Cavaiuolo Marina, Cocetta Giacomo, Spadafora Natasha Damiana, Müller Carsten T, Rogers Hilary J, Ferrante Antonio
Department of Agricultural and Environmental Sciences, Università degli Studi di Milano, Milano, Italy.
School of Biosciences, Cardiff University, Cardiff, United Kingdom.
PLoS One. 2017 May 30;12(5):e0178119. doi: 10.1371/journal.pone.0178119. eCollection 2017.
Diplotaxis tenuifolia L. is of important economic value in the fresh-cut industry for its nutraceutical and sensorial properties. However, information on the molecular mechanisms conferring tolerance of harvested leaves to pre- and postharvest stresses during processing and shelf-life have never been investigated. Here, we provide the first transcriptomic resource of rocket by de novo RNA sequencing assembly, functional annotation and stress-induced expression analysis of 33874 transcripts. Transcriptomic changes in leaves subjected to commercially-relevant pre-harvest (salinity, heat and nitrogen starvation) and postharvest stresses (cold, dehydration, dark, wounding) known to affect quality and shelf-life were analysed 24h after stress treatment, a timing relevant to subsequent processing of salad leaves. Transcription factors and genes involved in plant growth regulator signaling, autophagy, senescence and glucosinolate metabolism were the most affected by the stresses. Hundreds of genes with unknown function but uniquely expressed under stress were identified, providing candidates to investigate stress responses in rocket. Dehydration and wounding had the greatest effect on the transcriptome and different stresses elicited changes in the expression of genes related to overlapping groups of hormones. These data will allow development of approaches targeted at improving stress tolerance, quality and shelf-life of rocket with direct applications in the fresh-cut industries.
细叶二行芥因其营养保健特性和感官特性,在鲜切行业具有重要的经济价值。然而,关于采收叶片在加工和货架期对采前和采后胁迫耐受性的分子机制,此前从未有过研究。在此,我们通过对33874条转录本进行从头RNA测序组装、功能注释和胁迫诱导表达分析,首次提供了芝麻菜的转录组资源。在胁迫处理24小时后(这一时期与随后的生菜加工相关),分析了叶片在与商业相关的采前胁迫(盐度、高温和氮饥饿)和采后胁迫(低温、脱水、黑暗、机械损伤)下的转录组变化,这些胁迫已知会影响叶片品质和货架期。参与植物生长调节剂信号传导、自噬、衰老和硫代葡萄糖苷代谢的转录因子和基因受胁迫影响最大。鉴定出数百个功能未知但在胁迫下特异表达的基因,为研究芝麻菜的胁迫反应提供了候选基因。脱水和机械损伤对转录组影响最大,不同胁迫引发了与重叠激素组相关基因表达的变化。这些数据将有助于开发旨在提高芝麻菜胁迫耐受性、品质和货架期的方法,可直接应用于鲜切行业。