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野生油橄榄(亚种 变种)对盐分的生理生化响应

Physiological and Biochemical Response of Wild Olive ( Subsp. var. ) to Salinity.

作者信息

Tadić Josip, Dumičić Gvozden, Veršić Bratinčević Maja, Vitko Sandra, Radić Brkanac Sandra

机构信息

Department of Plant Sciences, Institute for Adriatic Crops and Karst Reclamation, Split, Croatia.

Centre of Excellence for Biodiversity and Molecular Plant Breeding (CoE CroPBioDiv), Zagreb, Croatia.

出版信息

Front Plant Sci. 2021 Aug 30;12:712005. doi: 10.3389/fpls.2021.712005. eCollection 2021.

Abstract

In the face of climate change, water deficit and increasing soil salinity pose an even greater challenge to olive cultivation in the Mediterranean basin. Due to its tolerance to abiotic stresses, wild olive ( subsp. var. ) presents a good candidate in breeding climate-resilient olive varieties. In this study, the early response of the native Croatian wild olive genotype (WOG) to salinity was evaluated and compared with that of well-known cultivars (cv.) Leccino and Koroneiki. Potted olive plants were exposed either to 150 mM NaCl or 300 mM mannitol for 3 weeks to distinguish between the osmotic and ionic components of salt stress. To determine the impact of the plant age on salinity, 1-, 2-, and 3-year-old WOG plants were used in the study. The growth parameters of both the cultivars and WOG of different ages decreased in response to the mannitol treatment. In contrast to cv. Leccino, the NaCl treatment did not significantly affect the growth of cv. Koroneiki or WOG of any age. The contents of Na and Cl were considerably higher in the salt-treated WOG, regardless of age, compared with the cultivars. However, while both treatments significantly reduced the K content of cv. Koroneiki, that nutrient was not significantly affected in either cv. Leccino or WOG. Unlike the cultivars and older WOG, the NaCl treatment caused a significant decline of photosynthetic pigments in the 1-year-old WOG. The cultivars and WOG of different ages experienced a similar drop in the chlorophyll content under the isotonic mannitol treatment. The absence of lipid peroxidation, modulation of superoxide dismutase, and guaiacol peroxidase activity were noted in all WOG ages under both stressors. These data suggest that WOG resilience to salinity is associated with its large leaf capacity for Na and Cl accumulation, K retention, and its adaptable antioxidative mechanisms. The results are promising with regard to obtaining a new olive cultivar with better resilience to soil salinity.

摘要

面对气候变化,缺水和土壤盐渍化加剧对地中海盆地的橄榄种植构成了更大挑战。由于野生橄榄(亚种 变种)对非生物胁迫具有耐受性,它是培育适应气候变化的橄榄品种的良好候选对象。在本研究中,评估了克罗地亚本土野生橄榄基因型(WOG)对盐胁迫的早期反应,并与著名品种(cv.)莱基诺和科罗内基进行了比较。将盆栽橄榄植株暴露于150 mM NaCl或300 mM甘露醇中3周,以区分盐胁迫的渗透和离子成分。为了确定植株年龄对盐胁迫的影响,研究中使用了1年生、2年生和3年生的WOG植株。不同年龄的品种和WOG的生长参数均因甘露醇处理而下降。与cv.莱基诺不同,NaCl处理对cv.科罗内基或任何年龄的WOG的生长均无显著影响。无论年龄大小,盐处理的WOG中Na和Cl的含量均显著高于品种。然而,虽然两种处理均显著降低了cv.科罗内基的K含量,但该养分在cv.莱基诺或WOG中均未受到显著影响。与品种和较老的WOG不同,NaCl处理导致1年生WOG的光合色素显著下降。在等渗甘露醇处理下,不同年龄的品种和WOG的叶绿素含量均出现类似下降。在两种胁迫条件下,所有年龄的WOG均未出现脂质过氧化、超氧化物歧化酶和愈创木酚过氧化物酶活性的调节。这些数据表明,WOG对盐胁迫的耐受性与其叶片对Na和Cl的大量积累能力、K的保留能力以及其适应性抗氧化机制有关。这些结果对于获得对土壤盐渍化具有更好耐受性的新橄榄品种很有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7213/8437259/652116cdb5f5/fpls-12-712005-g0001.jpg

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