Department of Environmental Horticulture, University of Florida, Gainesville, FL, USA.
Department of Horticultural Sciences, University of Florida, Gainesville, FL, USA.
Sci Rep. 2024 Mar 19;14(1):6618. doi: 10.1038/s41598-024-55037-1.
Lettuce is a highly perishable horticultural crop with a relatively short shelf-life that limits its commercial value and contributes to food waste. Postharvest senescence varies with influences of both environmental and genetic factors. From a larger pool of romaine lettuce genotypes, we identified three genotypes with variable shelf lives and evaluated their leaf morphology characteristics and transcriptomic profiles at preharvest to predict postharvest quality. Breeding line 60184 had the shortest shelf-life (SSL), cultivar 'Manatee' had an intermediate shelf-life (ISL), and 'Okeechobee' had the longest shelf-life (LSL). We observed significantly larger leaf lamina thickness and higher stomatal index in the SSL genotypes relative to the LSL cultivar. To identify molecular indicators of shelf-life, we used a transcriptional approach between two of the contrasting genotypes, breeding line 60184 and cultivar 'Okeechobee' at preharvest. We identified 552 upregulated and 315 downregulated differentially expressed genes between the genotypes, from which 27% of them had an Arabidopsis thaliana ortholog previously characterized as senescence associated genes (SAGs). Notably, we identified several SAGs including several related to jasmonate ZIM-domain jasmonic acid signaling, chlorophyll a-b binding, and cell wall modification including pectate lyases and expansins. This study presented an innovative approach for identifying preharvest molecular factors linked to postharvest traits for prolonged shelf.
生菜是一种极易腐烂的园艺作物,货架期相对较短,这限制了其商业价值,并导致了食物浪费。采后衰老受环境和遗传因素的共同影响。我们从大量罗马生菜基因型中,鉴定出三个货架期不同的基因型,并在采前评估其叶片形态特征和转录组谱,以预测采后品质。品系 60184 的货架期最短(SSL),品种‘Manatee’的货架期中等(ISL),而‘Okeechobee’的货架期最长(LSL)。我们观察到 SSL 基因型的叶片叶肉厚度明显较大,气孔指数较高。为了鉴定货架期的分子标志物,我们在采前使用两种差异较大的基因型,即品系 60184 和品种‘Okeechobee’,进行转录组学分析。我们在这两个基因型之间鉴定出 552 个上调和 315 个下调的差异表达基因,其中 27%的基因与拟南芥的衰老相关基因(SAGs)具有同源性。值得注意的是,我们鉴定出了几个 SAGs,包括几个与茉莉酸 ZIM 结构域茉莉酸信号、叶绿素 a-b 结合以及细胞壁修饰相关的基因,如果胶裂解酶和扩展蛋白。本研究提出了一种创新的方法,用于鉴定与延长货架期相关的采前分子因子。