ReviewMicrobiological reviews1992
Establishment and expression of cellular polarity in fucoid zygotes.
Review in Microbiological reviews, 1992. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 24 papers.
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Who cites it
24 citing papers in PubMed, 124 citations in OpenAlex.
- Blue-light-regulated transcription factor, Aureochrome, in photosynthetic stramenopiles.Journal of plant research · 2016Review
- Ultrastructural and structural characterization of zygotes and embryos during development in Sargassum cymosum (Phaeophyceae, Fucales).Protoplasma · 2015Article
- Rac1 signaling in the establishment of the fucoid algal body plan.Frontiers in plant science · 2014Article
- ETOILE regulates developmental patterning in the filamentous brown alga Ectocarpus siliculosus.The Plant cell · 2011Article
- Review
- Auxin metabolism and function in the multicellular brown alga Ectocarpus siliculosus.Plant physiology · 2010Article
- Symmetry breaking in plants: molecular mechanisms regulating asymmetric cell divisions in Arabidopsis.Cold Spring Harbor perspectives in biology · 2009Review
- Photosynthesis-dependent Ca2+ influx and functional diversity between phospholipases in the formation of cell polarity in migrating cells of red algae.Plant signaling & behavior · 2009Article
- Ca2+ influx and phosphoinositide signalling are essential for the establishment and maintenance of cell polarity in monospores from the red alga Porphyra yezoensis.Journal of experimental botany · 2009Article
- Cytoskeleton and morphogenesis in brown algae.Annals of botany · 2006Review
- Polarization of the endomembrane system is an early event in fucoid zygote development.BMC plant biology · 2006Article
- Blue- and green-light signals for gamete release in the brown alga, Silvetia compressa.Oecologia · 2004Article
- Assembly of the photosynthetic apparatus in embryos from Fucus serratus L.Photosynthesis research · 2003Article
- Inorganic cation transport and energy transduction in Enterococcus hirae and other streptococci.Microbiology and molecular biology reviews : MMBR · 1998Review
- Ca2+ and Calmodulin Dynamics during Photopolarization in Fucus serratus Zygotes.Plant physiology · 1997Article
- Suspensor-derived polyembryony caused by altered expression of valyl-tRNA synthetase in the twn2 mutant of Arabidopsis.Proceedings of the National Academy of Sciences of the United States of America · 1997Article
- Induction of Polarity in Fucoid Zygotes.The Plant cell · 1997Article
- Spatial Organization of Calcium Signaling Involved in Cell Volume Control in the Fucus Rhizoid.The Plant cell · 1996Article
- The rhd6 Mutation of Arabidopsis thaliana Alters Root-Hair Initiation through an Auxin- and Ethylene-Associated Process.Plant physiology · 1994Article
- Photopolarization of the Fucus sp. Zygote by Blue Light Involves a Plasma Membrane Redox Chain.Plant physiology · 1994Article
Corrections and comments
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Authors and funding
1 author at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Zygotes of fucoid algae have long been studied as a paradigm for cell polarity. Polarity is established early in the first cell cycle and is then expressed as localized growth and invariant cell division. The fertilized egg is a spherical cell and, by all accounts, bears little or no asymmetry. Polarity is acquired epigenetically a few hours later in the form of a rhizoid/thallus axis. The initial stage of polarization is axis selection, during which zygotes monitor environment gradients to determine the appropriate direction for rhizoid formation. In their natural setting in the intertidal zone, sunlight is probably the most important polarizing vector; rhizoids form away from the light. The mechanism by which zygotes perceive environmental gradients and transduce that information into an intracellular signal is unknown but may involve a phosphatidylinositol cycle. Once positional information has been recorded, the cytoplasm and membrane are reorganized in accordance with the vectorial information. The earliest detectable asymmetries in the polarizing zygote are localized secretion and generation of a transcellular electric current. Vesicle secretion and the inward limb of the current are localized at the presumptive rhizoid. The transcellular current may establish a cytoplasmic Ca2+ gradient constituting a morphogenetic field, but this remains controversial. Localized secretion and establishment of transcellular current are sensitive to treatment with cytochalasins, indicating that cytoplasmic reorganization is dependent on the actin cytoskeleton. The nascent axis at first is labile and susceptible to reorientation by subsequent environmental vectors but soon becomes irreversibly fixed in its orientation. Locking the axis in place requires both cell wall and F-actin and is postulated to involve an indirect transmembrane bridge linking cortical actin to cell wall. This bridge anchors relevant structures at the presumptive rhizoid and thereby stabilizes the axis. Approximately halfway through the first cell cycle, the latent polarity is expressed morphologically in the form of rhizoid growth. Elongation is by tip growth and does not appear to be fundamentally different from tip growth in other organisms. The zygote always divides perpendicular to the growth axis, and this is controlled by the microtubule cytoskeleton. Two microtubule-organizing centers on the nuclear envelope rotate such that they align with the growth axis. They then serve as spindle poles during mitosis. Cytokinesis bisects the axial spindle, resulting in a transverse crosswall. Although the chronology of cellular events associated with polarity is by now rather detailed, causal mechanisms remain obscure.
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