Gotowa bibliografia na temat „Conidiation”

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Artykuły w czasopismach na temat "Conidiation"

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Berlin, V., and C. Yanofsky. "Protein changes during the asexual cycle of Neurospora crassa." Molecular and Cellular Biology 5, no. 4 (April 1985): 839–48. http://dx.doi.org/10.1128/mcb.5.4.839.

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A method for synchronizing conidiation and isolating large numbers of cells at discrete stages of conidia development is described. Using two-dimensional gel electrophoresis, we analyzed the protein profiles of mycelia, aerial hyphae, and conidia and observed that the concentration of 14 polypeptides increase and 38 decrease during the asexual cycle. Twelve polypeptides were present in extracts of aerial hyphae or conidia, but not mycelia, suggesting that they may be conidiation specific. The protein profiles of mutants defective in conidiation were also analyzed. Differences were detected in
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Berlin, V., and C. Yanofsky. "Protein changes during the asexual cycle of Neurospora crassa." Molecular and Cellular Biology 5, no. 4 (April 1985): 839–48. http://dx.doi.org/10.1128/mcb.5.4.839-848.1985.

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A method for synchronizing conidiation and isolating large numbers of cells at discrete stages of conidia development is described. Using two-dimensional gel electrophoresis, we analyzed the protein profiles of mycelia, aerial hyphae, and conidia and observed that the concentration of 14 polypeptides increase and 38 decrease during the asexual cycle. Twelve polypeptides were present in extracts of aerial hyphae or conidia, but not mycelia, suggesting that they may be conidiation specific. The protein profiles of mutants defective in conidiation were also analyzed. Differences were detected in
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Hao, R., and J. C. Schmit. "Cloning of the gene for glutamate decarboxylase and its expression during conidiation in Neurospora crassa." Biochemical Journal 293, no. 3 (August 1, 1993): 735–38. http://dx.doi.org/10.1042/bj2930735.

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Neurospora crassa glutamate decarboxylase (GAD) is produced during conidiation and stored in dormant conidia. Polyclonal antibody was generated to GAD that had been purified to homogeneity. The anti-GAD antibody was specific for N. crassa GAD and inhibited GAD activity. The level of GAD protein decreased during conidial germination, indicating that GAD was degraded during this phase of development. The anti-GAD antibody was used to isolate a cDNA clone of GAD from a lambda ZAP cDNA expression library. Escherichia coli containing a plasmid with the cDNA insert produced GAD activity. The cDNA cl
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Mah, Jae-Hyung, and Jae-Hyuk Yu. "Upstream and Downstream Regulation of Asexual Development in Aspergillus fumigatus." Eukaryotic Cell 5, no. 10 (October 2006): 1585–95. http://dx.doi.org/10.1128/ec.00192-06.

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ABSTRACT The opportunistic human pathogen Aspergillus fumigatus produces a large quantity of asexual spores (conidia), which are the primary agent causing invasive aspergillosis in immunocompromised patients. We investigated the mechanisms controlling asexual sporulation (conidiation) in A. fumigatus via examining functions of four key regulators, GpaA (Gα), AfFlbA (RGS), AfFluG, and AfBrlA, previously studied in Aspergillus nidulans. Expression analyses of gpaA, AfflbA, AffluG, AfbrlA, and AfwetA throughout the life cycle of A. fumigatus revealed that, while transcripts of AfflbA and AffluG a
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Correa, Alejandro, and Deborah Bell-Pedersen. "Distinct Signaling Pathways from the Circadian Clock Participate in Regulation of Rhythmic Conidiospore Development in Neurospora crassa." Eukaryotic Cell 1, no. 2 (April 2002): 273–80. http://dx.doi.org/10.1128/ec.1.2.273-280.2002.

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ABSTRACT Several different environmental signals can induce asexual spore development (conidiation) and expression of developmentally regulated genes in Neurospora crassa. However, under constant conditions, where no environmental cues for conidiation are present, the endogenous circadian clock in N. crassa promotes daily rhythms in expression of known developmental genes and of conidiation. We anticipated that the same pathway of gene regulation would be followed during clock-controlled conidiation and environmental induction of conidiation and that the circadian clock would need only to cont
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Roncal, Tomás, Shandra Cordobés, Olov Sterner, and Unai Ugalde. "Conidiation in Penicillium cyclopium Is Induced by Conidiogenone, an Endogenous Diterpene." Eukaryotic Cell 1, no. 5 (October 2002): 823–29. http://dx.doi.org/10.1128/ec.1.5.823-829.2002.

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ABSTRACT The filamentous fungus Penicillium cyclopium conidiates in the presence of calcium ions in submerged culture without nutrient limitation according to a precisely timed program. Conidiation could be prematurely induced in a nutritionally sufficient medium which had previously supported growth, suggesting that a metabolite which influenced the process was produced. A diterpenoid with conidiation-inducing activity, conidiogenone, was purified from the culture medium, along with conidiogenol, a putative derivative with delayed activity. Contrary to previous thought, the presence of calciu
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Roncal, Tomás, and Unai Ugalde. "Conidiation induction in Penicillium." Research in Microbiology 154, no. 8 (October 2003): 539–46. http://dx.doi.org/10.1016/s0923-2508(03)00168-2.

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Pažoutová, Sylvie, Miroslav Kolařík, and Renata Kolínská. "Pleomorphic conidiation in Claviceps." Mycological Research 108, no. 2 (February 2004): 126–35. http://dx.doi.org/10.1017/s0953756203009067.

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Betina, V. "Photoinduced conidiation inTrichoderma viride." Folia Microbiologica 40, no. 3 (May 1995): 219–24. http://dx.doi.org/10.1007/bf02814196.

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Hanlin, Richard T. "Microcycle conidiation–A review." Mycoscience 35, no. 1 (April 1994): 113–23. http://dx.doi.org/10.1007/bf02268539.

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Rozprawy doktorskie na temat "Conidiation"

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Xie, Xin. "Sugar sensing and regulation of conidiation in Neurospora crassa." Diss., Texas A&M University, 2003. http://hdl.handle.net/1969.1/1069.

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The orange bread mold Neurospora crassa is a useful model for the study of filamentous fungi. One of the asexual reproduction cycles in N. crassa, macroconidiation, can be induced by several environmental cues, including glucose starvation. The rco-3 gene is a regulator of sugar transport and macroconidiation in N. crassa and was proposed to encode a sugar sensor (Madi et al., 1997). To identify genes that are functionally related to RCO-3, three distinct suppressors of the sorbose resistance phenotype of rco-3 were isolated and characterized. The dgr-1 mutant phenotypically resembles rco-3 an
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Steyaert, Johanna M. "Studies on the regulation of conidiation in species of Trichoderma." Lincoln University, 2007. http://hdl.handle.net/10182/544.

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A characteristic feature of species of Trichoderma is the production of concentric rings of conidia in response to alternating light-dark conditions. In response to a single burst of light, a single ring of conidia forms at what was the colony perimeter. On the basis of these observations, competency to photoconidiate has been proposed to be due to the age and metabolic rate of the hyphal cell. In this study, conidiation was investigated in five biocontrol isolates (T. hamatum, T. atroviride, T. asperellum, T. virens and T. harzianum) using both a morphological and molecular approach. All five
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Rerngsamran, Panan. "Functional analysis of fluffy, a transcriptional regulator for conidial development in Neurospora crassa." Diss., Texas A&M University, 2005. http://hdl.handle.net/1969.1/2452.

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The fluffy gene of Neurospora crassa is required for asexual sporulation. It encodes an 88 kDa polypeptide containing a typical fungal Zn2Cys6 DNA binding motif. To identify the target genes on which FL may act, I sought to identify target sequences to which the FL protein binds. Several strategies were attempted to obtain purified FL protein. Purification was achieved by expressing the DNA binding domain of FL in Escherichia coli as a fusion with glutathione S-transferase followed by affinity purification using glutathione sepharose chromatography. DNA binding sites were selected by in vitro
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Boualem, Khadidja. "Influence de conditions environnementales sur la conidiation et les propriétés de surface de Penicillium camemberti." Dijon, 2008. http://www.theses.fr/2008DIJOS012.

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La conidiation est un mécanisme de reproduction asexuée universel qui permet aux champignons filamenteux de se reproduire et de se propager dans l’environnement sous forme de conidies. Ce mécanisme est très utilisé pour produire des conidies pour fabriquer des produits fermentés comme les fromages, pour les biotechnologies avec la production d’enzymes et de composés d’intérêt, et pour la lutte biologique. Les conidies sont produites le plus souvent en culture de surface en milieu solide car la conidiation en culture liquide mmergée des champignons filamenteux n’est pas possible ou pas maîtrisé
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Krasniewski, Isabelle. "De l'induction de la conidiation à la qualité des conidies de Penicillium camemberti en culture de surface : une étude pluridisciplinaire." Dijon, 2005. http://www.theses.fr/2005DIJOS057.

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La conidiation de Penicillium camemberti, un ferment d'affinage, a été étudiée en culture de surface, d'un point de vue physiologique et moléculaire. Le développement d'une technique d'inoculation par trempage de filtre a permis de travailler sur un matériel biologique homogène et de réaliser des transferts de mycélium d'un milieu à un autre. Dans ces conditions de culture, il a été démontré que le nitrate de potassium stimule la conidiation, alors que le sulfate d'ammonium l'inhibe. Le temps nécessaire à l'acquisition de la compétence a été évalué à 51 heures. Différents facteurs nutritionnel
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Kamran, Maryam. "Expression Profile of flbD During Morphogenesis in the Dimorphic Fungus Penicillium Marneffei." Youngstown State University / OhioLINK, 2011. http://rave.ohiolink.edu/etdc/view?acc_num=ysu1329770446.

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Yoshida, Hiroshi. "Fungal response to plant sugars: nutrition, metabolic state changes, and differentiation switching." Kyoto University, 2019. http://hdl.handle.net/2433/242714.

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Kyoto University (京都大学)<br>0048<br>新制・課程博士<br>博士(農学)<br>甲第21837号<br>農博第2350号<br>新制||農||1069(附属図書館)<br>学位論文||H31||N5209(農学部図書室)<br>京都大学大学院農学研究科地域環境科学専攻<br>(主査)教授 田中 千尋, 教授 本田 与一, 准教授 刑部 正博<br>学位規則第4条第1項該当
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Valentine, Matthew. "Molecular and computational analysis of temperature compensation of the Neurospora crassa circadian clock." Thesis, University of Manchester, 2016. https://www.research.manchester.ac.uk/portal/en/theses/molecular-and-computational-analysis-of-temperature-compensation-of-the-neurospora-crassa-circadian-clock(1a405fba-d17e-45bf-b166-3a4d92aaf982).html.

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Circadian clocks are internal timekeepers that allow organisms to anticipate and exploit predictable daily changes in their environment, aiding survival. Clock-driven rhythms, such as asexual spore development (conidiation) in Neurospora crassa, show temperature compensated periodicity that persists in constant conditions and can be reset by environmental time cues. This ability of circadian clocks to maintain a constant period and phase of behaviour over a range of temperatures is important, and whilst much of the machinery making up the circadian clock is known, the mechanism that underpins
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Chung, Da Woon. "Assessing conserved function of conidiation regulators in two distantly related ascomycetes, Aspergillus nidulans and Neurospora crassa." Thesis, 2011. http://hdl.handle.net/1969.1/ETD-TAMU-2011-05-9321.

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Conidiation is a common and critical asexual reproductive mode in fungi. The ascomycetes, the largest group in the kingdom Fungi undergo conidiation. The wide array of morphological difference in a conidiophore and conidial size, shape, and cellular organization demonstrates the importance of evolution in driving the morphological and functional diversity. An important unanswered question is how these conidiation processes evolve. We hypothesized that a conidiation regulatory pathway was present in the ancestral species, and became specialized in the extant species to lead to morphological and
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Hausner, Georg. "Some aspects of the physiology of Sclerotium hydrophilum Sacc. and the photoinduction of conidiation in an undescribed species of Pestalotia." 1987. http://hdl.handle.net/1993/9418.

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Książki na temat "Conidiation"

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Small, Cherrie-Lee. The analysis of gene transcripts associated with conidiation in the insect pathogenic fungus, Metarhizium anisopliae. St. Catharines, Ont: Brock University, Dept. of Biological Sciences, 2004.

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Części książek na temat "Conidiation"

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Ni, Min, Na Gao, Nak-Jung Kwon, Kwang-Soo Shin, and Jae-Hyuk Yu. "Regulation of Aspergillus Conidiation." In Cellular and Molecular Biology of Filamentous Fungi, 557–76. Washington, DC, USA: ASM Press, 2014. http://dx.doi.org/10.1128/9781555816636.ch35.

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Kramer, Cas. "Rhythmic Conidiation in Neurospora crassa." In Methods in Molecular Biology, 49–65. Totowa, NJ: Humana Press, 2007. http://dx.doi.org/10.1007/978-1-59745-257-1_3.

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Pitt, D., and A. Kaile. "Transduction of the Calcium Signal with Special Reference to Ca2+-Induced Conidiation in Penicillium notatum." In Biochemistry of Cell Walls and Membranes in Fungi, 283–98. Berlin, Heidelberg: Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-74215-6_18.

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Horiuchi, Hiroyuki, and Takuya Katayama. "Protein Kinase C of Filamentous Fungi and Its Roles in the Stresses Affecting Hyphal Morphogenesis and Conidiation." In Stress Biology of Yeasts and Fungi, 185–98. Tokyo: Springer Japan, 2015. http://dx.doi.org/10.1007/978-4-431-55248-2_12.

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Ninnemann, H., and S. Frosch. "Participation of Pterin-Molybdenum Cofactor in the Regulation of Nitrate Reductase Activity and Signal Transduction During Light-Stimulated Conidiation of Neurospora Crassa." In Inorganic Nitrogen in Plants and Microorganisms, 190–95. Berlin, Heidelberg: Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-75812-6_29.

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Adams, T. H., and J. K. Wieser. "Asexual sporulation: conidiation." In Molecular Fungal Biology, 185–208. Cambridge University Press, 1999. http://dx.doi.org/10.1017/cbo9781139163972.007.

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Fischer, Reinhard. "Conidiation in Aspergillus nidulans." In Molecular Biology of Fungal Development. CRC Press, 2002. http://dx.doi.org/10.1201/9780203910719.ch3.

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