Insights into dynamic coenocytic endosperm development: Unraveling molecular, cellular, and growth complexity

The endosperm, a product of double fertilization, is one of the keys to the evolution and success of angiosperms in conquering the land. While there are differences in endosperm development among flowering plants, the most common form is coenocytic growth, where the endosperm initially undergoes nuc...

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Veröffentlicht in:Current opinion in plant biology 2024-10, Vol.81, p.102566, Article 102566
Hauptverfasser: Sharma, Vijyesh, Ali, Mohammad Foteh, Kawashima, Tomokazu
Format: Artikel
Sprache:eng
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Zusammenfassung:The endosperm, a product of double fertilization, is one of the keys to the evolution and success of angiosperms in conquering the land. While there are differences in endosperm development among flowering plants, the most common form is coenocytic growth, where the endosperm initially undergoes nuclear division without cytokinesis and eventually becomes cellularized. This complex process requires interplay among networks of transcription factors such as MADS-box, auxin response factors (ARFs), and phytohormones. The role of cytoskeletal elements in shaping the coenocytic endosperm and influencing seed growth also becomes evident. This review offers a recent understanding of the molecular and cellular dynamics in coenocytic endosperm development and their contributions to the final seed size.
ISSN:1369-5266
1879-0356
1879-0356
DOI:10.1016/j.pbi.2024.102566