首页> 外文期刊>Frontiers in Plant Science >High temperature and vapor pressure deficit aggravate architectural effects but ameliorate non-architectural effects of salinity on dry mass production of tomato
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High temperature and vapor pressure deficit aggravate architectural effects but ameliorate non-architectural effects of salinity on dry mass production of tomato

机译:高温和蒸气压不足会加剧建筑效果,但改善盐度对番茄干量生产的非建筑效果

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Tomato ( Solanum lycopersicum L.) is an important vegetable crop and often cultivated in regions exposed to salinity and high temperatures (HT) which change plant architecture, decrease canopy light interception and disturb physiological functions. However, the long-term effects of salinity and HT combination (S+HT) on plant growth are still unclear. A dynamic functional-structural plant model (FSPM) of tomato was parameterized and evaluated for different levels of S+HT combinations. The evaluated model was used to quantify the contributions of morphological changes (architectural effects) and physiological disturbances (non-architectural effects) on the reduction of shoot dry mass under S+HT. The model predicted architectural variables with high accuracy (>85%), which ensured the reliability of the model analyses. HT enhanced architectural effects but reduced non-architectural effects of salinity on dry mass production. The stronger architectural effects of salinity under HT could not be counterbalanced by the smaller non-architectural effects. Therefore, long-term influences of HT on shoot dry mass under salinity were negative at the whole plant level. Our model analysis highlights the importance of plant architecture at canopy level in studying the plant responses to the environments and shows the merits of dynamic FSPMs as heuristic tools.
机译:番茄(Solanum lycopersicum L.)是一种重要的蔬菜作物,通常在盐分和高温(HT)高的地区种植,这会改变植物的结构,减少冠层的光截获并破坏生理功能。然而,盐度和HT组合(S + HT)对植物生长的长期影响仍不清楚。对番茄的动态功能结构植物模型(FSPM)进行参数化,并评估不同水平的S + HT组合。评估模型用于量化形态变化(建筑效应)和生理扰动(非建筑效应)对S + HT下茎干质量减少的贡献。该模型能够以较高的准确度(> 85%)预测架构变量,从而确保了模型分析的可靠性。高温增强了建筑效果,但降低了盐度对干法批量生产的非建筑效果。较小的非建筑效应无法抵消盐分下盐度较强的建筑效应。因此,在整个植物水平上,盐分下HT对茎干质量的长期影响是负面的。我们的模型分析突出了冠层级植物结构在研究植物对环境响应方面的重要性,并展示了动态FSPM作为启发式工具的优点。

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