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Transition of somatic plant cells to an embryogenic state

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TLDR
This review summarizes relevant experimental observations that can contribute to the description and definition of a transitional state of somatic cells induced to form totipotent, embryogenic cells.
Abstract
Under appropriate in vivo or in vitro conditions, certain somatic plant cells have the capability to initiate embryogenic development (somatic embryogenesis). Somatic embryogenesis provides an unique experimental model to understand the molecular and cellular bases of developmental plasticity in plants. In the last few years, the application of modern experimental techniques, as well as the characterization of Arabidopsis embryogenesis mutants, have resulted in the accumulation of novel data about the acquisition of embryogenic capabilities by somatic plant cells. In this review, we summarize relevant experimental observations that can contribute to the description and definition of a transitional state of somatic cells induced to form totipotent, embryogenic cells. During this somatic-to-embryogenic transition, cells have to dedifferentiate, activate their cell division cycle and reorganize their physiology, metabolism and gene expression patterns. The roles of stress, endogenous growth regulators and chromatin remodelling in the coordinated reorganization of the cellular state are especially emphasized.

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Involvement of plant hormones and plant growth regulators on in vitro somatic embryogenesis

TL;DR: Recent progress achieved on understanding the interaction between exogenously added plant growth regulators over the concentration of endogenous hormones, together with the involvement of sensitivity of the tissues to particular hormone groups, might help clarifying the occurrence of divergent patterns in somatic embryogenesis, and in tissue culture in general.
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Somatic embryogenesis - Stress-induced remodeling of plant cell fate.

TL;DR: The present knowledge on chromatin-based mechanisms potentially involved in the somatic-to-embryogenic developmental transition is summarized, emphasizing the potential role of the chromatin to integrate stress, hormonal, and developmental pathways leading to the activation of the embryogenic program.
Journal ArticleDOI

Factors influencing somatic embryogenesis induction and plant regeneration with particular reference to Arabidopsis thaliana (L.) Heynh

TL;DR: A review of the conditions influencing the induction of embryogenic potential in in vitro cultured plant cells and the problem of the genetic characteristics of regenerants, in terms of their chimerism and somaclonal variation, is discussed in some detail.
Journal ArticleDOI

LECs go crazy in embryo development

TL;DR: It is proposed that specific target genes activated by the LEC TFs underlie, in part, their roles in the maturation phase and SE, and that the effect of L EC TFs on the balance of abscisic acid to gibberellic acid might link their role in totipotency and thematuration phase.
Journal ArticleDOI

Regulation of Somatic Embryogenesis in Higher Plants

TL;DR: This review provides a systematic and comprehensive analysis of current advances in the development of somatic embryogenesis, as well as the cellular and molecular mechanism of somatics embryogenesis in higher plants.
References
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Journal ArticleDOI

Intracellular pH is increased after transformation of Chinese hamster embryo fibroblasts.

TL;DR: Data show a critical role for pHi in the regulation of DNA synthesis in Chinese hamster embryo fibroblasts and demonstrate that aberrations in pHi can contribute to the acquisition of altered growth properties.
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Extracellular matrix surface network of embryogenic units of friable maize callus contains arabinogalactan-proteins recognized by monoclonal antibody JIM4

TL;DR: It is proposed that some specific AGPs of the ECMSN might be relevant for cell-cell adhesion and recognition of embryogenic cells during early embryogenic stages, and that the JIM4 antibody can serve as an early marker of embryogenesis competence in maize callus culture.
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Stage-specific responses of embryogenic carrot cell suspension cultures to arabinogalactan protein-binding β-glucosyl Yariv reagent

TL;DR: Developmental stage appears to determine how cultures and embryos respond to βGlcY, root growth being promoted in the early stages, and overall growth reduced in the late stages.
Journal ArticleDOI

The retinoblastoma pathway in plant cell cycle and development.

TL;DR: The essential role that the retinoblastoma pathway plays in controlling cell cycle progression and, presumably, some developmental events is revealed and the identification of the downstream targets and upstream modulators of CDKs is identified.
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Endogenous Growth Regulators in Leaves and Tissue Cultures of Pennisetum purpureum Schum.

TL;DR: Endogenous levels of major plant growth regulators were measured in leaves and tissue cultures of Napiergrass either by high-performance liquid chromatography or radioimmunoassay to determine the morphogenic competence of leaf explants.
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