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Genotype x year interaction and broad-sense heritability of architectural characteristics in rose bush

机译:基因型x年交互作用和玫瑰丛建筑特征的广义遗传力

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The effect of genotype factors, year and their interaction was assessed on six architectural variables of eight cultivars of rose bush. Plants were grown in pots in a greenhouse in the spring of 2011 and 2012, two highly contrasted years in terms of the quantity of cumulative radiation, with a relative deviation (for 2012 compared to 2011) ranging from -24.6% (April) to +13.7% (March). Their architecture was digitized at two observation scales, the plant and the axis. Highly significant genotype (G) and year (Y) effects were revealed for all of the variables measured, as well as a GxY interaction. Concerning the year effect, it was significantly higher in 2012 and for all of the variables measured. The G x Y interaction was due to (i) different genotype groupings according to year, (ii) difference response amplitudes between years according to genotype. Broad-sense heritability was calculated for each of these variables. It was moderate to high, ranging from 48% for the length of long axes to 98% for the number of metamers on long axes.
机译:基因型因素,年和它们之间的相互作用的影响评估了玫瑰灌木丛的八个品种的六个建筑变量。在2011年春季和2012年春季,温室中的花盆中种植了植物,就累积辐射量而言,这两个年份形成了鲜明对比,相对偏差(2012年与2011年相比)在-24.6%(四月)至+ 13.7%(3月)。他们的建筑以植物和轴心两个观测尺度进行了数字化。对于所有测得的变量以及GxY相互作用,揭示了高度显着的基因型(G)和年份(Y)效应。在年度影响方面,2012年以及所有测得的变量都明显更高。 G x Y交互作用是由于(i)根据年份的不同基因型分组,(ii)根据基因型的不同年间响应幅度的差异。为这些变量中的每一个计算了广义的遗传力。它是中等到高的,范围从长轴长度的48%到长轴上的同分异构体数量的98%。

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