Cell Fate Determination of the Potato Shoot Apex and Stolon Tips Revealed by Single‐Cell Transcriptome Analysis

匍匐茎 生物 分生组织 拟南芥 开枪 生长素 转录组 转录因子 植物 基因 细胞生物学 基因表达 遗传学 突变体
作者
Chaocheng Guo,Zhuoran Huang,Siyu Luo,Xinyuan Wang,Jiahao Li,Guolong Yu,Yudong Wang,Xu Wang,Xu Wang,Xu Wang
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:48 (7): 4838-4858 被引量:4
标识
DOI:10.1111/pce.15459
摘要

ABSTRACT Potato ( Solanum tuberosum L.) is a starch‐rich crop with two types of meristematic stems: the shoot and stolon. Shoots grow vertically, while stolons grow horizontally underground and produce tubers at their tips. However, transcriptional differences between shoot and stolon cells remain unclear. To address this, we performed single‐cell RNA sequencing of the shoot apex and stolon tip, generating a comprehensive transcriptional landscape. We identified 23 distinct cell clusters with high cell heterogeneity, including cell‐specific genes and conserved genes with cell‐specific expression patterns. Hormone‐related genes, particularly those involved in auxin and gibberellin pathways, exhibited distinct patterns among shoot and stolon cells. Meristematic cells were re‐clustered based on the expression of StPOTH15 , a homolog of SHOOT MERISTEMLESS ( STM ) in Arabidopsis. Co‐expression networks of transcription factors identified the key transcription factors involved in stolon development. We also constructed developmental trajectories for xylem and phloem development using key vascular genes, including MP , XCP1 , PP2A1 and SEOR1 . Comparative analysis with Arabidopsis highlighted significant differences in cell type‐specific transcript profiles. These results provide insights into the transcriptional divergence between potato shoot and stolon, and identify key transcription factors co‐expressed with StPOTH15 that can be used to explore their roles in stolon development.
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