Narayanan Sruthi, Prasad P V Vara, Welti Ruth
Department of Agronomy, 2004 Throckmorton Plant Sciences Center, Kansas State University, Manhattan, KS, 66506, USA.
Department of Agricultural and Environmental Sciences, Clemson University, Clemson, SC, 29634, USA.
Plant Cell Environ. 2016 Mar;39(3):608-17. doi: 10.1111/pce.12648. Epub 2015 Dec 21.
Identifying lipids that experience coordinated metabolism during heat stress would provide information regarding lipid dynamics under stress conditions and assist in developing heat-tolerant wheat varieties. We hypothesized that co-occurring lipids, which are up-regulated or down-regulated together through time during heat stress, represent groups that can be explained by coordinated metabolism. Wheat plants (Triticum aestivum L.) were subjected to 12 days of high day and/or night temperature stress, followed by a 4-day recovery period. Leaves were sampled at four time points, and 165 lipids were measured by electrospray ionization-tandem mass spectrometry. Correlation analysis of lipid levels in 160 leaf samples from each of two wheat genotypes revealed 13 groups of lipids. Lipids within each group co-occurred through the high day and night temperature stress treatments. The lipid groups can be broadly classified as groups containing extraplastidic phospholipids, plastidic glycerolipids, oxidized glycerolipids, triacylglycerols, acylated sterol glycosides and sterol glycosides. Current knowledge of lipid metabolism suggests that the lipids in each group co-occur because they are regulated by the same enzyme(s). The results suggest that increases in activities of desaturating, oxidizing, glycosylating and acylating enzymes lead to simultaneous changes in levels of multiple lipid species during high day and night temperature stress in wheat.
识别在热胁迫期间经历协同代谢的脂质,将提供有关胁迫条件下脂质动态的信息,并有助于培育耐热小麦品种。我们假设,在热胁迫期间随时间一起上调或下调的共现脂质代表了可以通过协同代谢来解释的脂质组。对小麦植株(普通小麦)进行为期12天的高温日和/或高温夜胁迫处理,随后是4天的恢复期。在四个时间点采集叶片样本,并通过电喷雾电离串联质谱法测定165种脂质。对两种小麦基因型各自的160个叶片样本中的脂质水平进行相关性分析,发现了13组脂质。每组中的脂质在高温日和高温夜胁迫处理中同时出现。这些脂质组大致可分为含有质体外磷脂、质体甘油脂、氧化甘油脂、三酰甘油、酰化甾醇糖苷和甾醇糖苷的脂质组。目前关于脂质代谢的知识表明,每组中的脂质同时出现是因为它们受相同的一种或多种酶调控。结果表明,在小麦高温日和高温夜胁迫期间,去饱和酶、氧化酶、糖基化酶和酰基化酶活性的增加导致多种脂质种类的水平同时发生变化。