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Growth and yield of safflower genotypes grown under irrigated and non-irrigated conditions in a highland environment.

机译:在高原环境下,在灌溉和非灌溉条件下生长的红花基因型的生长和产量。

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Producers in highland and semiarid regions have difficulty in increasing diversity in crop rotations due to unfavorable conditions imposed by cool temperatures, inadequate rainfall, and shorter growing periods. In such conditions, safflower appears as a promising alternative because it is cold and drought tolerant. The objective of this study was to determine the responses of the hybrid and open-pollinated safflower genotypes to irrigated and non-irrigated conditions in a highland environment. For this reason, the field research was performed during the years of 2001 and 2002 in eastern Anatolia, Turkey. According to the results of the study, safflower genotypes tested were well adapted to the cool and short-season conditions in this region. The response of seed yield to genotype varied depending on the growing seasons. The non-irrigated plants produced nearly the same seed yield as irrigated ones. Average seed yields of safflower genotypes tested were 914.3 and 928.0 kg/ha in 2001, and 1143.6 and 1139.9 kg/ha in 2002 years for irrigated and non-irrigated experiments, respectively. In general, the genotypes differed in all of the investigated traits. In both irrigated and non-irrigated experiments genotype x year interactions were very significant for all parameters. This research shows that in semiarid and highland environments safflower has a big potential value as an oilseed crop under dryland conditions.
机译:高地和半干旱地区的生产者由于低温,降雨不足和生长周期短等不利条件而难以增加作物轮作的多样性。在这种情况下,红花似乎是有前途的替代品,因为它耐寒和耐旱。这项研究的目的是确定高地环境中杂交和开放授粉的红花基因型对灌溉和非灌溉条件的响应。因此,在2001年和2002年期间在土耳其的安纳托利亚东部进行了现场研究。根据研究结果,测试的红花基因型非常适合该地区的凉爽和短季节条件。种子产量对基因型的响应随生长季节而变化。非灌溉植物的种子产量几乎与灌溉植物相同。对于灌溉和非灌溉试验,2001年测试的红花基因型的平均种子产量分别为914.3和928.0 kg / ha,在2002年分别为1143.6和1139.9 kg / ha。通常,所有调查的性状的基因型都不同。在灌溉和非灌溉实验中,基因型x年交互作用对于所有参数都非常重要。这项研究表明,在半干旱和高原环境下,红花作为旱地条件下的油料作物具有很大的潜在价值。

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