Plant Physiology Unit, Department of Life Sciences and Systems Biology, University of Torino, Turin, Italy.
Green Has Italia S.P.A, Canale, CN, Italy.
Sci Rep. 2021 Jan 11;11(1):354. doi: 10.1038/s41598-020-79770-5.
Roots have important roles for plants to withstand adverse environmental conditions, including salt stress. Biostimulant application was shown to enhance plant resilience towards abiotic stresses. Here, we studied the effect of a tannin-based biostimulant on tomato (Solanum lycopersicum L.) grown under salt stress conditions. We investigated the related changes at both root architecture (via imaging and biometric analysis) and gene expression (RNA-Seq/qPCR) levels. Moreover, in order to identify the main compounds potentially involved in the observed effects, the chemical composition of the biostimulant was evaluated by UV/Vis and HPLC-ESI-Orbitrap analysis. Sixteen compounds, known to be involved in root development and having a potential antioxidant properties were identified. Significant increase of root weight (+ 24%) and length (+ 23%) was observed when the plants were grown under salt stress and treated with the biostimulant. Moreover, transcriptome analysis revealed that the application of the biostimulant upregulated 285 genes, most of which correlated to root development and salt stress tolerance. The 171 downregulated genes were mainly involved in nutrient uptake. These data demonstrated that the biostimulant is able not only to restore root growth in salty soils, but also to provide the adequate plant nourishment by regulating the expression of essential transcription factors and stress responsive genes.
根系对植物耐受逆境条件(包括盐胁迫)具有重要作用。生物刺激素的应用被证明可以增强植物对非生物胁迫的适应能力。在这里,我们研究了一种基于单宁的生物刺激素对盐胁迫条件下生长的番茄(Solanum lycopersicum L.)的影响。我们研究了根系结构(通过成像和生物计量分析)和基因表达(RNA-Seq/qPCR)水平的相关变化。此外,为了鉴定可能参与观察到的效应的主要化合物,通过 UV/Vis 和 HPLC-ESI-Orbitrap 分析评估了生物刺激素的化学成分。鉴定出了 16 种已知参与根系发育且具有潜在抗氧化特性的化合物。当植物在盐胁迫下生长并使用生物刺激素处理时,观察到根重(增加 24%)和长度(增加 23%)显著增加。此外,转录组分析显示,生物刺激素的应用上调了 285 个基因,其中大多数与根系发育和耐盐性相关。下调的 171 个基因主要参与养分吸收。这些数据表明,生物刺激素不仅能够恢复盐渍土壤中的根系生长,还能够通过调节必需转录因子和应激响应基因的表达为植物提供适当的营养。