Clauw Pieter, Coppens Frederik, Korte Arthur, Herman Dorota, Slabbinck Bram, Dhondt Stijn, Van Daele Twiggy, De Milde Liesbeth, Vermeersch Mattias, Maleux Katrien, Maere Steven, Gonzalez Nathalie, Inzé Dirk
Department of Plant Systems Biology, VIB, Ghent, Belgium.
Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Ghent, Belgium.
Plant Cell. 2016 Oct;28(10):2417-2434. doi: 10.1105/tpc.16.00483. Epub 2016 Oct 11.
Plant growth and crop yield are negatively affected by a reduction in water availability. However, a clear understanding of how growth is regulated under nonlethal drought conditions is lacking. Recent advances in genomics, phenomics, and transcriptomics allow in-depth analysis of natural variation. In this study, we conducted a detailed screening of leaf growth responses to mild drought in a worldwide collection of Arabidopsis thaliana accessions. The genetic architecture of the growth responses upon mild drought was investigated by subjecting the different leaf growth phenotypes to genome-wide association mapping and by characterizing the transcriptome of young developing leaves. Although no major effect locus was found to be associated with growth in mild drought, the transcriptome analysis delivered further insight into the natural variation of transcriptional responses to mild drought in a specific tissue. Coexpression analysis indicated the presence of gene clusters that co-vary over different genetic backgrounds, among others a cluster of genes with important regulatory functions in the growth response to osmotic stress. It was found that the occurrence of a mild drought stress response in leaves can be inferred with high accuracy across accessions based on the expression profile of 283 genes. A genome-wide association study on the expression data revealed that trans regulation seems to be more important than cis regulation in the transcriptional response to environmental perturbations.
植物生长和作物产量会因水分可利用性的降低而受到负面影响。然而,目前尚缺乏对非致死干旱条件下生长如何调控的清晰认识。基因组学、表型组学和转录组学的最新进展使得对自然变异进行深入分析成为可能。在本研究中,我们对全球范围内收集的拟南芥种质资源的叶片对轻度干旱的生长反应进行了详细筛选。通过对不同的叶片生长表型进行全基因组关联作图,并对幼嫩发育叶片的转录组进行表征,研究了轻度干旱时生长反应的遗传结构。尽管未发现与轻度干旱下生长相关的主要效应位点,但转录组分析为特定组织中对轻度干旱的转录反应的自然变异提供了进一步的见解。共表达分析表明存在在不同遗传背景下共同变化的基因簇,其中包括一组在对渗透胁迫的生长反应中具有重要调控功能的基因。研究发现,基于283个基因的表达谱,可以在不同种质资源中高精度地推断叶片中轻度干旱胁迫反应的发生情况。对表达数据的全基因组关联研究表明,在对环境扰动的转录反应中,反式调控似乎比顺式调控更为重要。