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Durum Wheat Breeding: In the Heat of the Senegal River

机译:硬粒小麦育种:塞内加尔河的高温

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Global warming may cause +4 °C temperature increases before the end of this century. Heat tolerant bred-germplasm remains the most promising method to ensure farm productivity under this scenario. A global set of 384 durum wheat accessions were exposed to very high temperatures occurring along the Senegal River at two sites for two years. The goal was to identify germplasm with enhanced tolerance to heat. There was significant variation for all traits. The genetic (G) effect accounted for 15% of the total variation, while the genotype by environment interaction (G × E) reached 25%. A selection index that combines G and a G × E wide adaptation index was used to identify stable high yielding germplasm. Forty-eight accessions had a stable grain yield above the average (2.7 t ha ?1 ), with the three top lines above 3.5 t ha ?1 . Flowering time, spike fertility and harvest index were the most critical traits for heat tolerance, while 1000-kernel weight and spike density only had environment-specific effects. Testing of six subpopulations for grain yield across heat-prone sites revealed an even distribution among clusters, thus showing the potential of this panel for dissecting heat tolerance via association genetics.
机译:全球变暖可能导致本世纪末温度升高+4°C。在这种情况下,耐热种质仍然是确保农场生产力的最有前途的方法。塞内加尔河沿岸两个地点的全球高温384种硬质小麦品系暴露了两年。目的是鉴定对热耐受性增强的种质。所有性状都有显着差异。遗传(G)效应占总变异的> 15%,而环境相互作用(G×E)的基因型达到25%。结合G和G×E宽适应指数的选择指数用于鉴定稳定的高产种质。 48个种质的籽粒单产稳定在平均水平之上(2.7 t ha-1),三个顶线均高于3.5 t ha-1。开花时间,穗肥力和收获指数是耐热性的最关键特征,而1000粒重和穗密度仅对环境有特定影响。对6个亚群进行测试的结果表明,整个热易发地区的谷物产量均呈均匀分布,从而显示出该面板通过关联遗传学分析耐热性的潜力。

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