Challenges of Salinity Intrusion and Drought Stress on Olive Tree Cultivation on Mljet Island

Plants Pub Date : 2024-09-11 DOI:10.3390/plants13182549
Josip Tadić, Gvozden Dumičić, Maja Veršić Bratinčević, Sandra Vitko, Sandra Radić Brkanac
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Abstract

Understanding genotype-specific responses to environmental stressors is vital for developing resilience strategies that ensure sustainable olive cultivation and productivity. In this work, cultivar ‘Oblica’ and several olive genotypes from the island of Mljet (Croatia) were exposed to short-term (21 days) salinity and drought treatments. In contrast to other olive genotypes, genotype M29 as well as cultivar ‘Oblica’ managed to maintain growth and chlorophyll a levels under salinity stress to the same level as the control. Drought, however, significantly reduced the growth parameters in all olive trees. Cultivar ‘Oblica’ accumulated the greatest amount of Na+ ions in the leaves compared to olive genotypes from the island of Mljet, demonstrating superior resistance by translocating Na+ to leaf vacuoles. The observed reduction in K+ content in the roots of olive trees under all treatments suggests a generalized stress response. On the other hand, effective Ca2+ uptake has been identified as a crucial energy-saving strategy that olive trees use to cope with brief periods of salinity and drought. The proline content and activities of superoxide dismutase (SOD) and guaiacol peroxidase (GPOX) varied among the olive trees, highlighting the importance of antioxidative capacities and stress adaptation mechanisms. According to the obtained results, stress-resistant olive genotypes like ‘Oblica’ and M29 show potential for breeding resilient varieties.
盐分入侵和干旱对姆列特岛橄榄树栽培的挑战
了解基因型对环境胁迫的特异性反应对于制定确保可持续橄榄种植和生产力的恢复策略至关重要。在这项研究中,来自姆列特岛(克罗地亚)的栽培品种 "Oblica "和几种橄榄基因型受到了短期(21 天)盐碱和干旱处理。与其他橄榄基因型不同的是,基因型 M29 和栽培品种 "Oblica "在盐分胁迫下仍能保持与对照相同的生长和叶绿素 a 水平。然而,干旱大大降低了所有橄榄树的生长参数。与来自姆列特岛的橄榄基因型相比,栽培品种 "Oblica "在叶片中积累了最多的 Na+离子,通过将 Na+转运到叶片液泡,表现出卓越的抗性。在所有处理下观察到的橄榄树根部 K+ 含量的减少表明这是一种普遍的应激反应。另一方面,有效的 Ca2+ 吸收被认为是橄榄树用来应对短暂盐碱和干旱的重要节能策略。不同橄榄树的脯氨酸含量以及超氧化物歧化酶(SOD)和愈创木酚过氧化物酶(GPOX)的活性各不相同,这凸显了抗氧化能力和应激适应机制的重要性。研究结果表明,"Oblica "和 M29 等抗逆橄榄基因型具有培育抗逆品种的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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