The Freshwater Biological Laboratory, Department of Biology, University of Copenhagen, Universitetsparken 4, 3rd floor, Copenhagen, 2100, Denmark.
Department of Crop and Soil Environmental Sciences, Virginia Tech, 1880 Pratt Drive, Blacksburg, Virginia, 24061, USA.
Plant Cell Environ. 2018 Jul;41(7):1632-1644. doi: 10.1111/pce.13211. Epub 2018 May 16.
Responses of wheat (Triticum aestivum) to complete submergence are not well understood as research has focused on waterlogging (soil flooding). The aim of this study was to characterize the responses of 2 wheat cultivars differing vastly in submergence tolerance to test if submergence tolerance was linked to shoot carbohydrate consumption as seen in rice. Eighteen-day-old wheat cultivars Frument (intolerant) and Jackson (tolerant) grown in soil were completely submerged for up to 19 days while assessing responses in physiology, gene expression, and shoot metabolome. Results revealed 50% mortality after 9.3 and 15.9 days of submergence in intolerant Frument and tolerant Jackson, respectively, and significantly higher growth in Jackson during recovery. Frument displayed faster leaf degradation as evident from leaf tissue porosity, chlorophyll , and metabolomic fingerprinting. Surprisingly, shoot soluble carbohydrates, starch, and individual sugars declined to similarly low levels in both cultivars by day 5, showing that cultivar Jackson tolerated longer periods of low shoot carbohydrate levels than Frument. Moreover, intolerant Frument showed higher levels of phytol and the lipid peroxidation marker malondialdehyde relative to tolerant Jackson. Consequently, we propose to further investigate the role of ethylene sensitivity and deprivation of reactive O species in submerged wheat.
小麦对完全淹没的反应尚不清楚,因为研究集中在水涝(土壤浸水)上。本研究的目的是描述 2 个小麦品种在耐淹性方面的差异,以测试耐淹性是否与水稻中看到的地上部碳水化合物消耗有关。在土壤中生长的 18 天大麦品种 Frument(不耐淹)和 Jackson(耐淹)完全淹没长达 19 天,同时评估生理、基因表达和地上部代谢组的反应。结果表明,不耐淹的 Frument 在 9.3 天和 15.9 天后分别有 50%的死亡率,而耐淹的 Jackson 在恢复期间的生长显著增加。Frument 的叶片降解速度更快,从叶片组织孔隙度、叶绿素和代谢组指纹图谱可以明显看出。令人惊讶的是,到第 5 天,地上部可溶性碳水化合物、淀粉和个别糖在两个品种中的含量都下降到同样低的水平,表明耐淹的 Jackson 比不耐淹的 Frument 能耐受更长时间的低地上部碳水化合物水平。此外,不耐淹的 Frument 显示出比耐淹的 Jackson 更高水平的植醇和脂质过氧化标记物丙二醛。因此,我们建议进一步研究乙烯敏感性和活性氧剥夺在淹没小麦中的作用。