Vuković Rosemary, Čamagajevac Ivna Štolfa, Vuković Ana, Šunić Katarina, Begović Lidija, Mlinarić Selma, Sekulić Ramona, Sabo Nikolina, Španić Valentina
Department of Biology, University of Osijek, 31000 Osijek, Croatia.
Department of Small Cereal Crops, Agricultural Institute Osijek, 31000 Osijek, Croatia.
Antioxidants (Basel). 2022 Mar 31;11(4):693. doi: 10.3390/antiox11040693.
Due to climate change in recent years, there has been an increasing water deficit during the winter wheat sowing period. This study evaluated six Croatian winter wheat varieties' physiological, biochemical, and molecular responses under two drought stress levels at the germination/seedling growth stage. Lipid peroxidation was mainly induced under both drought stress treatments, while the antioxidative response was variety-specific. The most significant role in the antioxidative response had glutathione along with the ascorbate-glutathione pathway. Under drought stress, wheat seedlings responded in proline accumulation that was correlated with the gene expression. Expression of genes encoding dehydrins (, ) was highly induced under the drought stress in all varieties, while genes encoding transcription factors were differentially regulated. Expression of was upregulated under severe drought stress in most varieties, while the expression of was downregulated or revealed control levels. Different mechanisms were shown to contribute to the drought tolerance in different varieties, which was mainly associated with osmotic adjustment and dehydrins expression. Identifying different mechanisms in drought stress response would advance our understanding of the complex strategies contributing to wheat tolerance to drought in the early growth stage and could contribute to variety selection useful for developing new drought-tolerant varieties.
由于近年来气候变化,冬小麦播种期的水分亏缺日益加剧。本研究评估了六个克罗地亚冬小麦品种在发芽/幼苗生长阶段两种干旱胁迫水平下的生理、生化和分子反应。在两种干旱胁迫处理下均主要诱导了脂质过氧化,而抗氧化反应具有品种特异性。谷胱甘肽以及抗坏血酸-谷胱甘肽途径在抗氧化反应中发挥了最重要的作用。在干旱胁迫下,小麦幼苗表现为脯氨酸积累,且与基因表达相关。在所有品种中,编码脱水蛋白( , )的基因表达在干旱胁迫下均被高度诱导,而编码转录因子的基因则受到不同程度的调控。在大多数品种中, 的表达在严重干旱胁迫下上调,而 的表达则下调或维持对照水平。不同品种表现出不同的耐旱机制,主要与渗透调节和脱水蛋白表达有关。确定干旱胁迫响应中的不同机制将增进我们对小麦早期生长阶段耐旱复杂策略的理解,并有助于筛选出有助于培育新耐旱品种的有用品种。