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首页> 外文期刊>African Journal of Agricultural Research >Selection based on tolerance of wheat against terminal drought: Focus on grain yield at the presence of liquid humic fertilizer
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Selection based on tolerance of wheat against terminal drought: Focus on grain yield at the presence of liquid humic fertilizer

机译:基于小麦对极端干旱的耐受性的选择:着眼于液态腐殖质肥料存在下的谷物产量

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One of the most important strategies for wheat breeding in Mediterranean climates is to produce irrigated wheat genotypes, which are potentially capable of growing to yield satisfactorily in spite of experiencing terminal drought. On the other hand, breeders can use humic preparations as an effective stimulus for plant breeding. These natural materials are the fruit of modern humate producing technology. As a result of this, 42 bread wheat genotypes were planted in the experimental farm of Islamic Azad University, Ardabil Branch, in the form of randomized complete blocks design in 2006 to 2007 farming year in order to evaluate their tolerance against terminal drought. Based on the results of this investigation focused on the mean grain yield, genotypes 2, 6, 11, 24, 25, 35, 36 and 38 were selected, and were compared by an?in vitro?experiment for early growth characters in particular for tolerance against drought at the presence of liquid humic fertilizer. Liquid humic fertilizer increased the tolerance of genotypes number 25, 35 and 36 in this stage of wheat growth. Another experiment was conducted on three genotypes numbered 22, 25 and 35 taken from previous experiments (both?in vitro?and?in situ), together with three other genotypes (Ruzi-84, Gobustan and Saratovskaya-29) from Azerbaijan Republic in the form of factorial split plot based on randomized complete block design in 2009 to 2010. The factors included normal irrigation; normal irrigation + humic fertilizer; drought; drought + humic fertilizer. Generally, humic fertilizer increased the biological yield by 21% and grain yield by 22%. Application of humic fertilizer in drought condition put the mean grain yield in the same group as irrigation levels in drought condition. Compared to other genotypes, Gascogene showed the highest response to humic fertilizer (1 ton of grain) based on yield increase in terminal drought condition. It should be recommended that the application of humic fertilizers should aim at developing terminal drought tolerance in breeding programs.
机译:在地中海气候下,小麦育种的最重要策略之一是产生灌溉小麦基因型,尽管经历了终极干旱,但这些小麦基因型仍可能能够令人满意地成长。另一方面,育种者可以使用腐殖质制剂作为植物育种的有效刺激。这些天然材料是现代腐殖酸盐生产技术的结晶。结果,在2006至2007耕作年期间,以随机完整块设计的形式,在伊斯兰阿扎德大学Ardabil分校的试验农场中种植了42种面包小麦基因型,以评估其对终端干旱的耐受性。根据以平均谷物产量为重点的调查结果,选择了基因型2、6、11、24、25、35、36和38,并通过“体外”实验比较了其早期生长特性,特别是液体腐殖质肥料对干旱的耐受性。在小麦生长的这一阶段,液体腐殖质肥料提高了对25、35和36号基因型的耐受性。另一个实验是对来自先前实验(体外和原位)的三种基因型分别进行的22、25和35以及来自阿塞拜疆共和国的其他三种基因型(Ruzi-84,Gobustan和Saratovskaya-29)进行的。 2009年至2010年基于随机完整区组设计的阶乘分解图形式。普通灌溉+腐殖肥;干旱;干旱+腐殖质肥料。通常,腐殖肥可将生物产量提高21%,将谷物产量提高22%。在干旱条件下施用腐殖质肥料可使平均产量与干旱条件下的灌溉水平处于同一组。与其他基因型相比,基于终末干旱条件下产量的增加,Gascogene对腐殖质肥料(1吨谷物)的响应最高。应当建议,腐殖肥的施用应旨在在育种计划中发展最终的耐旱性。

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