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Citation(s) in
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For:
Nickerson KW
, Leastman E.
Cerulenin inhibition of spore germination in Rhizopus stolonifer.
ACTA ACUST UNITED AC
1978. [DOI:
10.1016/s0147-5975(78)80038-3
]
[
Citation(s) in
RCA
: 3
]
[
Impact Index Per Article: 0.1
]
[
Reference Citation Analysis
]
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[Indexed: 10/25/2022]
Number
Cited by Other Article(s)
1
Breeuwer P
, De Reu JC, Drocourt J, Rombouts FM, Abee T. Nonanoic Acid, a Fungal Self-Inhibitor, Prevents Germination of Rhizopus oligosporus Sporangiospores by Dissipation of the pH Gradient.
Appl Environ Microbiol
1997;
63
:178-85. [PMID:
16535482
PMCID:
PMC1389097
DOI:
10.1128/aem.63.1.178-185.1997
]
[
Citation(s) in
RCA
: 35
]
[
Impact Index Per Article: 1.3
]
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[Indexed: 11/20/2022]
Open
Abstract
Germination of Rhizopus oligosporus sporangiospores is characterized by swelling of the spores and subsequent emergence of germ tubes. Changes in spore morphology and alterations in intracellular pH (pH(infin)) of the sporangiospores were assessed during the germination process by flow cytometry. Sporangiospores were stained with carboxyfluorescein by incubation with carboxyfluorescein diacetate. The nonfluorescent carboxyfluorescein diacetate is passively transported into intact cells and subsequently cleaved by esterases, which results in intracellular accumulation of the fluorescent carboxyfluorescein. Given that the fluorescence of carboxyfluorescein is pH dependent, the pH(infin) of the individual spores could be assessed simultaneously with spore size. For R. oligosporus, swelling of the sporangiospores was accompanied by an increase of pH(infin). In the presence of nonanoic acid, a self-inhibitor produced by various fungi, increase of the pH(infin) was prevented and swelling was inhibited at concentrations of less than 1 mM. Octanoic acid and decanoic acid were equally effective. Acetic acid also inhibited germination but at much higher concentrations (>8 mM). The mechanism of action of these fatty acids is most likely dissipation of the pH gradient. A model is proposed in which the pH(infin) plays a crucial role in the germination of R. oligosporus sporangiospores.
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2
Betina V
. Antifungal agents as tools in experimental mycology.
Folia Microbiol (Praha)
1985;
30
:80-9. [PMID:
3884472
DOI:
10.1007/bf02922502
]
[
Citation(s) in
RCA
: 3
]
[
Impact Index Per Article: 0.1
]
[
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]
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[Indexed: 01/07/2023]
Abstract
Both natural and synthetic substances are conveniently used for studying metabolism, genetic aspects, morphogenesis of cell structures, life cycle and differentiation of fungi.
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MESH Headings
Antifungal Agents/pharmacology
Cell Differentiation
Fungi/drug effects
Fungi/genetics
Fungi/metabolism
Morphogenesis
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3
Nickerson KW
, McNeel DJ, Kulkarni RK. Fungal dimorphism in
Ceratocystis ulmi
: Cerulenin sensitivity and fatty acid synthesis.
FEMS Microbiol Lett
1982. [DOI:
10.1111/j.1574-6968.1982.tb08219.x
]
[
Citation(s) in
RCA
: 2
]
[
Impact Index Per Article: 0.0
]
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[Indexed: 11/27/2022]
Open
Abstract
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4
Nickerson KW
, Freer SN, Van Etten JL. Rhizopus stolonifer sporangiospores: A wet-harvested spore is not a native spore.
ACTA ACUST UNITED AC
1981. [DOI:
10.1016/0147-5975(81)90022-0
]
[
Citation(s) in
RCA
: 14
]
[
Impact Index Per Article: 0.3
]
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[Indexed: 11/24/2022]
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