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大豆发育的空间分辨多组学单细胞图谱。

A spatially resolved multiomic single-cell atlas of soybean development.

作者信息

Zhang Xuan, Luo Ziliang, Marand Alexandre P, Yan Haidong, Jang Hosung, Bang Sohyun, Mendieta John P, Minow Mark A A, Schmitz Robert J

机构信息

Department of Genetics, University of Georgia, Athens, GA, USA.

These authors contributed equally: Xuan Zhang, Ziliang Luo, Alexandre P. Marand.

出版信息

bioRxiv. 2024 Jul 3:2024.07.03.601616. doi: 10.1101/2024.07.03.601616.

Abstract

-regulatory elements (CREs) precisely control spatiotemporal gene expression in cells. Using a spatially resolved single-cell atlas of gene expression with chromatin accessibility across ten soybean tissues, we identified 103 distinct cell types and 303,199 accessible chromatin regions (ACRs). Nearly 40% of the ACRs showed cell-type-specific patterns and were enriched for transcription factor (TF) motifs defining diverse cell identities. We identified enriched TF motifs and explored conservation of gene regulatory networks underpinning legume symbiotic nitrogen fixation. With comprehensive developmental trajectories for endosperm and embryo, we uncovered the functional transition of the three sub-cell types of endosperm, identified 13 sucrose transporters sharing the DOF11 motif that were co-up-regulated in late peripheral endosperm and identified key embryo cell-type specification regulators during embryogenesis, including a homeobox TF that promotes cotyledon parenchyma identity. This resource provides a valuable foundation for analyzing gene regulatory programs in soybean cell types across tissues and life stages.

摘要

调控元件(CREs)精确控制细胞中的时空基因表达。通过使用跨越十个大豆组织的具有染色质可及性的空间分辨单细胞基因表达图谱,我们鉴定出103种不同的细胞类型和303199个可及染色质区域(ACRs)。近40%的ACRs表现出细胞类型特异性模式,并富含定义不同细胞身份的转录因子(TF)基序。我们鉴定了富集的TF基序,并探索了支撑豆科植物共生固氮的基因调控网络的保守性。通过胚乳和胚胎的综合发育轨迹,我们揭示了胚乳三种亚细胞类型的功能转变,鉴定出13个共享DOF11基序的蔗糖转运蛋白,它们在晚期外周胚乳中共同上调,并鉴定了胚胎发育过程中的关键胚胎细胞类型特异性调节因子,包括一个促进子叶薄壁细胞身份的同源框TF。该资源为分析大豆不同组织和生命阶段细胞类型中的基因调控程序提供了宝贵的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ff5/11244997/34b4a67eedb6/nihpp-2024.07.03.601616v1-f0001.jpg

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