Cell wall invertase as a regulator in determining sequential development of endosperm and embryo through glucose signaling early in seed development

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Abstract

Seed development depends on coordination among embryo, endosperm and seed coat. Endosperm undergoes nuclear division soon after fertilization, whereas embryo remains quiescent for a while. Such a developmental sequence is of great importance for proper seed development. However, the underlying mechanism remains unclear. Recent results on the cellular domain- and stage-specific expression of invertase genes in cotton and Arabidopsis revealed that cell wall invertase may positively and specifically regulate nuclear division of endosperm after fertilization, thereby playing a role in determining the sequential development of endosperm and embryo, probably through glucose signaling. © 2013 Landes Bioscience.

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Wang, L., Liao, S., & Ruan, Y. L. (2013). Cell wall invertase as a regulator in determining sequential development of endosperm and embryo through glucose signaling early in seed development. Plant Signaling and Behavior, 8(1), 158–160. https://doi.org/10.4161/psb.22722

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