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Review
. 2016 Nov:252:335-346.
doi: 10.1016/j.plantsci.2016.08.012. Epub 2016 Aug 22.

Seed maturation: Simplification of control networks in plants

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Free article
Review

Seed maturation: Simplification of control networks in plants

Martine Devic et al. Plant Sci. 2016 Nov.
Free article

Abstract

Networks controlling developmental or metabolic processes in plants are often complex as a consequence of the duplication and specialisation of the regulatory genes as well as the numerous levels of transcriptional and post-transcriptional controls added during evolution. Networks serve to accommodate multicellular complexity and increase robustness to environmental changes. Mathematical simplification by regrouping genes or pathways in a limited number of hubs has facilitated the construction of models for complex traits. In a complementary approach, a biological simplification can be achieved by using genetic modification to understand the core and singular ancestral function of the network, which is likely to be more prevalent within the plant kingdom rather than specific to a species. With this viewpoint, we review examples of simplification successfully undertaken in yeast and other organisms. A strategy of progressive complementation of single, double and triple mutants of seed maturation confirmed the fundamental role of the AFL sub-family of B3 transcription factors as master regulators of seed maturation, illustrating that biological simplification of complex networks could be more widely applied in plants. Defining minimal control networks will facilitate evolutionary comparisons of regulatory processes and the identification of an essential gene set for synthetic biology.

Keywords: AFL multigene family; Minimal control network; Redundancy; Seed maturation; Simplification.

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