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Review
. 2020 Mar;87(3):374-379.
doi: 10.1002/mrd.23295. Epub 2019 Nov 17.

Polyspermy in angiosperms: Its contribution to polyploid formation and speciation

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Review

Polyspermy in angiosperms: Its contribution to polyploid formation and speciation

Erika Toda et al. Mol Reprod Dev. 2020 Mar.

Abstract

Polyploidization has played a major role in the long-term diversification and evolutionary success of angiosperms. Triploid formation among diploid plants, which is generally considered to be achieved by fertilization of an unreduced gamete with a reduced one, has been accepted as a means of polyploid production. In addition, it has been supposed that polyspermy also contributes to the triploid formation in maize, wheat, and some orchids; however, such a mechanism has been considered uncommon because reproducing the polyspermic situation and unambiguously investigating developmental profiles of polyspermic zygotes are difficult. To overcome these problems, rice polyspermic zygotes have been successfully produced by electrofusion of an egg cell with two sperm cells, and their developmental profiles have been monitored. The triploid zygotes progress through karyogamy and divide into two-celled embryos via a typical bipolar mitotic division; the two-celled embryos further develop into triploid plants, indicating that polyspermic plant zygotes, unlike those of animals, can develop normally. Furthermore, progenies consisting of triparental genetic materials have been successfully obtained in Arabidopsis through the pollination of two different kinds of male parents with a female parent. These different pieces of evidence for development and emergence of polyspermic zygotes in vitro and in planta suggest that polyspermy is a key event in polyploidization and species diversification.

Keywords: angiosperm; nuclear/cell division; polyploidization; speciation; zygote.

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REFERENCES

    1. Antoine, A. F., Faure, J. E., Dumas, C., & Feijó, J. A. (2001). Differential contribution of cytoplasmic Ca2+ and Ca2+ influx to gamete fusion and egg activation in maize. Nature Cell Biology, 3, 1120-1123. https://doi.org/10.1038/ncb1201-1120
    1. Beale, K. M., Leydon, A. R., & Johnson, M. A. (2012). Gamete fusion is required to block multiple pollen tubes from entering an Arabidopsis ovule. Current Biology, 22, 1090-1094. https://doi.org/10.1016/j.cub.2012.04.041
    1. von Besser, K., Frank, A. C., Johnson, M. A., & Preuss, D. (2006). Arabidopsis HAP2 (GCS1) is a sperm-specific gene required for pollen tube guidance and fertilization. Development, 133, 4761-4769. https://doi.org/10.1242/dev.02683
    1. Blanc, G., & Wolfe, K. H. (2004). Widespread paleopolyploidy in model plant species inferred from age distributions of duplicate genes. The Plant Cell, 16, 1667-1678. https://doi.org/10.1105/tpc.021345
    1. Bleckmann, A., Alter, S., & Dresselhaus, T. (2014). The beginning of a seed: Regulatory mechanisms of double fertilization. Frontiers in Plant Science, 5, 452. https://doi.org/10.3389/fpls.2014.00452

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