Microscopy and transcriptomic datasets for investigating the drought-stress response and recovery in young and early senescent-old leaves from Brassica napus.

IF 1 Q3 MULTIDISCIPLINARY SCIENCES Data in Brief Pub Date : 2024-11-14 eCollection Date: 2024-12-01 DOI:10.1016/j.dib.2024.111130
Pierre-Nicolas Boulc'h, Vanessa Clouet, Gevorg Ghukasyan, Marie-Françoise Niogret, Laurent Leport, Maja Musse
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Abstract

The present dataset combines transcriptomic and microscopic analyses to investigate the responses of winter oilseed rape (WOSR, Brassica napus L., cultivar Aviso) to soil drought, with a focus on differences between young and early-senescent old leaves. For microscopy, 36 scans of 1 to 5 leaf cross-sections were acquired from paraffin-embedded leaf disc samples using a scanner with a 40x lens (Pannoramic Confocal, 3DHistech), capturing a large field of view (8-mm-long observed leaf tissue). The raw scanned cross-sections and analyzed images are available under doi.org/10.57745/RK5PM3 in the Recherche Data Gouvrepository. These high-quality scans enable the differentiation of mesophyll cells and tissues. Software analysis yielded a dataset with 54 selected cross-sectional areas, 291 delimited surfaces of palisade, spongy, and vessel tissues, and 11,136 individually delimited cells from the palisade and spongy layers. For transcriptomics, an Illumina Novaseq sequencer was used to generate 390 Gb of mRNA paired-end reads. The raw reads were filtered, mapped, and assigned to genes from the Brassica napus reference genome Darmor-bzh v10, which were subsequently used to identify differentially expressed genes (DEGs) and to perform gene ontology enrichment analysis. The raw reads are accessible under accession PRJNA939927 at the NCBI Sequence Read Archive (SRA). This high-quality dataset provides insights into the molecular mechanisms underlying oilseed rape's response to soil drought and may aid in the development of drought-tolerant cultivars. A total of 17,975 DEGs were identified between well-watered and severe drought conditions across the contrasted leaf developmental stages.

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研究甘蓝型油菜幼叶和早衰老叶干旱胁迫响应和恢复的显微和转录组学数据集。
本研究采用转录组学和显微分析相结合的方法,研究了冬季油菜(WOSR, Brassica napus L., Aviso)对土壤干旱的响应,重点研究了幼叶和早衰老叶之间的差异。显微镜方面,使用带有40倍透镜(Pannoramic Confocal, 3DHistech)的扫描仪,从石蜡包埋的叶盘样品中获得了1至5个叶片截面的36次扫描,捕获了大视野(观察到的8毫米长的叶组织)。原始扫描截面和分析图像可在Recherche Data Gouvrepository的doi.org/10.57745/RK5PM3中获得。这些高质量的扫描有助于叶肉细胞和组织的分化。软件分析产生了一个数据集,其中包含54个选定的横截面积,291个栅栏、海绵和血管组织的划定表面,以及来自栅栏和海绵层的11,136个单独划定的细胞。转录组学方面,使用Illumina Novaseq测序仪生成390 Gb的mRNA配对末端reads。对原始reads进行过滤、定位,并将其与甘蓝型油菜参考基因组darmorbzh v10中的基因进行匹配,随后用于鉴定差异表达基因(DEGs)并进行基因本体富集分析。原始读取可以在NCBI序列读取档案(SRA)的编号prjna9399927下访问。这个高质量的数据集为油菜对土壤干旱反应的分子机制提供了见解,并可能有助于耐旱品种的开发。在不同的叶片发育阶段,水分充足和严重干旱条件下共鉴定出17,975个deg。
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来源期刊
Data in Brief
Data in Brief MULTIDISCIPLINARY SCIENCES-
CiteScore
3.10
自引率
0.00%
发文量
996
审稿时长
70 days
期刊介绍: Data in Brief provides a way for researchers to easily share and reuse each other''s datasets by publishing data articles that: -Thoroughly describe your data, facilitating reproducibility. -Make your data, which is often buried in supplementary material, easier to find. -Increase traffic towards associated research articles and data, leading to more citations. -Open up doors for new collaborations. Because you never know what data will be useful to someone else, Data in Brief welcomes submissions that describe data from all research areas.
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