Péptidos Antifúngicos (página 2) Ir a página 1
267 | Yoonkyung Park, Dong Gun Lee, Seung-Hwan Jang, Eun-Rhan Woo, Hye Gwang Jeong, Cheol-Hee Choi and Kyung-Soo Hahm | 2003 | A Leu-Lys-rich antimicrobial peptide: activity and mechanism | Biochimica et Biophysica Acta: Proteins and Proteomics 1645:172-182 |
268 | Douglas C. Pecota, George Osapay, Michael E. Selsted and Thomas K. Wood | 2003 | Antimicrobial properties of the Escherichia coli R1 plasmid host killing peptide | Journal of Biotechnology, 100: 1-12 |
269 | Beth A. Lazazzera | 2001 | The intracellular function of extracellular signaling peptides | Peptides 22: 1519-1527 |
270 | James J. La Clair , Timothy L. Foley , Tracy R. Schegg , Conor M. Regan and Michael D. Burkart | 2004 | Manipulation of Carrier Proteins in Antibiotic Biosynthesis | Chemistry and Biology, 11: 195-201 |
271 | Maria Papagianni | 2003 | Ribosomally synthesized peptides with antimicrobial properties: biosynthesis, structure, function, and applications | Biotechnology Advances, 21: 465-499 |
272 | A. Ismet, S. Vikineswary, S. Paramaswari, W.H. Wong, A. Ward, T. Seki, H.P. Fiedler, M. Goodfellow | 2004 | Production and Chemical Characterization of Antifungal Metabolites From Micromonospora sp. M39 Isolated From Mangrove Rhizosphere Soil | World Journal of Microbiology and Biotechnology 20 (5), 523-528 |
273 | Anna Christina C. Nascimento, Lanuse C. Zanotta, Cynthia M. Kyaw, Elisabeth N. F. Schwartz, Carlos A. Schwartz, Antonio Sebben, Marcelo V. Sousa, Wagner Fontes, Mariana S. Castro | 2004 | Ocellatins: New Antimicrobial Peptides from the Skin Secretion of the South American Frog Leptodactylus ocellatus (Anura: Leptodactylidae) | The Protein Journal 23 (8), 501-508 |
274 | Tatiana V. Kulakovskaya, Alexander S. Shashkov, Ekaterina V. Kulakovskaya and Wladyslav I. Golubev | 2004 | Characterization of an antifungal glycolipid secreted by the yeast Sympodiomycopsis paphiopedili | FEMS Yeast Research 5 (3), 247-252 |
275 | Larsen, A.G. Knochel, S. | 1997 | Antimicrobial activity of food-related Penicillium sp. against pathogenic bacteria in laboratory media and a cheese model system | J. Applied Microbiol. 83: 11-119 |
276 |
V.M. Gomesa, A.O. Carvalhoa, M. Da Cunhab, M.N. Kellera, C. Bloch Jr.c,P. Deolindod, E.W. Alvesd, |
2005 | Purification and characterization of a novel peptide with antifungal activity from Bothrops jararaca venom | Toxicon In press |
277 |
E.A. du Toit, M. Rautenbach |
2000 | J.Microbiol.Methods.42:159-165 | |
278 | Katrin Ström, Johan Schnürer, Petter Melin | 2005 | Co-cultivation of antifungal Lactobacillus plantarum MiLAB 393 and Aspergillus nidulans, evaluation of effects on fungal growth and protein expression | FEMS Microbiology Letters 246, 119–124 |
279 | T.B. Ng | 2004 | Peptides and proteins from fungi | Peptides. 25, 1005-1073 |
280 | K.V.R. Reddy, R.D. Yedery and C. Aranha | 2004 | Antimicrobial peptides: premises and promises | Int.J. Antimicrob. Agents. 24, 536-547 |
281 | Johan Schnürer and Jesper Magnusson | 2005 | Antifungal lactic acid bacteria as biopreservatives | |
282 |
Kellie L. Tuck*, Peter J. Hayball |
2002 |
Major phenolic compounds in olive oil: metabolism and health effects |
Journal of Nutritional Biochemistry 13 (2002) 636–644 |
283 |
Nuria Caturla, Laura P´erez-Fons, Amparo Estepa, Vicente Micol |
2005 |
Chemistry and Physics of Lipids 137 (2005) 2–17 |
|
284 |
J.A. Del Rı´o a,*, A.G. Ba´ ideza, J.M. Botı´ ab, A. Ortun˜ oa |
2003 |
Enhancement of phenolic compounds in olive plants ( Olea europaea L.)and their influence on resistance against Phytophthora sp. |
Food Chemistry 83 (2003) 75–78 |
285 | Henrietta Szappanos, Gyula Péter Szigeti, Balázs Pál, Zoltán Rusznák, Géza Szűcs, Éva Rajnavölgyi, József Balla, György Balla, Emőke Nagy, Éva Leiter et al | 2006 | The antifungal protein AFP secreted by Aspergillus giganteus does not cause detrimental effects on certain mammalian cells | Peptides 27:1717-1725 |
286 | Gianluca Bleve, Francesco Grieco, Giuseppe Cozzi, Antonio Logrieco and Angelo Visconti | 2006 | Isolation of epiphytic yeasts with potential for biocontrol of Aspergillus carbonarius and A. niger on grape | International Journal of Food
Microbiology Volume 108, Issue 2 , 25 April 2006, Pages 204-209 |
287 | L.V. Kuzina, T.A. Miller, D.A. Cooksey | 2006 | In vitro activities of antibiotics and antimicrobial peptides against the plant pathogenic bacterium Xylella fastidiosa | Letters in Applied Microbiology; Volume 42, Issue 5, Page 514 |
288 | Hyun Jun Jung, Yoonkyung Park, Kyung-Soo Hahm and Dong Gun Lee | 2006 | Biological activity of Tat (47-58) peptide on human pathogenic fungi | Biochemical and Biophysical Research Communications, 345: 222-228 |
289 | Patricia Costa Mincoff, Diógenes AparÃcio Garcia Cortez, Tânia Ueda-Nakamura, Celso Vataru Nakamura and Benedito Prado Dias Filho | 2006 | Isolation and characterization of a 30 kD antifungal protein from seeds of Sorghum bicolor | Research in Microbiology, Volume 157, Issue 4, May 2006, Pages 326-332 |
290 | P.B. Pelegrinia, E.F. Noronhaa, M.A.R. Muniza, I.M. Vasconcelosb, M.D. Chianelloa, J.T.A. Oliveirab and O.L. Franco | 2006 | An antifungal peptide from passion fruit (Passiflora edulis) seeds with similarities to 2S-albumin proteins | Biochimica et Biophysica Acta (BBA) - Proteins & Proteomics, Volume 1764, Issue 6, June 2006, Pages 1141-1146 |
291 | Tibor Pála, Bency Abrahamb, Ágnes Sonnevenda, Pauline Jumaaa and J. Michael Conlon | 2006 | Brevinin-1BYa: a naturally occurring peptide from frog skin with broad-spectrum antibacterial and antifungal properties | International Journal
of Antimicrobial Agents Article in Press |
292 | Wan-Ying Yanga, Shuo-Yang Wenb, Ya-Dong Huangc, Ming-Qiang Yea, Xiao-Juan Denga, Dong Hana, Qin-You Xiad and Yang Cao | 2006 | Functional divergence of six isoforms of antifungal peptide Drosomycin in Drosophila melanogaster | Gene Article in Press |
293 | H.X. Wang and T.B. Ng | 2006 | An antifungal protein from the pea Pisum sativum var. arvense Poir | Peptides 27: 1732-1737 |
294 | Xingyong Yang, Jun Li, Xiaowen Wang, Weiguo Fang, Michael J. Bidochka, Rong She, Yuehua Xiao and Yan Pei | 2006 | Psc-AFP, an antifungal protein with trypsin inhibitor activity from Psoralea corylifolia seeds | Peptides 27: 1726-1731 |
295 | E.N. Quiroga1, D.A. Sampietro1,2, J.R. Soberón1,2, M.A. Sgariglia2 and M.A. Vattuone1 | 2006 | Propolis from the northwest of Argentina as a source of antifungal principles | Journal of Applied
Microbiology Volume 101 Page 103 |
296 | J.H. Kim1, B.C. Campbell1, N. Mahoney1, K.L. Chan1 and G.S. May2 | 2006 | Targeting antioxidative signal transduction and stress response system: control of pathogenic Aspergillus with phenolics that inhibit mitochondrial function | Journal of Applied Microbiology101 Page 181 |
297 | David Bergina, Lisa Murphyb, Joanne Keenanb, Martin Clynesb and Kevin Kavanagh | 2006 | Pre-exposure to yeast protects larvae of Galleria mellonella from a subsequent lethal infection by Candida albicans and is mediated by the increased expression of antimicrobial peptides | Microbes and Infection 8: 2105-2112 |
298 | Ana Paula Agizzioa, Maura Da Cunhab, André O. Carvalhoa, Marco Antônio Oliveirab, c, Suzanna F.F. Ribeiroa and Valdirene M. Gomes | 2006 | The antifungal properties of a 2S albumin-homologous protein from passion fruit seeds involve plasma membrane permeabilization and ultrastructural alterations in yeast cells | Plant Science 171: 515-522 |
299 | K.T. Chu and T.B. Ng | 2006 | Smilaxin, a novel protein with immunostimulatory, antiproliferative, and HIV-1-reverse transcriptase inhibitory activities from fresh Smilax glabra rhizomes | Biochemical and Biophysical Research Communications , 340:118-124 |
300 | A. K. M. Ekramoddoullah, J.-J. Liu, and A. Zamani. | 2006 | Cloning and Characterization of a Putative Antifungal Peptide Gene (Pm-AMP1) in Pinus monticola | Phytopathology 96 (2), pp. 164-170 |
301 | Hexiang Wanga and T.B. Ng | 2006 | Ganodermin, an antifungal protein from fruiting bodies of the medicinal mushroom Ganoderma lucidum | Peptides 27: 27-30 |
302 | Philippe Leonea, Laurence Menu-Bouaouicheb, Willy J. Peumansc, Françoise Payana, Annick Barreb, Alain Roussela, Els J.M. Van Dammec and Pierre Rougé | 2006 | Resolution of the structure of the allergenic and antifungal banana fruit thaumatin-like protein at 1.7-Å | Biochimie 88: 45-52 |
303 | Lixin Xiaa and T.B. Ng | 2005 | An antifungal protein from flageolet beans | Peptides 26: 2397-2403 |
304 | Freitas, D.A., Leclerc, S., Miyoshi, A., Oliveira, S.C., Sommer, P.S.M., Rodrigues, L., Correa Jr., A., Gautier, M., Langella, P., Azevedo, V.A., Le Loir, Y. | 2005 |
Secretion of Streptomyces tendae antifungal protein 1 by Lactococcus lactis |
Brazilian Journal of Medical and Biological Research, 38:1585-1592 |
305 | Christian Pillonel | 2005 | Evaluation of phenylaminopyrimidines as antifungal protein kinase inhibitors | Pest Management Science 61:1069 - 1076 |
306 | Hexiang Wanga and Tzi Bun Ng | 2005 | An antifungal protein from ginger rhizomes | Biochemical and Biophysical Research Communications, 336: 100-104 |
307 | V. Yadav1, J. Gupta1, R. Mandhan3, A.K. Chhillar1, R. Dabur2, D.D. Singh2 and G.L. Sharma2 | 2005 | Investigations on anti-Aspergillus properties of bacterial products | Letters in Applied Microbiology, 41 Page 309 |
308 | Vera Meyer, Anja Spielvogel1, Laura Funk1, Joan Tilburn2, Herbert N. Arst Jr.2 and Ulf Stahl | 2005 | Alkaline pH-induced up-regulation of the afp gene encoding the antifungal protein (AFP) of Aspergillus giganteus is not mediated by the transcription factor PacC: possible involvement of calcineurin | Molecular Genetics and Genomics, 274: 295 - 306 |
309 | Saravanakumar Kavithaa, Sivanesan Senthilkumarb, Samuel Gnanamanickama, Mohammed Inayathullahb and Rajadas Jayakumar | 2005 | Isolation and partial characterization of antifungal protein from Bacillus polymyxa strain VLB16 | Process Biochemistry 40: 3236-3243 |
310 | Ana Beatriz Moreno (1), Gisela Peñas (2), Mar Rufat (1), Juan Manuel Bravo (1), Montserrat Estopà (2), Joaquima Messeguer (2), and Blanca San Segundo | 2005 | Pathogen-induced production of the antifungal AFP protein from Aspergillus giganteus confers resistance to the blast fungus magnaporthe grisea in transgenic rice | Molecular Plant-Microbe Interactions 18 (9), pp. 960-972 |
311 | K. Yamunarani AFF601, R. Jaganathan AFF602, R. Bhaskaran AFF603, P. Govindaraju AFF604, R. Velazhahan | 2005 | In vitro Antifungal Activity of a 29-kDa Glycoprotein Purified from the Galls of Quercus infectoria | Acta Phytopathologica et Entomologica Hungarica 40: 43 - 54 |
312 |
Vera Meyer and Ulf Stahl |
2005 | ERRATUM: New insights in the regulation of the afp gene encoding the antifungal protein of Aspergillus giganteus | Current Genetics 48: 75 |
313 | Éva Leiter,1 Henrietta Szappanos,2 Christoph Oberparleiter,3 Lydia Kaiserer,3 László Csernoch,2 Tünde Pusztahelyi,1 Tamás Emri,1 István Pócsi,1 Willibald Salvenmoser,4 and Florentine Marx | 2005 | Antifungal Protein PAF Severely Affects the Integrity of the Plasma Membrane of Aspergillus nidulans and Induces an Apoptosis-Like Phenotype | Antimicrobial Agents and Chemotherapy,
49: 2445-2453 |
314 | László Galgóczy *, Tamás Papp 1, Éva Leiter 2, Florentine Marx 3, István Pócsi 2, Csaba Vágvölgyi | 2005 | Sensitivity of different Zygomycetes to the Penicillium chrysogenum antifungal protein (PAF) | Journal of Basic Microbiology 45, 136 - 141 |
315 | Xiuyun Ye and Tzi Bun Ng | 2005 | A chitinase with antifungal activity from the mung bean | Protein Expression and Purification 40:230-236 |
316 | Patrick H.K Ngai and T. B. Ng | 2005 | Phaseococcin, an antifungal protein with antiproliferative and anti-HIV-1 reverse transcriptase activities from small scarlet runner beans | Biochem. Cell Biol. 83(2): 212–220 |
317 | Yongxia Guo, Hexiang Wang and T.B. Ng | 2005 | Isolation of trichogin, an antifungal protein from fresh fruiting bodies of the edible mushroom Tricholoma giganteum | Peptides 26: 575-580 |
318 | Shaoyun Wang, Tzi Bun Ng, Tianbao Chen, Dongyun Lin, Jinhong Wu, Pingfan Rao and Xiuyun Ye | 2005 | First report of a novel plant lysozyme with both antifungal and antibacterial activities | Biochemical and Biophysical Research Communications 327: 820-827 |
319 | Lixin Xia and T.B. Ng | 2005 | Isolation of alliumin, a novel protein with antimicrobial and antiproliferative activities from multiple-cloved garlic bulbs | Peptides 26: 177-183 |
320 | Torsten Theis, Florentine Marx, Willibald Salvenmoser, Ulf Stahl and Vera Meyer | 2005 | New insights into the target site and mode of action of the antifungal protein of Aspergillus giganteus | Research in Microbiology 156: 47-56 |
321 | Xiaomin Song1, 2, Jing Wang2, Fang Wu2, Xu Li2, Maikun Teng2 and Weimin Gong | 2005 | Plant Molecular Biology57: 13 - 20 | |
322 | Florentine Marx, Willibald Salvenmoser, Lydia Kaiserer, Stefan Graessle, Renate Weiler-Görz, Ivo Zadra and Christoph Oberparleiter | 2005 | Proper folding of the antifungal protein PAF is required for optimal activity | Research in Microbiology 156: 35-46 |
323 | and | 2005 | Purification and characterization of a chitinase-like antifungal protein from black turtle bean with stimulatory effect on nitric oxide production by macrophages | Biological Chemistry 386: 18-24 |
324 | Lydia Kaiserer · Christoph Oberparleiter · Renate Weiler-Görz · Wolfgang Burgstaller · Eva Leiter · Florentine Marx | 2003 | Characterization of the Penicillium chrysogenum antifungal protein PAF | Arch Microbiol 180 : 204–210 |
325 | Christoph Oberparleiter, Lydia Kaiserer, Hubertus Haas, Peter Ladurner, Manfred Andratsch, and Florentine Marx | 2003 | Active Internalization of the Penicillium chrysogenum Antifungal Protein PAF in Sensitive Aspergilli | Antimicrobial Agents and Chemotherapy 47 (11) 3598–3601 |
326 | T. Theis, M. Wedde, V. Meyer, and U. Stahl | 2003 | The Antifungal Protein from Aspergillus giganteus Causes Membrane Permeabilization | Antimicrobial Agents and Chemotherapy 47 (2) 588–593 |
327 | Vera Meyer, Ulf Stahl | 2003 | The influence of co-cultivation on expression of the antifungal protein in Aspergillus giganteus (parte II, parte III) | Journal of Basic Microbiology 43: 68 - 74 |
328 | Adham M. Abdou, S. Higashiguchi, A.M. Aboueleinin, M. Kim and Hisham R. Ibrahim | 2006 | Antimicrobial peptides derived from hen egg lysozyme with inhibitory effect against Bacillus species | Food Control, 18: 173-178 |
329 | E.J. Helmerhorst, A.S. Alagl1, a, W.L. Siqueiraa and F.G. Oppenheim | 2006 | Oral fluid proteolytic effects on histatin 5 structure and function | Archives of Oral Biology 51: 1061-1070 |
330 | Chun Kim and Stefan H.E. Kaufmann | 2006 | Defensin: a multifunctional molecule lives up to its versatile name | Trends in Microbiology 14: 428-431 |
331 | Laurent Peyrin-Biroulet1, Cécile Vignal1, Rodrigue Dessein2, Michel Simonet2, Pierre Desreumaux1 and Mathias Chamaillard | 2006 | NODs in defence: from vulnerable antimicrobial peptides to chronic inflammation | Trends in Microbiology 14: 432-438 |
332 | Shaoyun Wanga, Juan Lina, Mingyu Yea, Tzi Bun Ngb, Pingfan Raoa and Xiuyun Ye | 2006 | Isolation and characterization of a novel mung bean protease inhibitor with antipathogenic and anti-proliferative activities |
Peptides 27:
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333 | Carol A Kauffman | 2006 | Clinical efficacy of new antifungal agents | Current Opinion in Microbiology 9:483–488 |
334 | R. Musetti, R. Polizzottoa, A. Vecchioneb, S. Borsellia, L. Zulinib, M. D’Ambrosioc, L. Sanità di Toppid and I. Pertot | 2006 | Antifungal activity of diketopiperazines extracted from Alternaria alternata against Plasmopara viticola: An ultrastructural study |
Micron Article in Press, Uncorrected Proof |
335 | Yuzhe Yuana, Bin Gaoa and Shunyi Zhu | 200 | Functional expression of a Drosophila antifungal peptide in Escherichia coli |
Protein Expression and Purification Article in Press |
336 | Maria Valeria D'Auriaa, Valentina Sepea, Rosa D'Orsia, Filomena Bellottaa, Cécile Debitusb and Angela Zampella | 200 | Isolation and structural elucidation of callipeltins J–M: antifungal peptides from the marine sponge Latrunculia sp. |
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337 | A. Chandrashekar and K.V. Satyanarayana | 2006 | Disease and pest resistance in grains of sorghum and millets | Journal of Cereal Science 44: 287-304 |
338 | A. Muñoz and J.F. Marcos | 2006 | Activity and mode of action against fungal phytopathogens of bovine lactoferricin-derived peptides | Journal of Applied
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339 | Margit A. Apponyi, Tara L. Pukala, Craig S. Brinkworth, Vita M. Maselli, John H. Bowie, Michael J. Tyler, Grant W. Booker, John C. Wallace, John A. Carver, Frances Separovic, Jason Doyle and Lyndon E. Llewelly | 2004 | Host-defence peptides of Australian anurans: structure, mechanism of action and evolutionary significance | Peptides 25: 1035-1054 |
340 | Yongfeng Liu, Zhiyi Chen, T.B. Ng, Jie Zhang, Mingguo Zhou, Fuping Song, Fan Lu and Youzhou Liu | 2007 | Bacisubin, an antifungal protein with ribonuclease and hemagglutinating activities from Bacillus subtilis strain B-916 |
Peptides Article in Press |
341 | H.X. Wang and T.B. Ng | 200 | An antifungal peptide from red lentil seeds |
Peptides Article in Press |
342 | Alberto Muñoz, Belén López-García, Enrique Pérez-Payá and Jose F. Marcos | 2007 | Antimicrobial properties of derivatives of the cationic tryptophan-rich hexapeptide PAF26 |
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345 | Zunying Liu, Mingyong Zeng, Shiyuan Dong, Jie Xu, Hongxia Song and Yuanhui Zhao | 2007 | Effect of an antifungal peptide from oyster enzymatic hydrolysates for control of gray mold (Botrytis cinerea) on harvested strawberries |
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346 | Christiane Bormann, Daniel Baier, Ingmar Hörr, Claudia Raps, Jürgen Berger, Günther Jung, and Heinz Schwarz | 1999 | Characterization of a Novel, Antifungal, Chitin-Binding Protein from Streptomyces tendae Tü901 That Interferes with Growth Polarity | J. Bacteriol. 1999 181: 7421-7429 |
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348 | T. Theis and U. Stahl | 2004 |
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349 | Marx, F. | 2004 | Small, basic antifungal proteins secreted from filamentous ascomycetes: A comparative study regarding, expression, structure, function and potential application | Applied Microbiology and Biotechnology, 65: 133-142 |
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352 | Lacadena, J., Álvarez-García, E., Carreras-Sangrà, N., Herrero-Galán, E., Alegre-Cebollada, J., García-Ortega, L., Oñaderra, M., Gavilanes, J.G., Martínez Del Pozo, Á. | 2007 | Fungal ribotoxins: molecular dissection of a family of natural killers (Resumen en htm) | FEMS Microbiology Reviews 31: 212-237 |
353 | Jean-Luc Dimarcq, Philippe Bulet, Charles Hetru, Jules Hoffmann | 1998 | Cysteine-rich antimicrobial peptides in invertebrates | (Byopolimers) Peptide Science 47: 465-477 |
354 | Francisco García-Olmedo, Antonio Molina, Josefa M. Alamillo, Pablo Rodríguez-Palenzuéla | 1998 | Plant defense peptides | (Byopolimers) Peptide Science 47: 479-491 |
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356 | S. Johann, C. Soldi, J.P. Lyon, M.G. Pizzolatti, M.A. Resende | 2007 | Antifungal activity of the amyrin derivatives and in vitro inhibition of Candida albicans adhesion to human epithelial cells (Resumen en htm) | Letters in Applied Microbiology 45 (2), 148–153. |
357 | W.J. Janisiewicz, I. Bastos Pereira, M.S. Almeida, D.P. Roberts, M. Wisniewski and E. Kurtenbach | 2007 | Improved biocontrol of fruit decay fungi with Pichia pastoris recombinant strains expressing Psd1 antifungal peptide |
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358 | Rolf Geisen | 2000 | P. nalgiovense carries a gene which is homologous to the paf gene of P. chrysogenum which codes for an antifungal peptide | International Journal of Food Microbiology 62, 95–101 |
359 | Zunying Liu, Shiyuan Donga, Jie Xua, Mingyong Zenga, Hongxia Songa and Yuanhui Zhao | 2008 | Production of cysteine-rich antimicrobial peptide by digestion of oyster (Crassostrea gigas) with alcalase and bromelin | Food Control 19: 231-235 |
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371 | Vera Meyer and Ulf Stahl | 2002 | Curr Genet 42: 36–42 | |
372 | Therese Faye, Dag Anders Brede, Thor Langsrud, Ingolf F. Nes, and Helge Holo | 2002 |
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379 | M. VIUDA-MARTOS, Y. RUIZ-NAVAJAS, J. FERNÁNDEZ-LÓPEZ and J.A. PÉREZ-ÁLVAREZ | 2007 | ANTIFUNGAL ACTIVITIES OF THYME, CLOVE AND OREGANO ESSENTIAL OILS | J. Food Safety 27: 91-101 |
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384 | Kazuhiko Hashimoto, Yoshiaki Yamano, Isao Morishima | 2008 | Samia cynthia ricini | Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. Article in Press, Corrected Proof |
385 | Ting Zhang Æ Zhi-Qi Shi Æ Liang-Bin Hu Æ Luo-Gen Cheng Æ Fei Wang | 2008 | Antifungal compounds from Bacillus subtilis B-FS06 inhibiting the growth of Aspergillus flavus | World J Microbiol Biotechnol 24:783–788 |
386 | Andreas Vilcinskas and Peter Götz | 2008 |
Parasitic Fungi and their Interactions with the Insect Immune System |
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387 | Liping Yang, Jiatao Xie, Daohong Jiang, Yanping Fu, Guoqing Li, Fangcan Lin | 2008 | Antifungal substances produced by Penicillium oxalicum strain PY-1—potential antibiotics against plant pathogenic fungi | World J Microbiol Biotechnol () 24:909–915 |
388 | P. Lin, T.B. Ng | 2008 |
A novel and exploitable antifungal peptide from kale ( Brassica alboglabra) seeds |
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