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Quantifying sugarcane cultivar differences in tiller and stalk phenology: identifying traits suited to crop model-assisted breeding

机译:定量甘蔗品种在分蘖和茎秆上的差异:识别适合作物辅助育种的特征

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The "Canegro" sugarcane (Saccharum spp.) model uses cultivar trait coefficients to simulate crop growth. The primary objective of this study was to quantify the cultivar trait values for some tillering and stalk traits for a diverse range of cultivars. An additional objective was to determine the stability and heritability of these traits across environments and crop stages to assess their potential contribution to model-assisted breeding. A total of 12 diverse cultivars were evaluated in a rainfed and an irrigated environment across two crops (plant cane and first ratoon). The traits peak tiller population (PTP), thermal time to peak tiller population (TTPP), final population (FPOP), tiller survival percentage (TSP) and stalk elongation rate (SER)were derived from in-season measurements. The highly significant (p < 0.001) effect of cultivar was larger than the cultivar x ratoon and cultivar x site effects for all traits studied. The traits PTP, FPOP and SER showed strong cultivar rank correlations between sites, crops, and crops within sites, suggesting that they can be quantified per cultivar by single-site and single-crop experiments. These traits had heritability estimates of 0.70 (PTP), 0.97 (FPOP), and 0.72 (SER). Hence, these traits were identified as good candidates for model-assisted breeding. Some cultivars showed consistent rankings for certain traits and were identified as ideal indicator cultivars for future characterization studies. The cultivar trait values determined here will beused to calibrate the crop model. The range of values for these traits will also contribute to model-wise exploration of genotype x environment interactions and model-assisted breeding efforts.
机译:“Canegro”甘蔗(Saccharum SPP。)模型使用栽培种质系数来模拟作物生长。本研究的主要目的是量化一些分蘖和茎状性状的品种特征,以实现各种品种。额外目标是确定这些特征的稳定性和可遗传性跨环境和作物阶段,以评估其对模型辅助育种的潜在贡献。在两种作物(植物蔗和第一率)的雨中和灌溉环境中,共评估了12种不同的12种不同的品种。峰值分蘖人口(PTP),峰值分蘖群(TTPP),最终群体(FPOP),分蘖存活百分比(TSP)和茎伸长率(SER)的特性峰值分蘖人口(PTP),源自季节性测量。品种的强烈显着(P <0.001)效应大于品种X零率和品种X现场效应,对所研究的所有特征。 Traits PTP,FPOP和Ser在位点内的部位,作物和作物之间表现出强大的品种等级相关性,表明它们可以通过单现场和单一作物实验每种品种量化。这些特征具有0.70(PTP),0.97(FPOP)和0.72(SER)的遗传性估算。因此,这些特征被确定为模型辅助育种的良好候选者。一些品种对某些性状显示一致的排名,并被确定为未来表征研究的理想指标品种。这里确定的品种特征值将被聘为校准作物模型。这些特征的值范围也将有助于模型 - 明智的基因型X环境相互作用和模型辅助育种努力。

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