Comparative Genomics Reveal the High Conservation and Scarce Distribution of Nitrogen Fixation nif Genes in the Plant-Associated Genus Herbaspirillum

被引:2
作者
Pedrolo, Ana Marina [1 ]
Matteoli, Filipe Pereira [2 ]
Fonseca Sousa Soares, Claudio Roberto [3 ]
Maisonnave Arisi, Ana Carolina [1 ]
机构
[1] Univ Fed Santa Catarina, Food Sci & Technol Dept, CAL CCA UFSC, Rod Admar Gonzaga 1346, BR-88034001 Florianopolis, SC, Brazil
[2] Univ Sao Paulo, Luiz de Queiroz Coll Agr, Soil Sci Dept, ESALQ USP, BR-13418900 Piracicaba, Brazil
[3] Univ Fed Santa Catarina, Microbiol Immunol & Parasitol Dept, MIP CCB UFSC, Av Prof Henrique da Silva Fontes, BR-88040900 Florianopolis, SC, Brazil
关键词
Phylogenomics; Plant microbiology; Nitrogenase; Diazotroph; NifHDKENB; MULTIPLE SEQUENCE ALIGNMENT; OIL-CONTAMINATED SOIL; DIAZOTROPHIC BACTERIA; AGRONOMIC EVALUATION; GROWTH PROMOTION; SP NOV; VARIETIES; RUBRISUBALBICANS; INOCULATION; HUTTIENSE;
D O I
10.1007/s00248-022-02084-8
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The genus Herbaspirillum gained the spotlight due to the several reports of diazotrophic strains and promising results in plant-growth field assays. However, as diversity exploration of Herbaspirillum species gained momentum, it became clearer that the plant beneficial lifestyle was not the only form of ecological interaction in this genus, due to reports of phytopathogenesis and nosocomial infections. Here we performed a deep search across all publicly available Herbaspirillum genomes. Using a robust core genome phylogeny, we have found that all described species are well delineated, being the only exception H. aquaticum and H. huttiense clade. We also uncovered that the nif genes are only highly prevalent in H. rubrisubalbicans; however, irrespective to the species, all nif genes share the same gene arrangement with high protein identity, and are present in only two main types, in inverted strands. By means of a NifHDKENB phylogenetic tree, we have further revealed that the Herbaspirillum nif sequences may have been acquired from the same last common ancestor belonging to the Nitrosomonadales order.
引用
收藏
页码:563 / 574
页数:12
相关论文
共 59 条
[21]   Introducing EzAAI: a pipeline for high throughput calculations of prokaryotic average amino acid identity [J].
Kim, Dongwook ;
Park, Sein ;
Chun, Jongsik .
JOURNAL OF MICROBIOLOGY, 2021, 59 (05) :476-480
[22]   Herbaspirillum frisingense sp nov., a new nitrogen-fixing bacterial species that occurs in C4-fibre plants [J].
Kirchhof, G ;
Eckert, B ;
Stoffels, M ;
Baldani, JI ;
Reis, VM ;
Hartmann, A .
INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, 2001, 51 :157-168
[23]   Phylogeny of Nitrogenase Structural and Assembly Components Reveals New Insights into the Origin and Distribution of Nitrogen Fixation across Bacteria and Archaea [J].
Koirala, Amrit ;
Brozel, Volker S. .
MICROORGANISMS, 2021, 9 (08)
[24]   Sulfurimicrobium lacusgen. nov., sp. nov., a sulfur oxidizer isolated from lake water, and review of the familySulfuricellaceaeto show that it is not a later synonym ofGallionellaceae [J].
Kojima, Hisaya ;
Kanda, Mamoru ;
Umezawa, Kazuhiro ;
Fukui, Manabu .
ARCHIVES OF MICROBIOLOGY, 2021, 203 (01) :317-323
[25]   Interactive Tree Of Life (iTOL) v4: recent updates and new developments [J].
Letunic, Ivica ;
Bork, Peer .
NUCLEIC ACIDS RESEARCH, 2019, 47 (W1) :W256-W259
[26]   RefSeq: expanding the Prokaryotic Genome Annotation Pipeline reach with protein family model curation [J].
Li, Wenjun ;
O'Neill, Kathleen R. ;
Haft, Daniel H. ;
DiCuccio, Michael ;
Chetvernin, Vyacheslav ;
Badretdin, Azat ;
Coulouris, George ;
Chitsaz, Farideh ;
Derbyshire, Myra K. ;
Durkin, A. Scott ;
Gonzales, Noreen R. ;
Gwadz, Marc ;
Lanczycki, Christopher J. ;
Song, James S. ;
Thanki, Narmada ;
Wang, Jiyao ;
Yamashita, Roxanne A. ;
Yang, Mingzhang ;
Zheng, Chanjuan ;
Marchler-Bauer, Aron ;
Thibaud-Nissen, Francoise .
NUCLEIC ACIDS RESEARCH, 2021, 49 (D1) :D1020-D1028
[27]   Description of Noviherbaspirillum malthae gen. nov., sp nov., isolated from an oil-contaminated soil, and proposal to reclassify Herbaspirillum soli, Herbaspirillum aurantiacum, Herbaspirillum canariense and Herbaspirillum psychrotolerans as Noviherbaspirillum soli comb. nov., Noviherbaspirillum aurantiacum comb. nov., Noviherbaspirillum canariense comb. nov and Noviherbaspirillum psychrotolerans comb. nov based on polyphasic analysis [J].
Lin, Shih-Yao ;
Hameed, Asif ;
Arun, A. B. ;
Liu, You-Cheng ;
Hsu, Yi-Han ;
Lai, Wei-An ;
Rekha, P. D. ;
Young, Chiu-Chung .
INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, 2013, 63 :4100-4107
[28]  
Liu C, 2019, ANN LAB MED, V39, P333, DOI [10.3343/alm.2019.39.3.340, 10.3343/alm.2019.39.3.333]
[29]   Improved establishment of Miscanthus x giganteus stem propagation by Herbaspirillum inoculation [J].
Liu, Yuan ;
Ludewig, Uwe .
INDUSTRIAL CROPS AND PRODUCTS, 2020, 150
[30]   Disentangling the impact of environmental and phylogenetic constraints on prokaryotic within-species diversity [J].
Maistrenko, Oleksandr M. ;
Mende, Daniel R. ;
Luetge, Mechthild ;
Hildebrand, Falk ;
Schmidt, Thomas S. B. ;
Li, Simone S. ;
Rodrigues, Joao F. Matias ;
von Mering, Christian ;
Coelho, Luis Pedro ;
Huerta-Cepas, Jaime ;
Sunagawa, Shinichi ;
Bork, Peer .
ISME JOURNAL, 2020, 14 (05) :1247-1259