首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Do plants respond and recover from a combination of drought and heatwave in the same manner under adequate and deprived soil nutrient conditions?
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Do plants respond and recover from a combination of drought and heatwave in the same manner under adequate and deprived soil nutrient conditions?

机译:在充足和贫困的土壤营养条件下,植物是否以相同的方式从干旱和热浪的组合中回应和恢复?

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摘要

Extreme climatic conditions with extended drought periods and heatwaves are predicted to increase in frequency and severity in many regions of the world. Aside from this, other abiotic stress factors such as nutrient deficiency could pose a serious problem to plants when combined with other stressors resulting in more complex underpinning mechanisms. In the present study, we evaluated the response of Brassica napus to single and combined impacts of drought and heatwave (HW) under adequate or deprived (N-A and N-D) soil nutrient conditions. In addition, to get better insights in the plant response to combined stress, a post-stress period, pointing out a degree of the recovery after the cessation of stress, was also included. The results showed a different manner of single drought and heatwave action. The adverse effect of drought on leaf gas exchange was lagged on the growth and became more apparent only after recovery period with no obvious difference between different nutrient levels. Contrary, the growth response of nutrient-deprived plants to single HW was weak and in most cases, insignificant. Heatwave applied simultaneously with drought highly exacerbated the adverse effect of drought both under N-A and N-D conditions. Combined drought and heatwave stress resulted in the sharper decline of A(sat) and it was attributed to both stomata] and non-stomatal limitations. Interestingly, plants underwent combined drought and HW treatment under N-D conditions showed better aboveground growth recovery, compared to those grown under N-A conditions, while displayed far more diminished photochemistry of photosystem II and badly disturbed the C/N balance. This discrepancy came from the fact that soil nutrient deficiency, by itself, evoked strong stress under control climate conditions resulting in a dramatically slower aboveground growth of nutrient-deprived plant. In turn, although combined drought and HW stress had similar effect on the aboveground growth either under N-A or N-D conditions, the recovery of later one was better. These results highlight the necessity to look at plants' performance under unfavorable environmental conditions beyond the actual event, since it can be depended not only on the duration of exposure but also on the legacy effect after treatment.
机译:预计延长干旱时期和热浪的极端气候条件将增加世界许多地区的频率和严重程度。除此之外,诸如营养缺乏等其他非生物应激因素可能在与其他压力源组合时对植物构成严重问题,导致更复杂的内宁机制。在本研究中,我们评估了足够或剥夺(N-A和N-D)土壤营养条件下干旱和热波(HW)对干旱和热波(HW)的单一和综合影响的响应。此外,还包括在植物响应植物响应的洞察力期间,在应力后,在应力停止后恢复程度,也包括在内。结果表明了不同的单干旱和热波作用方式。干旱对叶片气体交换的不利影响滞后于生长,并且仅在恢复期后变得更加明显,不同的营养水平无明显差异。相反,营养不良植物对单次HW的生长反应弱,在大多数情况下,微不足道。热浪同时用干旱施用,高度加剧了在N-A和N-D条件下干旱的不利影响。合并的干旱和热波胁迫导致(SAT)的锐利衰退,它归因于气孔和非气孔局限性。有趣的是,与在N-A条件下的种植情况下,植物接受了植物在N-D条件下进行了较好的地面增长恢复,同时显示了更高的光学化学性,并严重干扰C / N平衡。这种差异来自土壤养分缺乏,本身诱发了控制气候条件下的强烈应力,导致营养植物营养不良的植物的地上变慢剧烈增长。反过来,尽管在N-A或N-D条件下对地上增长的综合干旱和HW压力具有类似的影响,但稍后的回收更好。这些结果突出了在不利的环境条件下突出植物的表现,因为它不仅可以依赖于曝光时间而且在治疗后的遗产效应上依赖。

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