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首页> 外文期刊>Crop science >High-Throughput Sensing of Aerial Biomass and Above-Ground Nitrogen Uptake in the Vegetative Stage of Well-Watered and Drought Stressed Tropical Maize Hybrids
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High-Throughput Sensing of Aerial Biomass and Above-Ground Nitrogen Uptake in the Vegetative Stage of Well-Watered and Drought Stressed Tropical Maize Hybrids

机译:水分充足和干旱胁迫的热带玉米杂交种营养期的空中生物量和地上氮吸收的高通量传感

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The measurement of agronomical parameters of maize (Zea mays L.) indicating its biomass and nutritional status provides important information to understand its responses to the environment. The detection of significant differences among maize hybrids would be very useful in plant breeding programs screening for N uptake and drought tolerance. The aim of the study was to assess the efficacy of high-throughput sensing measurements to determine the aerial biomass and N uptake of tropical maize hybrids grown in well-watered (control) and drought stress treatments. Experiments were conducted at the National Corn and Sorghum Research Center in Thailand in the years 2007 through 2009. High-throughput canopy reflectance measurements using spectral indices from the literature and newly developed for this study were performed regularly along with biomass samplings until flowering. The relationship of the spectral indices with each of aerial biomass and N uptake had coefficients of determination of up to 0.8 and were also able to distinguish between drought stress levels. Through most sampling dates and stress levels, varieties were similarly classified in their amount of aerial biomass and N uptake by destructive and noncontacting measurements. Our results support the possibility of incorporating these methods in the development of high-throughput phenotyping techniques that could prove to be potentially useful for future plant breeding.
机译:玉米(Zea mays L.)农艺参数的测量表明其生物量和营养状况为了解其对环境的响应提供了重要信息。玉米杂交种之间显着差异的检测对于植物育种计划中氮素吸收和耐旱性的筛选将非常有用。这项研究的目的是评估高通量传感测量方法的有效性,以确定在灌溉充足(干旱)和干旱胁迫条件下生长的热带玉米杂交种的空中生物量和氮吸收量。在2007年至2009年期间,在泰国国家玉米和高粱研究中心进行了实验。利用文献中的光谱指数对高通量的冠层反射率进行了测量,并针对生物量取样定期进行了这项研究的最新进展,直到开花为止。光谱指数与空中生物量和氮吸收量的关系具有高达0.8的测定系数,并且还能够区分干旱胁迫水平。在大多数采样日期和胁迫水平下,通过破坏性和非接触性测量将品种的空中生物量和氮吸收量进行相似的分类。我们的结果支持在开发高通量表型技术中纳入这些方法的可能性,这些技术可能被证明对将来的植物育种很有用。

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