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A spatial transcriptome map of the developing maize ear

delete2024-05-14
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OA
AI
Y
Yuebin Wang
罗云 cover
罗云 (Yun Luo)
郭兴 cover
郭兴 (Xing Guo)
Y
Yunfu Li
J
Jiali Yan
W
Wenwen Shao
W
Wenjie Wei
X
Xiaofeng Wei
杨涛 cover
杨涛 (Tao Yang)
陈靖 (Jing Chen)
L
Lihua Chen
Q
Qian Ding
M
Minji Bai
Z
Zhuo Lin
李力 (Li Li)
D
David Jackson
张祖新 (Zuxin Zhang)
X
Xun Xu
严建兵 cover
严建兵 (Jianbing Yan)
H
Huan Liu *
刘磊 cover
刘磊 (Lei Liu)
N
Ning Yang *
DOI:10.1038/s41477-024-01683-2delete
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Abstract

Abstract

En 中文
A comprehensive understanding of inflorescence development is crucial for crop genetic improvement, as inflorescence meristems give rise to reproductive organs and determine grain yield. However, dissecting inflorescence development at the cellular level has been challenging owing to a lack of specific marker genes to distinguish among cell types, particularly in different types of meristems that are vital for organ formation. In this study, we used spatial enhanced resolution omics-sequencing (Stereo-seq) to construct a precise spatial transcriptome map of the developing maize ear primordium, identifying 12 cell types, including 4 newly defined cell types found mainly in the inflorescence meristem. By extracting the meristem components for detailed clustering, we identified three subtypes of meristem and validated two MADS-box genes that were specifically expressed at the apex of determinate meristems and involved in stem cell determinacy. Furthermore, by integrating single-cell RNA transcriptomes, we identified a series of spatially specific networks and hub genes that may provide new insights into the formation of different tissues. In summary, this study provides a valuable resource for research on cereal inflorescence development, offering new clues for yield improvement. The authors integrate spatial (Stereo-seq) and single-cell transcriptomes of the developing maize ear to produce an atlas of maize ear cells and their developmental trajectories. They also identify a pair of transcription factors involved in inflorescence development.
Keywords:
GENE-EXPRESSION
INFLORESCENCE ARCHITECTURE
MERISTEM FATE
SHOOT
ENCODES
YIELD
BIOSYNTHESIS
TRANSPORTER
METABOLISM
INITIATION

Journal

Nature Plants cover
Nature Plants
IF:
13.6
Papers:
2.8K
Citations:
1.8W

Organization

H
Huazhong Agricultural University
Scholars:
3.2W
Papers: 1.8W
Citations: 3.5W
B
beijing genomics institute (bgi)
Scholars:
5.2K
Papers: 2.1K
Citations: 7