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首页> 外文期刊>Journal of Plant Nutrition >Identifying superior drought-tolerant olive genotypes and their biochemical and some physiological responses to various irrigation levels
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Identifying superior drought-tolerant olive genotypes and their biochemical and some physiological responses to various irrigation levels

机译:鉴定各种灌溉水平的卓越的耐旱橄榄基因型及其生化和一些生理反应

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摘要

Drought is currently one of the most severe abiotic factors limiting agricultural production. The high rates of population growth and global warming are expected to further exacerbate the threat of drought, especially in areas with a semi-arid climate as in the Middle East region. Selecting genotypes for improved drought tolerance has long been of interest for those involved in horticulture. The present research investigated the reaction of seven 10-year-old olive genotypes to drought stress in Dallaho Olive Research Station, Iran. To determine the reaction of genotypes to drought stress, physiological and biochemical characteristics, fruit and oil yield, and water use efficiency were measured. The results showed that different genotypes react differently to drought stress while drought decreased vegetative and reproductive traits such as shoot length and diameter, relative water content of the leaves, Ca and K percentage, and fruit yield. Finally, Dd(1) and Bn-6 showed the highest oil and fruit yield per hectare and the highest water use efficiency. In addition, Bn-3 had a favorable status in most of the measured parameters. So, they can be suggested as the genotypes that are tolerant of drought stress. The results also showed that olive yield and irrigation management can be improved by applying proper irrigation levels and using tolerant genotypes.
机译:干旱目前是限制农业生产最严重的非生物因素之一。预计人口增长和全球变暖的高率将进一步加剧干旱的威胁,特别是在中东地区半干旱气候的地区。选择改善的干旱耐受性的基因型对于参与园艺的人来说是令人兴趣的。本研究研究了七名10岁的橄榄基因型对伊朗达拉霍橄榄研究站干旱胁迫的反应。为了确定基因型对干旱胁迫的反应,测量生理和生物化学特性,水果和油产量和水使用效率。结果表明,不同的基因型对干旱应激不同,同时干旱降低营养和生殖性状,例如枝条长度和直径,叶片的相对含水量,Ca和k百分比,以及果产率。最后,DD(1)和BN-6显示每公顷的最高油和水果产量和最高的用水效率。此外,BN-3在大多数测量参数中具有良好的状态。因此,可以建议它们作为耐受干旱胁迫的基因型。结果还表明,通过施加适当的灌溉水平并使用耐受性基因型,可以提高橄榄产率和灌溉管理。

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