Narayanan Sruthi, Tamura Pamela J, Roth Mary R, Prasad P V Vara, Welti Ruth
Department of Agronomy, Throckmorton Plant Sciences Center, Kansas State University, Manhattan, KS, 66506, USA.
Department of Agricultural and Environmental Sciences, Biosystems Research Complex, Clemson University, 105 Collings Street, Clemson, SC, 29634, USA.
Plant Cell Environ. 2016 Apr;39(4):787-803. doi: 10.1111/pce.12649. Epub 2016 Jan 18.
Understanding how wheat (Triticum aestivum L.) plants under high temperature (HT) regulate lipid composition is critical to developing climate-resilient varieties. We measured 165 glycerolipids and sterol derivatives under optimum and high day and night temperatures in wheat leaves using electrospray ionization-tandem mass spectrometry. Levels of polar lipid fatty acyl chain unsaturation were lower in both heat-tolerant genotype Ventnor and susceptible genotype Karl 92 under HT, compared with optimum temperature. The lower unsaturation was predominantly because of lower levels of 18:3 acyl chains and higher levels of 18:1 and 16:0 acyl chains. Levels of 18:3-containing triacylglycerols increased threefold/more under HT, consistent with their possible role in sequestering fatty acids during membrane lipid remodelling. Phospholipids containing odd-numbered or oxidized acyl chains accumulated in leaves under HT. Sterol glycosides (SG) and 16:0-acylated sterol glycosides (ASG) were higher under HT than optimum temperatures. Ventnor had lower amounts of phospholipids with oxidized acyl chains under HT and higher amounts of SG and 16:0-ASG than Karl 92. Taken together, the data demonstrate that wheat leaf lipid composition is altered by HT, in which some lipids are particularly responsive to HT, and that two wheat genotypes, chosen for their differing physiological responses to HT, differ in lipid profile under HT.
了解高温(HT)下小麦(Triticum aestivum L.)植株如何调节脂质组成对于培育适应气候变化的品种至关重要。我们使用电喷雾电离串联质谱法测量了小麦叶片在最佳温度以及昼夜高温条件下的165种甘油脂质和甾醇衍生物。与最佳温度相比,耐热基因型Ventnor和感热基因型Karl 92在高温下极性脂质脂肪酰链的不饱和度均较低。较低的不饱和度主要是由于18:3酰基链水平较低以及18:1和16:0酰基链水平较高。在高温下,含18:3的三酰甘油水平增加了三倍或更多,这与其在膜脂重塑过程中隔离脂肪酸的可能作用一致。在高温下,含有奇数或氧化酰基链的磷脂在叶片中积累。甾醇糖苷(SG)和16:0-酰化甾醇糖苷(ASG)在高温下比最佳温度下含量更高。在高温下,Ventnor含有氧化酰基链的磷脂含量较低,SG和16:0-ASG的含量比Karl 92高。综上所述,数据表明高温会改变小麦叶片的脂质组成,其中一些脂质对高温特别敏感,并且两种因对高温生理反应不同而选择的小麦基因型在高温下的脂质谱存在差异。