| Literature DB >> 21187926 |
Jun-ya Shoji1, Takashi Kikuma, Manabu Arioka, Katsuhiko Kitamoto.
Abstract
Filamentous fungi consist of continuum of multinucleate cells called hyphae, and proliferate by means of hyphal tip growth. Accordingly, research interest has been focusing on hyphal tip cells, but little is known about basal cells in colony interior that do not directly contribute to proliferation. Here, we show that autophagy mediates degradation of basal cell components in the filamentous fungus Aspergillus oryzae. In basal cells, enhanced green fluorescent protein (EGFP)-labeled peroxisomes, mitochondria, and even nuclei were taken up into vacuoles in an autophagy-dependent manner. During this process, crescents of autophagosome precursors matured into ring-like autophagosomes to encircle apparently whole nuclei. The ring-like autophagosomes then disappeared, followed by dispersal of the nuclear material throughout the vacuoles, suggesting the autophagy-mediated degradation of whole nuclei. We also demonstrated that colony growth in a nutrient-depleted medium was significantly inhibited in the absence of functional autophagy. This is a first report describing autophagy-mediated degradation of whole nuclei, as well as suggesting a novel strategy of filamentous fungi to degrade components of existing hyphae for use as nutrients to support mycelial growth in order to counteract starvation.Entities:
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Year: 2010 PMID: 21187926 PMCID: PMC3004950 DOI: 10.1371/journal.pone.0015650
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Autophagy-dependent uptake of EGFP labeling peroxisomes, mitochondria, and nuclei in basal cells of A. oryzae.
Subcellular distribution of EGFP labeling peroxisomes (Ai, iv, vii, Bi, iv), mitochondria (Aii, v, viii, Bii, v), and nuclei (Aiii, vi, ix, Biii, vi) in either wild-type (A) or an Aoatg8-deleted background (B). Cultures were incubated at 30°C for either 24 hrs (Ai–vi, Bi–iii) or 48 hrs (Avii–ix, Biv–vi). Bars represent 5 µm.
Figure 2Macroautophagy-mediated uptake of nuclei by vacuoles.
A series of superimposed images of EGFP-AoAtg8 and H2B-mDsRed is shown. (A) A crescent of an autophagosomal precursor (green, arrow) matured into a ring-like autophagosome to encircle an apparently intact nucleus (red). Arrowheads point to vacuoles. (B) A ring-like autophagosome (green, arrow) surrounding an apparently intact nucleus (red) disappeared (7 min), followed by dispersal of H2B-fused mDsRed throughout a vacuole. Arrowheads point to vacuoles. Bars represent 5 µm.
Figure 3Autophagy supporting the mycelial growth.
Wild-type and ΔAoatg8 strains were inoculated and grown on either the CD medium with 0.15% methionine (nutrient-supplied) or its 104 times dilution (nutrient-depleted) for seven days. The colony diameters of each strain at the seventh day are shown. Relative diameters of each strain to the nutrient-supplied medium are shown as percentages. Error bars represent S. D. n = 3.