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Spectral reflectance indices for estimating yield and water content in spring wheat genotypes under well irrigated, water stress, and high temperature conditions.

机译:光谱反射率指数用于估算在灌溉良好,水分胁迫和高温条件下春小麦基因型的产量和含水量。

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Scope and Method of Study. Alternative methods for selecting, detecting, and identifying higher yielding genotypes in wheat breeding programs are important for obtaining major genetic gains. The water indices can be used as an indirect selection tool because of their strong association with different physiological and yield components. Diverse spring wheat advanced lines were used, which corresponded to three international trials developed by the International Maize and Wheat Improvement Center (CIMMYT); 24th Elite Spring Wheat Yield Trial (ESWYT) with 25 lines, 11th Semi-Arid Wheat Yield Trial (SAWYT) with 40 lines, and 11th High Temperature Wheat Yield Trial (HTWYT) with 18 lines. Two other experiments also employed advanced lines for testing the relationship between water indices and water content parameters (10-16 lines) and for evaluating the influence of morphological traits (20 lines) over the water indices. Several water indices and other reflectance indices were estimated at three growth stages (booting, heading, and grain filling) using a field portable spectrometer (Analytical Spectral Devices, Boulder, CO). Field plots were planted in Northwest Mexico during three growing seasons (2006, 2007, and 2007). Grain yield, biomass, and some water status parameters were determined in diverse experiments.;Findings and Conclusions. There were high correlations (phenotypic and genetic) between grain yield and the water indices showing high heritability, response to selection and correlated response, relative selection efficiency, and efficiency in selecting the higher yielding genotypes. Two water indices showed the strongest relationships (NWI-1 and NWI-3) for all the parameters determined in the well irrigated, water stress, and high temperature environments. In addition, the water indices were related with parameters commonly employed for assessing the crop water status ( i.e., water potential) during booting, anthesis and grain filling under water stress conditions. Finally, our results demonstrated that the relationship between the water indices and grain yield was affected mainly by erect leaves and spike orientation. The potential for employing the water indices for selecting high yielding lines represents a significant advantage in breeding programs because the top yielding lines can be selected in an accurate, inexpensive, and easy manner. In addition, the best high yielding lines maintained high canopy water content under water stress conditions.
机译:研究范围和方法。在小麦育种计划中选择,检测和鉴定高产基因型的替代方法对于获得重要的遗传增益很重要。水分指数可以与不同的生理和产量成分密切相关,因此可以用作间接选择工具。使用了不同的春小麦高级品系,对应于国际玉米和小麦改良中心(CIMMYT)开发的三项国际试验;具有25个品系的第24届优质春季小麦产量试验(ESWYT),具有40个品系的第11个半干旱小麦产量试验(SAWYT)和40个品系以及具有18个品系的第11个高温小麦产量试验(HTWYT)。另外两个实验还采用了先进的方法来测试水分指数与含水量参数之间的关系(10-16条线),并评估形态特征(20条线)对水分指数的影响。使用现场便携式光谱仪(Analytical Spectral Devices,Boulder,CO)在三个生长阶段(引导,抽穗和灌浆)估计了几个水分指数和其他反射指数。在三个生长季节(2006年,2007年和2007年),在墨西哥西北部种植了田地。在不同的实验中确定了谷物的产量,生物量和一些水分状况参数。谷物产量与水分指数之间具有高度的相关性(表型和遗传),水分指数显示出高的遗传力,对选择的反应和相关的反应,相对的选择效率以及选择高产基因型的效率。对于在灌溉良好,水分胁迫和高温环境下确定的所有参数,两个水分指数显示出最强的关系(NWI-1和NWI-3)。另外,水分指数与通常用于评估水分胁迫条件下的引导,花期和灌浆过程中的作物水分状况(即水势)的参数有关。最后,我们的结果表明,水分指数与谷物产量之间的关系主要受直立叶片和穗方向的影响。利用水指数选择高产系的潜力在育种计划中显示出显着优势,因为可以以准确,廉价和容易的方式选择高产系。另外,最好的高产线在水分胁迫条件下保持高冠层含水量。

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