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Impact of quarries emissions on the leaf morpho-anatomy of three olive (Olea europea L) cultivars grown in Palestine

机译:采石场排放对在巴勒斯坦种植的三种橄榄(欧洲油橄榄)品种叶片形态解剖的影响

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To investigate the effects of quarries emissions on the leaf morpho-anatomy of Romi, Nabali and K18 olive cultivars in Taffouh village (Palestine), one set of olive cultivars of two-years old was cultivated close to quarries while the control set was cultivated almost 4 km from quarries. The morphology of six month-old leaves was examined. Leaf segments were fixed in compound fixative of formaldehyde, acetic acid and 70% ethanol (FAA). The segments were then embedded in Paraplast plus and 5 m thick sections were stained with safranin and fast green. A reduction in trichome density was evident for the three cultivars in response to exposure to quarries emission, with high density in the abaxial epidermis. Moreover, the abaxial epidermis of the three cultivars possessed elaborated and well-developed trichomes. The leaves of Romi cultivar exhibit increase in all leaf components except the adaxial epidermis while Nabali cultivar exhibited a reduction in all leaf components. Nevertheless, K18 cultivar exhibited a reduction only in palisade and spongy layers due to exposure to quarries pollutions. In conclusion, quarries emissions led to condensed palisade and spongy cells in all cultivars. In addition, Romi cultivar showed a variegated increase in all morpho-anatomical parameters concomitant with increased sclerophylly of leaves following their exposure to quarries emissions. This cultivar proved to be the most resistant to quarries stress which implies it is well suited for olive production.
机译:为了研究采石场排放对塔法村(巴勒斯坦)Romi,Nabali和K18橄榄品种的叶片形态解剖的影响,在采石场附近种植了一套两岁的橄榄栽培种,而对照则几乎被种植。距采石场4公里。检查了六个月大的叶子的形态。叶段固定在甲醛,乙酸和70%乙醇(FAA)的复合固定剂中。然后将这些片段包埋在Paraplast plus中,并用番红花和快干绿色将5 m厚的切片染色。暴露于采石场,这三个品种的毛状体密度明显降低,其背面表皮的密度很高。此外,三个品种的背面表皮具有精心设计和发达的毛状体。罗米(Romi)品种的叶片除表皮表皮外的所有叶片成分均增加,而纳巴里(Nabali)品种的所有叶片成分均减少。然而,由于暴露于采石场污染,K18品种仅在栅栏和海绵层中表现出减少。总之,采石场的排放导致所有品种的栅栏和海绵状细胞凝缩。此外,罗米(Romi)品种在暴露于采石场后,其所有形态-解剖学参数均有不同程度的增加,并伴随着叶片硬叶菌的增加。事实证明,该品种对采石场的压力最强,这表明它非常适合橄榄生产。

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