Polarity in plant asymmetric cell division: Division orientation and cell fate differentiation
Asymmetric cell division (ACD) is universally required for the development of multicellular organisms. Unlike animal cells, plant cells have a rigid cellulosic extracellular matrix, the cell wall, which provides physical support and forms communication routes. This fundamental difference leads to so...
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Published in | Developmental biology Vol. 419; no. 1; pp. 121 - 131 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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United States
Elsevier Inc
01.11.2016
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Abstract | Asymmetric cell division (ACD) is universally required for the development of multicellular organisms. Unlike animal cells, plant cells have a rigid cellulosic extracellular matrix, the cell wall, which provides physical support and forms communication routes. This fundamental difference leads to some unique mechanisms in plants for generating asymmetries during cell division. However, plants also utilize intrinsically polarized proteins to regulate asymmetric signaling and cell division, a strategy similar to the differentiation mechanism found in animals. Current progress suggests that common regulatory modes, i.e. protein spontaneous clustering and cytoskeleton reorganization, underlie protein polarization in both animal and plant cells. Despite these commonalities, it is important to note that intrinsic mechanisms in plants are heavily influenced by extrinsic cues. To control physical asymmetry in cell division, although our understanding is fragmentary thus far, plants might have evolved novel polarization strategies to orientate cell division plane. Recent studies also suggest that the phytohormone auxin, one of the most pivotal small molecules in plant development, regulates ACD in plants.
•Intrinsic protein polarization mechanisms may commonly exist in both plant and animal cells.•Polarization of plant cells is subject to the regulation of extrinsic cues.•Asymmetric cell signaling and auxin function play roles in orientated cell division in plants.•Polarized proteins and auxin signaling help to differentiate daughter cell fate in plants. |
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AbstractList | Asymmetric cell division (ACD) is universally required for the development of multicellular organisms. Unlike animal cells, plant cells have a rigid cellulosic extracellular matrix, the cell wall, which provides physical support and forms communication routes. This fundamental difference leads to some unique mechanisms in plants for generating asymmetries during cell division. However, plants also utilize intrinsically polarized proteins to regulate asymmetric signaling and cell division, a strategy similar to the differentiation mechanism found in animals. Current progress suggests that common regulatory modes, i.e. protein spontaneous clustering and cytoskeleton reorganization, underlie protein polarization in both animal and plant cells. Despite these commonalities, it is important to note that intrinsic mechanisms in plants are heavily influenced by extrinsic cues. To control physical asymmetry in cell division, although our understanding is fragmentary thus far, plants might have evolved novel polarization strategies to orientate cell division plane. Recent studies also suggest that the phytohormone auxin, one of the most pivotal small molecules in plant development, regulates ACD in plants. Asymmetric cell division (ACD) is universally required for the development of multicellular organisms. Unlike animal cells, plant cells have a rigid cellulosic extracellular matrix, the cell wall, which provides physical support and forms communication routes. This fundamental difference leads to some unique mechanisms in plants for generating asymmetries during cell division. However, plants also utilize intrinsically polarized proteins to regulate asymmetric signaling and cell division, a strategy similar to the differentiation mechanism found in animals. Current progress suggests that common regulatory modes, i.e. protein spontaneous clustering and cytoskeleton reorganization, underlie protein polarization in both animal and plant cells. Despite these commonalities, it is important to note that intrinsic mechanisms in plants are heavily influenced by extrinsic cues. To control physical asymmetry in cell division, although our understanding is fragmentary thus far, plants might have evolved novel polarization strategies to orientate cell division plane. Recent studies also suggest that the phytohormone auxin, one of the most pivotal small molecules in plant development, regulates ACD in plants. •Intrinsic protein polarization mechanisms may commonly exist in both plant and animal cells.•Polarization of plant cells is subject to the regulation of extrinsic cues.•Asymmetric cell signaling and auxin function play roles in orientated cell division in plants.•Polarized proteins and auxin signaling help to differentiate daughter cell fate in plants. |
Author | Shao, Wanchen Dong, Juan |
AuthorAffiliation | a Department of Plant Biology and Pathology, Rutgers the State University of New Jersey, NJ 08901, USA b Waksman Institute of Microbiology, Rutgers the State University of New Jersey, NJ 08854, USA |
AuthorAffiliation_xml | – name: b Waksman Institute of Microbiology, Rutgers the State University of New Jersey, NJ 08854, USA – name: a Department of Plant Biology and Pathology, Rutgers the State University of New Jersey, NJ 08901, USA |
Author_xml | – sequence: 1 givenname: Wanchen surname: Shao fullname: Shao, Wanchen organization: Department of Plant Biology and Pathology, Rutgers the State University of New Jersey, NJ 08901, USA – sequence: 2 givenname: Juan surname: Dong fullname: Dong, Juan email: dong@waksman.rutgers.edu organization: Department of Plant Biology and Pathology, Rutgers the State University of New Jersey, NJ 08901, USA |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/27475487$$D View this record in MEDLINE/PubMed |
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Keywords | ACD Protein polarization Auxin signaling Cell division orientation MT SMC M Asymmetric cell division F-actin SLGC Differential cell identity Cell polarity Plant development GC PM |
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SubjectTerms | animals Asymmetric cell division Asymmetric Cell Division - physiology asymmetry Auxin signaling auxins cell division Cell division orientation Cell Lineage Cell Polarity cell walls cytoskeleton Cytoskeleton - ultrastructure Differential cell identity extracellular matrix Feedback, Physiological Indoleacetic Acids Models, Biological Multiprotein Complexes Plant Cells - physiology Plant Cells - ultrastructure Plant Development plant hormones Plant Proteins - physiology Protein polarization proteins Signal Transduction Yeasts - cytology |
Title | Polarity in plant asymmetric cell division: Division orientation and cell fate differentiation |
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