Dual and spatially resolved drought responses in the Arabidopsis leaf mesophyll revealed by single-cell transcriptomics

IF 8.1 1区 生物学 Q1 PLANT SCIENCES New Phytologist Pub Date : 2025-03-03 DOI:10.1111/nph.20446
Rubén Tenorio Berrío, Eline Verhelst, Thomas Eekhout, Carolin Grones, Lieven De Veylder, Bert De Rybel, Marieke Dubois
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Abstract

Drought stress imposes severe challenges on agriculture by impacting crop performance. Understanding drought responses in plants at a cellular level is a crucial first step toward engineering improved drought resilience. However, the molecular responses to drought are complex as they depend on multiple factors, including the severity of drought, the profiled organ, its developmental stage or even the cell types therein. Thus, deciphering the transcriptional responses to drought is especially challenging. In this study, we investigated tissue-specific responses to mild drought (MD) in young Arabidopsis thaliana (Arabidopsis) leaves using single-cell RNA sequencing (scRNA-seq). To preserve transcriptional integrity during cell isolation, we inhibited RNA synthesis using the transcription inhibitor actinomycin D, and demonstrated the benefits of transcriptome fixation for studying mild stress responses at a single-cell level. We present a curated and validated single-cell atlas, comprising 50 797 high-quality cells from almost all known cell types present in the leaf. All cell type annotations were validated with a new library of reporter lines. The curated data are available to the broad community in an intuitive tool and a browsable single-cell atlas (http://www.single-cell.be/plant/leaf-drought). We show that the mesophyll contains two spatially separated cell populations with distinct responses to drought: one enriched in canonical abscisic acid-related drought-responsive genes, and another one enriched in genes involved in iron starvation responses. Our study thus reveals a dual adaptive mechanism of the leaf mesophyll in response to MD and provides a valuable resource for future research on stress responses.

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单细胞转录组学揭示了拟南芥叶肉的双重和空间分辨干旱响应
干旱压力通过影响作物性能给农业带来了严峻的挑战。在细胞水平上了解植物的干旱反应是提高抗旱能力的关键的第一步。然而,分子对干旱的反应是复杂的,因为它取决于多种因素,包括干旱的严重程度、所描绘的器官、其发育阶段甚至其中的细胞类型。因此,破译对干旱的转录反应尤其具有挑战性。在这项研究中,我们利用单细胞RNA测序(scRNA-seq)研究了拟南芥幼嫩叶片对轻度干旱(MD)的组织特异性反应。为了在细胞分离过程中保持转录完整性,我们使用转录抑制剂放线菌素D抑制RNA合成,并证明了转录组固定在单细胞水平上研究轻度应激反应的好处。我们提出了一个精心策划和验证的单细胞图谱,包括来自几乎所有已知细胞类型的50797个高质量细胞。使用新的报告行库验证所有单元格类型注释。通过直观的工具和可浏览的单细胞地图集(http://www.single-cell.be/plant/leaf-drought),可以获得经过整理的数据。我们发现叶肉包含两个空间分离的细胞群,它们对干旱的反应不同:一个富含典型脱落酸相关的干旱响应基因,另一个富含与铁饥饿反应有关的基因。本研究揭示了叶片叶肉对胁迫响应的双重适应机制,为今后叶片叶肉对胁迫响应的研究提供了有价值的资源。
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New Phytologist
New Phytologist 生物-植物科学
自引率
5.30%
发文量
728
期刊介绍: New Phytologist is an international electronic journal published 24 times a year. It is owned by the New Phytologist Foundation, a non-profit-making charitable organization dedicated to promoting plant science. The journal publishes excellent, novel, rigorous, and timely research and scholarship in plant science and its applications. The articles cover topics in five sections: Physiology & Development, Environment, Interaction, Evolution, and Transformative Plant Biotechnology. These sections encompass intracellular processes, global environmental change, and encourage cross-disciplinary approaches. The journal recognizes the use of techniques from molecular and cell biology, functional genomics, modeling, and system-based approaches in plant science. Abstracting and Indexing Information for New Phytologist includes Academic Search, AgBiotech News & Information, Agroforestry Abstracts, Biochemistry & Biophysics Citation Index, Botanical Pesticides, CAB Abstracts®, Environment Index, Global Health, and Plant Breeding Abstracts, and others.
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