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黑杨转录组谱在应对干旱时的基因型和组织特异性变化。

Genotypic and tissue-specific variation of Populus nigra transcriptome profiles in response to drought.

机构信息

Forest Botany and Tree Physiology, University of Goettingen, Büsgenweg 2, Göttingen, Germany.

HAWK University of Applied Sciences and Arts, Faculty of Resource Management, Büsgenweg 1a, 37077, Göttingen, Germany.

出版信息

Sci Data. 2022 Jun 14;9(1):297. doi: 10.1038/s41597-022-01417-z.

Abstract

Climate change is one of the most important challenges for mankind in the far and near future. In this regard, sustainable production of woody crops on marginal land with low water availability is a major challenge to tackle. This dataset is part of an experiment, in which we exposed three genetically differentiated genotypes of Populus nigra originating from contrasting natural habitats to gradually increasing moderate drought. RNA sequencing was performed on fine roots, developing xylem and leaves of those three genotypes under control and moderate drought conditions in order to get a comprehensive dataset on the transcriptional changes at the whole plant level under water limiting conditions. This dataset has already provided insight in the transcriptional control of saccharification potential of the three Populus genotypes under drought conditions and we suggest that our data will be valuable for further in-depth analysis regarding candidate gene identification or, on a bigger scale, for meta-transcriptome analysis.

摘要

气候变化是人类在遥远和不久的将来面临的最重要挑战之一。在这方面,在水资源供应有限的边缘土地上可持续地生产木本作物是一个需要解决的主要挑战。本数据集是一项实验的一部分,在该实验中,我们将来自不同自然栖息地的三个遗传分化的欧洲黑杨基因型暴露在逐渐增加的中度干旱条件下。对三个基因型的细根、发育中的木质部和叶片在对照和中度干旱条件下进行 RNA 测序,以便在水分限制条件下获得整个植物水平转录变化的综合数据集。该数据集已经提供了在干旱条件下三个欧洲黑杨基因型糖化潜力的转录控制的见解,我们建议我们的数据将对候选基因鉴定或更大规模的元转录组分析的进一步深入分析有价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3eb/9197931/4e0412549698/41597_2022_1417_Fig1_HTML.jpg

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