Transcriptional landscapes of floral meristems in barley

Organ development in plants predominantly occurs postembryonically through combinatorial activity of meristems; therefore, meristem and organ fate are intimately connected. Inflorescence morphogenesis in grasses (Poaceae) is complex and relies on a specialized floral meristem, called spikelet merist...

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Veröffentlicht in:Science advances 2021-04, Vol.7 (18)
Hauptverfasser: Thiel, J, Koppolu, R, Trautewig, C, Hertig, C, Kale, S M, Erbe, S, Mascher, M, Himmelbach, A, Rutten, T, Esteban, E, Pasha, A, Kumlehn, J, Provart, N J, Vanderauwera, S, Frohberg, C, Schnurbusch, T
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Sprache:eng
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Zusammenfassung:Organ development in plants predominantly occurs postembryonically through combinatorial activity of meristems; therefore, meristem and organ fate are intimately connected. Inflorescence morphogenesis in grasses (Poaceae) is complex and relies on a specialized floral meristem, called spikelet meristem, that gives rise to all other floral organs and ultimately the grain. The fate of the spikelet determines reproductive success and contributes toward yield-related traits in cereal crops. Here, we examined the transcriptional landscapes of floral meristems in the temperate crop barley ( L.) using RNA-seq of laser capture microdissected tissues from immature, developing floral structures. Our unbiased, high-resolution approach revealed fundamental regulatory networks, previously unknown pathways, and key regulators of barley floral fate and will equally be indispensable for comparative transcriptional studies of grass meristems.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.abf0832