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首页> 外文期刊>Plant and cell physiology >Photosynthetic Responses to High Temperature and Strong Light Suggest Potential Post-flowering Drought Tolerance of Sorghum Japanese Landrace Takakibi
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Photosynthetic Responses to High Temperature and Strong Light Suggest Potential Post-flowering Drought Tolerance of Sorghum Japanese Landrace Takakibi

机译:高温和强光的光合反应表明潜在的开花后风水耐受性日本兰德斯塔克比比

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摘要

Sorghum [Sorghum bicolor (L.) Moench] is a C-4 crop known to be adaptable to harsh environments such as those under high temperature and water deficit. In this study, we focused on a Japanese sorghum landrace Takakibi (NOG) and employed chlorophyll fluorescence measurements to assess its response to environmental stress. Comparison of photosynthetic rate evaluated using two parameters (effective quantum yield and electron transfer rate) indicated that NOG showed less activity than BTx623 in the pre-flowering stage, which was consistent with the higher susceptibility of NOG seedlings to drought than BTx623. The observed differences in photosynthetic activity between the two cultivars were detectable without drought conditions on days with high temperature and strong light. Interestingly, the photosynthetic activity of NOG leaves in stress conditions increased soon after heading, and the trend was similar to that in BTx642, a well-characterized post-flowering drought-tolerant cultivar. In contrast, BTx623 showed a gradual decline in photosynthetic rate. Thus, we inferred that Japanese Takakibi has the potential to show pre-flowering drought susceptibility and post-flowering drought tolerance, through which it adapts to local climates with high temperature and strong light at harvest.
机译:高粱[高粱双子(L.)Moench]是一种C-4作物,可适应诸如高温和水赤字的恶劣环境。在这项研究中,我们专注于日本高粱Landrace Takakibi(Nog),并使用叶绿素荧光测量来评估其对环境压力的反应。使用两个参数评估的光合速率的比较(有效量子产率和电子转移率)表明Nog在预开花阶段中的BTX623显示较少的活性,这与Nog幼苗对旱化的较高易感性一致而不是BTX623。观察到两种品种之间的光合活性的差异在没有高温和强光的天数的情况下可检测到两个品种之间的光合活性。有趣的是,在标题后,Nog叶片在压力条件下的光合作用增加,趋势与BTX642中的趋势相似,其特征在于开花后耐旱栽培品种。相比之下,BTX623在光合速率下逐渐下降。因此,我们推断日本Takakibi有可能显示出开花前的干旱易感性和开花后的耐旱性,它通过其适应众多气候,高温和收获的强光。

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