パエニバシラス属とは? わかりやすく解説

Weblio 辞書 > 辞書・百科事典 > 百科事典 > パエニバシラス属の意味・解説 

パエニバシラス属

出典: フリー百科事典『ウィキペディア(Wikipedia)』 (2021/02/01 02:49 UTC 版)

パエニバシラス属Paenibacillus属)は、通性嫌気性芽胞産生性のグラム陽性真正細菌の属である。元々現在のバシラス属も含んでいたが、1993年に種の再分類が行われ、バシラス属と分離された[8]。多様な環境(土壌、水圏、根圏、植物内部、飼料、昆虫の幼虫、臨床現場での検体など)から検出されている[9][10][11][12]。名前の由来は、ラテン語のpaene である。これは「大体すべて」を意味し、paenibacilliは「大体すべての桿菌」を意味する。


  1. ^ Gao, Miao; Yang, Hui; Zhao, Ji; Liu, Jun; Sun, Yan-hua; Wang, Yu-jiong; Sun, Jian-guang (2013). Paenibacillus brassicae sp. nov., isolated from cabbage rhizosphere in Beijing, China”. Antonie van Leeuwenhoek 103 (3): 647-653. doi:10.1007/s10482-012-9849-1. PMID 23180372. https://www.ncbi.nlm.nih.gov/pubmed/23180372. 
  2. ^ Puri, Akshit; Padda, Kiran Preet; Chanway, Chris P (October 2015). “Can a diazotrophic endophyte originally isolated from lodgepole pine colonize an agricultural crop (corn) and promote its growth?”. Soil Biology and Biochemistry 89: 210-216. doi:10.1016/j.soilbio.2015.07.012. http://www.sciencedirect.com/science/article/pii/S0038071715002540. 
  3. ^ Puri, Akshit; Padda, Kiran Preet; Chanway, Chris P (January 2016). “Evidence of nitrogen fixation and growth promotion in canola (Brassica napus L.) by an endophytic diazotroph Paenibacillus polymyxa P2b-2R”. Biology and Fertility of Soils 52 (1): 119-125. doi:10.1007/s00374-015-1051-y. https://link.springer.com/article/10.1007/s00374-015-1051-y. 
  4. ^ Puri, Akshit; Padda, Kiran Preet; Chanway, Chris P (June 2016). “Seedling growth promotion and nitrogen fixation by a bacterial endophyte Paenibacillus polymyxa P2b-2R and its GFP derivative in corn in a long-term trial”. Symbiosis 69 (2): 123-129. doi:10.1007/s13199-016-0385-z. https://link.springer.com/article/10.1007%2Fs13199-016-0385-z. 
  5. ^ Padda, Kiran Preet; Puri, Akshit; Chanway, Chris P (April 2016). “Effect of GFP tagging of Paenibacillus polymyxa P2b-2R on its ability to promote growth of canola and tomato seedlings”. Biology and Fertility of Soils 52 (3): 377-387. doi:10.1007/s00374-015-1083-3. https://link.springer.com/article/10.1007/s00374-015-1083-3. 
  6. ^ Padda, Kiran Preet; Puri, Akshit; Chanway, Chris P (7 July 2016). “Plant growth promotion and nitrogen fixation in canola by an endophytic strain of Paenibacillus polymyxa and its GFP-tagged derivative in a long-term study”. Botany 94 (12). doi:10.1139/cjb-2016-0075. 
  7. ^ Yang, Henry; Puri, Akshit; Padda, Kiran Preet; Chanway, Chris P (June 2016). “Effects of Paenibacillus polymyxa inoculation and different soil nitrogen treatments on lodgepole pine seedling growth”. Canadian Journal of Forest Research 46 (6): 816-821. doi:10.1139/cjfr-2015-0456. 
  8. ^ Ash C, Priest FG, Collins MD (1993-1994). “Molecular identification of rRNA group 3 bacilli (Ash, Farrow, Wallbanks and Collins) using a PCR probe test. Proposal for the creation of a new genus Paenibacillus”. Antonie Van Leeuwenhoek 64 (3-4): 253-60. PMID 8085788. https://www.ncbi.nlm.nih.gov/pubmed/8085788. 
  9. ^ Lal S, Tabacchioni S (2009). “Ecology and biotechnological potential of Paenibacillus polymyxa: a minireview”. Indian Journal of Microbiology 49 (1): 2-10. doi:10.1007/s12088-009-0008-y. PMC: 3450047. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3450047/. 
  10. ^ McSpadden Gardener BB (2004). “Ecology of Bacillus and Paenibacillus spp. in Agricultural Systems”. Phytopathology 94 (11): 1252-1258. doi:10.1094/PHYTO.2004.94.11.1252. PMID 18944463. https://www.ncbi.nlm.nih.gov/pubmed/18944463. 
  11. ^ Montes MJ, Mercade E, Bozal N, Guinea J (2004). Paenibacillus antarcticus sp. nov., a novel psychrotolerant organism from the Antarctic environment”. International journal of systematic and evolutionary microbiology 54 (5): 1521-1526. doi:10.1099/ijs.0.63078-0. PMID 15388704. https://www.ncbi.nlm.nih.gov/pubmed/15388704. 
  12. ^ Ouyang J, Pei Z, Lutwick L, Dalal S, Yang L, Cassai N, Sandhu K, Hanna B, Wieczorek RL, Bluth M, Pincus MR (2008). “Case report: Paenibacillus thiaminolyticus: a new cause of human infection, inducing bacteremia in a patient on hemodialysis”. Annals of Clinical & Laboratory Science 38 (4): 393-400. PMC: 2955490. PMID 18988935. https://www.ncbi.nlm.nih.gov/pubmed/18988935. 
  13. ^ E. Genersch (january 2010). “American Foulbrood in honeybees and its causative agent, Paenibacillus larvae. Journal of Invertebrate Pathology 103: 10-19. doi:10.1016/j.jip.2009.06.015. http://www.sciencedirect.com/science/article/pii/S0022201109001864. 
  14. ^ F. H. Grau and P. W. Wilson (1962). “Physiology of nitrogen fixation by Bacillus polymyxa. J. Bacteriol. 83 (3): 490-496. http://jb.asm.org/content/83/3/490. 
  15. ^ Virginia Chow, Guang Nong and James F. Preston (2012 Mar 19). “Complete genome sequence of Paenibacillus sp. strain JDR-2”. Stand Genomic Sci. 6 (1): 1-10. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368403/. 
  16. ^ a b c d Ben-Jacob E, Cohen I (1997). “Cooperative formation of bacterial patterns”. In J. A. Shapiro & M. Dworkin. Bacteria as Multicellular Organisms. pp. 394-416 
  17. ^ a b c Ben-Jacob E, Cohen I, Gutnick DL (1998). “Cooperative organization of bacterial colonies: from genotype to morphotype”. Annual Reviews in Microbiology 52 (1): 779-806. doi:10.1146/annurev.micro.52.1.779. http://www.annualreviews.org/doi/abs/10.1146/annurev.micro.52.1.779. 
  18. ^ Ben-Jacob E, Schochet O, Tenenbaum A, Cohen I, Czirok A, Vicsek T (1994). “Generic modelling of cooperative growth patterns in bacterial colonies”. Nature 368 (6466): 46-49. doi:10.1038/368046a0. http://www.nature.com/nature/journal/v368/n6466/abs/368046a0.html?foxtrotcallback=true. 
  19. ^ Ben-Jacob E, Shmueli H, Shochet O, Tenenbaum A (1992). “Adaptive self-organization during growth of bacterial colonies”. Physica A: Statistical Mechanics and its Applications 187 (3-4): 378-424. doi:10.1016/0378-4371(92)90002-8. http://www.sciencedirect.com/science/article/pii/0378437192900028. 
  20. ^ Ben-Jacob E, Shochet O, Tenenbaum A, Avidan O. P. E. Cladis & P. Palffy-Muhoray. ed. Spatio-temporal patterns in nonequilibrium complex systems 
  21. ^ a b c Ben-Jacob E (2003). “Bacterial self-organization: co-enhancement of complexification and adaptability in a dynamic environment”. Philosophical Transactions of the Royal Society of London A: Mathematical, Physical and Engineering Sciences 361 (1807): 1283-1312. doi:10.1098/rsta.2003.1199. http://rsta.royalsocietypublishing.org/content/361/1807/1283.short. 
  22. ^ a b Ben-Jacob E, Cohen I, Golding I, Gutnick DL, Tcherpakov M, Helbing D, Ron IG (2000). “Bacterial cooperative organization under antibiotic stress”. Physica A: Statistical Mechanics and its Applications 282 (1): 247-282. doi:10.1016/S0378-4371(00)00093-5. http://www.sciencedirect.com/science/article/pii/S0378437100000935. 
  23. ^ a b c Eshel Ben-Jacob, Inon Cohen & Herbert Levine (2000). “Cooperative self-organization of microorganisms”. Advances in Physics 49 (4): 395-554. doi:10.1080/000187300405228. http://www.tandfonline.com/doi/abs/10.1080/000187300405228. 
  24. ^ a b c Ben-Jacob E, Levine H (2006). “Self-engineering capabilities of bacteria”. Journal of The Royal Society Interface 3 (6): 197-214. doi:10.1098/rsif.2005.0089. http://rsif.royalsocietypublishing.org/content/3/6/197.short. 
  25. ^ Colin J Ingham and Eshel Ben Jacob (2008). “Swarming and complex pattern formation in Paenibacillus vortex studied by imaging and tracking cells”. BMC microbiology 8 (1): 36. doi:10.1186/1471-2180-8-36. https://bmcmicrobiol.biomedcentral.com/articles/10.1186/1471-2180-8-36. 
  26. ^ Kwang Keun Choi, Chul Hwan Park, Sang Yong Kim, Won Seok Lyoo, Sang Hun Lee, Jin Won Lee (2004). “Polyvinyl alcohol degradation by Microbacterium barkeri KCCM 10507 and Paeniblacillus amylolyticus KCCM 10508 in dyeing wastewater”. Journal of Microbiology and Biotechnology 14 (5): 1009-1013. http://www.jmb.or.kr/journal/download.php?Filedir=../submission/Journal/014/&num=1467. 
  27. ^ Konishi J, Maruhashi K (2003). “2-(2'-Hydroxyphenyl)benzene sulfinate desulfinase from the thermophilic desulfurizing bacterium Paenibacillus sp. strain A11-2: purification and characterization”. Applied microbiology and biotechnology 62 (4): 356-361. doi:10.1007/s00253-003-1331-6. https://link.springer.com/article/10.1007/s00253-003-1331-6. 
  28. ^ Nielsen P, Sorensen J (1997). “Multi-target and medium-independent fungal antagonism by hydrolytic enzymes in Paenibacillus polymyxa and Bacillus pumilus strains from barley rhizosphere”. FEMS Microbiology Ecology 22 (3): 183-192. doi:10.1111/j.1574-6941.1997.tb00370.x. http://onlinelibrary.wiley.com/doi/10.1111/j.1574-6941.1997.tb00370.x/full. 
  29. ^ Shashi Kiran & Arvind Gulati (2017). “Paenibacillus ihbetae sp. nov., a cold-adapted antimicrobial producing bacterium isolated from high altitude Suraj Tal Lake in the Indian Trans-Himalayas”. Systematic and Applied Microbiology 16. doi:10.1016/j.syapm.2017.07.005. http://www.sciencedirect.com/science/article/pii/S0723202017300930. 
  30. ^ 細田晃文, 境雅夫, 金澤晋二郎「6-25 植物根圏から分離したアガラーゼ活性をもつPaenibacillus属の多様性(6.土壌生物)」『日本土壌肥料学会講演要旨集』第48巻、日本土壌肥料学会、2002年、 33頁、 doi:10.20710/dohikouen.48.0_33_1
  31. ^ Girardin H, Albagnac C, Dargaignaratz C, Nguyen-The C, Carlin F (2002 May). “Antimicrobial activity of foodborne Paenibacillus and Bacillus spp. against Clostridium botulinum. Journal of food protection 65 (5): 806-813. PMID 12030292. https://www.ncbi.nlm.nih.gov/pubmed/12030292. 
  32. ^ Piuri M, Sanchez-Rivas C, Ruzal SM (1998 Jul). “A novel antimicrobial activity of a Paenibacillus polymyxa strain isolated from regional fermented sausages”. Letters in applied microbiology 27 (1): 9-13. PMID 9722991. https://www.ncbi.nlm.nih.gov/pubmed/9722991. 
  33. ^ 那須 美行, 野坂 嘉友, 大塚 喜人, 敦賀 俊彦, 中島 道子, 渡辺 泰宏, 神 雅彦 (2003). “脳梗塞症治療中に発症したP. polymyxa菌血症の1例”. 感染学症雑誌 77 (10): 844-848. doi:10.11150/kansenshogakuzasshi1970.77.844. https://doi.org/10.11150/kansenshogakuzasshi1970.77.844. 
  34. ^ David Duval , Richard Galinier, Gabriel Mouahid, Eve Toulza, Jean Francois Allienne, Julien Portela, Christophe Calvayrac, Anne Rognon, Nathalie Arancibia, Guillaume Mitta, Andre Theron, Benjamin Gourbal (2015). “A Novel Bacterial Pathogen of Biomphalaria glabrata: A Potential Weapon for Schistosomiasis Control?”. PLoS neglected tropical diseases 9 (2): e0003489. doi:10.1371/journal.pntd.0003489. http://journals.plos.org/plosntds/article?id=10.1371/journal.pntd.0003489. 
  35. ^ Bloemberg GV, Lugtenberg BJ (2001). “Molecular basis of plant growth promotion and biocontrol by rhizobacteria”. Current opinion in plant biology 4 (4): 343-350. doi:10.1016/S1369-5266(00)00183-7. http://www.sciencedirect.com/science/article/pii/S1369526600001837. 
  36. ^ 佐藤育男・吉田重信・岩本 豊・相野公孝・百町満朗・清水将文・對馬誠也 (2013). “Paenibacillus属細菌のトマト根腐萎凋病に対するほ場における防除効果”. 日植病報 78 (249). doi:10.4165/kapps.55.67. https://doi.org/10.4165/kapps.55.67. 
  37. ^ Kloepper JW, Leong J, Teintze M, Schroth MN (28 Aug 1980). “Enhanced plant growth by siderophores produced by plant growth-promoting rhizobacteria”. Nature 286: 885-886. doi:10.1038/286885a0. https://www.nature.com/nature/journal/v286/n5776/abs/286885a0.html. 
  38. ^ Ryu CM, Farag MA, Hu CH, Reddy MS, Wei HX, Pare PW, Kloepper JW (2003). “Bacterial volatiles promote growth in Arabidopsis”. Proceedings of the National Academy of Sciences 100 (8): 4927-4932. doi:10.1073/pnas.0730845100. http://www.pnas.org/content/100/8/4927.short. 
  39. ^ von der Weid I, Alviano DS, Santos AL, Soares RM, Alviano CS, Seldin L (2003). “Antimicrobial activity of Paenibacillus peoriae strain NRRL BD-62 against a broad spectrum of phytopathogenic bacteria and fungi”. Journal of applied microbiology. 95 (5): 1143-51. PMID 14633044. https://www.ncbi.nlm.nih.gov/pubmed/14633044. 
  40. ^ a b Alexandra Sirota-Madi, Tsviya Olender, Yael Helman, Colin Ingham, Ina Brainis, Dalit Roth, Efrat Hagi, Leonid Brodsky, Dena Leshkowitz, Vladimir Galatenko, Vladimir Nikolaev, Raja C Mugasimangalam, Sharron Bransburg-Zabary, David L Gutnick, Doron Lancet and Eshel Ben-Jacob (2010). “Genome sequence of the pattern forming Paenibacillus vortex bacterium reveals potential for thriving in complex environments”. BMC genomics 11 (1): 710. doi:10.1186/1471-2164-11-710. https://bmcgenomics.biomedcentral.com/articles/10.1186/1471-2164-11-710. 
  41. ^ Bassler BL, Losick R (2006). “Bacterially speaking”. Cell 125 (2): 237-246. doi:10.1016/j.cell.2006.04.001. http://www.sciencedirect.com/science/article/pii/S0092867406004338. 
  42. ^ a b c Ben-Jacob E, Becker I, Shapira Y, Levine H (2004). “Bacterial linguistic communication and social intelligence”. TRENDS in Microbiology 12 (8): 366-372. doi:10.1016/j.tim.2004.06.006. http://www.sciencedirect.com/science/article/pii/S0966842X04001386. 
  43. ^ Dunny GM, Brickman TJ, Dworkin M (2008). “Multicellular behavior in bacteria: communication, cooperation, competition and cheating”. Bioessays 30 (4): 296-298. doi:10.1002/bies.20740. http://onlinelibrary.wiley.com/doi/10.1002/bies.20740/full. 
  44. ^ Michael Y. Galperin and Mark Gomelsky (2005). “Bacterial Signal Transduction Modules: from Genomics to Biology”. ASM News 71 (7): 326-333. https://www.asm.org/ccLibraryFiles/FILENAME/000000001606/znw00705000326.pdf. 
  45. ^ Aguilar C, Vlamakis H, Losick R, Kolter R (2007). “Thinking about Bacillus subtilis as a multicellular organism”. Current opinion in microbiology 10 (6): 638-643. doi:10.1016/j.mib.2007.09.006. http://www.sciencedirect.com/science/article/pii/S1369527407001312. 
  46. ^ Daniel J. Dwyer, Michael A. Kohanski, James J. Collins (2008). “Networking opportunities for bacteria”. Cell 135 (7): 1153-1156. doi:10.1016/j.cell.2008.12.016. http://www.sciencedirect.com/science/article/pii/S0092867408015778. 
  47. ^ Kolter R, Greenberg EP (2006). “Microbial sciences: the superficial life of microbes”. Nature 441 (7091): 300-302. doi:10.1038/441300a. https://www.nature.com/nature/journal/v441/n7091/full/441300a.html. 
  48. ^ Shapiro JA (Oct 1998). “Thinking about bacterial populations as multicellular organisms”. Annual Reviews in Microbiology 52 (1): 81-104. doi:10.1146/annurev.micro.52.1.81. http://www.annualreviews.org/doi/abs/10.1146/annurev.micro.52.1.81. 
  49. ^ Shapiro JA, Dworkin M (1997). Bacteria as multicellular organisms 1st. USA: Oxford University Press. ISBN 0195091590 


「パエニバシラス属」の続きの解説一覧


このページでは「ウィキペディア」からパエニバシラス属を検索した結果を表示しています。
Weblioに収録されているすべての辞書からパエニバシラス属を検索する場合は、下記のリンクをクリックしてください。
 全ての辞書からパエニバシラス属を検索

英和和英テキスト翻訳>> Weblio翻訳
英語⇒日本語日本語⇒英語
  

辞書ショートカット

すべての辞書の索引

「パエニバシラス属」の関連用語

パエニバシラス属のお隣キーワード
検索ランキング

   

英語⇒日本語
日本語⇒英語
   



パエニバシラス属のページの著作権
Weblio 辞書 情報提供元は 参加元一覧 にて確認できます。

   
ウィキペディアウィキペディア
All text is available under the terms of the GNU Free Documentation License.
この記事は、ウィキペディアのパエニバシラス属 (改訂履歴)の記事を複製、再配布したものにあたり、GNU Free Documentation Licenseというライセンスの下で提供されています。 Weblio辞書に掲載されているウィキペディアの記事も、全てGNU Free Documentation Licenseの元に提供されております。

©2024 GRAS Group, Inc.RSS