Literature DB >> 29394314

Regulatory networks controlling the development of the root system and the formation of lateral roots: a comparative analysis of the roles of pericycle and vascular cambium.

Donato Chiatante1, Thomas Rost2, John Bryant3, Gabriella Stefania Scippa4.   

Abstract

Background: The production of a new lateral root from parental root primary tissues has been investigated extensively, and the most important regulatory mechanisms are now well known. A first regulatory mechanism is based on the synthesis of small peptides which interact ectopically with membrane receptors to elicit a modulation of transcription factor target genes. A second mechanism involves a complex cross-talk between plant hormones. It is known that lateral roots are formed even in parental root portions characterized by the presence of secondary tissues, but there is not yet agreement about the putative tissue source providing the cells competent to become founder cells of a new root primordium. Scope: We suggest models of possible regulatory mechanisms for inducing specific root vascular cambium (VC) stem cells to abandon their activity in the production of xylem and phloem elements and to start instead the construction of a new lateral root primordium. Considering the ontogenic nature of the VC, the models which we suggest are the result of a comparative review of mechanisms known to control the activity of stem cells in the root apical meristem, procambium and VC. Stem cells in the root meristems can inherit various competences to play different roles, and their fate could be decided in response to cross-talk between endogenous and exogenous signals. Conclusions: We have found a high degree of relatedness among the regulatory mechanisms controlling the various root meristems. This fact suggests that competence to form new lateral roots can be inherited by some stem cells of the VC lineage. This kind of competence could be represented by a sensitivity of specific stem cells to factors such as those presented in our models.

Mesh:

Year:  2018        PMID: 29394314      PMCID: PMC6215048          DOI: 10.1093/aob/mcy003

Source DB:  PubMed          Journal:  Ann Bot        ISSN: 0305-7364            Impact factor:   4.357


  142 in total

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7.  Organizer-Derived WOX5 Signal Maintains Root Columella Stem Cells through Chromatin-Mediated Repression of CDF4 Expression.

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Review 8.  Branching out in roots: uncovering form, function, and regulation.

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10.  The GLV6/RGF8/CLEL2 peptide regulates early pericycle divisions during lateral root initiation.

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  6 in total

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2.  Root Biomass Distribution of Populus sibirica and Ulmus pumila Afforestation Stands Is Affected by Watering Regimes and Fertilization in the Mongolian Semi-arid Steppe.

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Review 3.  Auxin Controlled by Ethylene Steers Root Development.

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5.  Meristematic Connectome: A Cellular Coordinator of Plant Responses to Environmental Signals?

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6.  WOX genes expression during the formation of new lateral roots from secondary structures in Populus nigra (L.) taproot.

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  6 in total

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