strain MD-1 T was classified in the genus Chryseobacterium, and shared 95.9%-96.8% similarities with type strains of the genus Chryseobacterium. The digital DNA-DNA hybridization (dDDH) and average nucleotide identity (ANI) values between strain MD-1 T and the related Chryseobacterium type strains were in the range of 20.9–41.2% and 76.9–90.3%, respectively. The fatty acid profile was mainly composed of C15:0 iso, summed feature 9 (C17:1 iso ω9c and/or C16:0 10-methyl), C17:0 iso 3OH and summed feature 3 (C16:1 ω7c and/or C16:1 ω6c), the major polar lipids were phosphatidylethanolamine (PE), three unidentified aminolipids (AL1-3), an unidentified aminophospholipid (APL) and seven unidentified lipids (L1-7). The only isoprenoid quinone was MK-6. The size of the genome of strain MD-1 T was 4.5 Mb with a G + C content of 36.5 mol%. Based on the low 16S rRNA gene sequence similarities, low dDDH and ANI values and differential phenotypic characteristics, we hypothesized that strain MD-1 T represents a novel species in the genus Chryseobacterium, for which the name Chryseobacterium tongliaoense sp. nov is proposed. The type strain is MD-1 T (= MCCC 1K09437T = KCTC 102309 T). This study provided new microbial resource potential for remediation of AB pollution sustainably and efficiently.