首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Two Festuca Species—F. arundinacea and F. glaucescens—Differ in the Molecular Response to Drought While Their Physiological Response Is Similar
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Two Festuca Species—F. arundinacea and F. glaucescens—Differ in the Molecular Response to Drought While Their Physiological Response Is Similar

机译:Festuca的两个物种。 arundinacea和F. glaucescens-对干旱的分子反应不同而它们的生理反应相似

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摘要

Impact of photosynthetic and antioxidant capacities on drought tolerance of two closely related forage grasses, and , was deciphered. Within each species, two genotypes distinct in drought tolerance were subjected to a short-term drought, followed by a subsequent re-watering. The studies were focused on: ( ) analysis of plant physiological performance, including: water uptake, abscisic acid (ABA) content, membrane integrity, gas exchange, and relative water content in leaf tissue; ( ) analysis of plant photosynthetic capacity (chlorophyll fluorescence; gene expression, protein accumulation, and activity of selected enzymes of the Calvin cycle); and ( ) analysis of plant antioxidant capacity (reactive oxygen species (ROS) generation; gene expression, protein accumulation and activity of selected enzymes). Though, and revealed different strategies in water uptake, and partially also in ABA signaling, their physiological reactions to drought and further re-watering, were similar. On the other hand, performance of the Calvin cycle and antioxidant system differed between the analyzed species under drought and re-watering periods. A stable efficiency of the Calvin cycle in was crucial to maintain a balanced network of ROS/redox signaling, and consequently drought tolerance. The antioxidant capacity influenced mostly tolerance to stress in .
机译:破译了光合作用和抗氧化能力对两种紧密相关的牧草抗旱性的影响。在每个物种内,两种具有不同耐旱性的基因型都经历了短期干旱,随后进行了再浇水。这些研究的重点是:()分析植物的生理性能,包括:水分吸收,脱落酸(ABA)含量,膜完整性,气体交换和叶片组织中的相对水分含量; ()分析植物的光合能力(叶绿素荧光;基因表达,蛋白质积累和卡尔文循环中所选酶的活性); ()分析植物的抗氧化能力(活性氧(ROS)的产生;基因表达,蛋白质积累和所选酶的活性)。尽管并揭示了不同的吸水策略,部分还涉及ABA信号传导,但它们对干旱和进一步补水的生理反应是相似的。另一方面,在干旱和复水时期,被分析物种之间的卡尔文循环和抗氧化系统的性能有所不同。加尔文循环的稳定效率对于维持ROS /氧化还原信号的平衡网络以及因此的干旱耐受性至关重要。抗氧化能力主要影响番茄的抗逆性。

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