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Responses of the mangroves Avicennia marina and Bruguiera gymnorrhiza to oil contamination

机译:红树林Avicennia marina和Bruguiera Gymnorrhiza对油污的响应

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The effects of bunker fuel oil on morphological and physiological responses of Avicennia marina and Bruguiera gymnorrhiza were investigated in glasshouse and field experiments. In the glasshouse study, 15-month-old seedlings of A. marina were subjected to oiling or debarking treatments for 6 months. Oiling or debarking of a 5 cm ring of the basal portion of the stem, alone and in combination, reduced leaf CO2 exchange by over 50% and resulted in the production of adventitious roots immediately above the debarked and/or oiled stem 8-12 weeks after the commencement of treatments. In the field study, sediment oiling at a single dose of 5 l m(-2) of A. marina and B. gymnorrhiza trees reduced electron transport rate (ETR) through Photosystem II (PSII) and PSII quantum yield. Oiling also reduced the photochemical efficiency of PSII (F-v/i(m)) in B. gymnorrhiza, but not in A. marina. After 15 weeks of oiling, adventitious roots developed at the base of the stem in A. marina, but not in B. gymnorrhiza. Naturally occurring A. marina seedlings with adventitious roots exhibited lower leaf CO2 exchange rates, photochemical efficiency of PSII and leaf chlorophyll content than similar seedlings without these roots. These results indicate that bunker fuel oil adversely affects photosynthetic performance of A. marina and B. gymnorrhiza mangroves. A. marina responds to oiling by producing adventitious roots at the base of the stem. Adventitious root production at the base of the stem may be a useful biological indicator of oil or other toxic pollutants in A. marina.
机译:在温室和田间试验中研究了船用燃料油对Avicennia marina和Bruguieragynorrhiza的形态和生理响应的影响。在温室研究中,对15个月大的滨海曲霉幼苗进行了上油或去皮处理6个月。单独或组合对茎基部部分的5 cm环上油或剥皮,可使叶片二氧化碳交换减少50%以上,并在剥皮和/或上油的茎上方紧接8-12周产生不定根开始治疗后。在野外研究中,在单剂量5 l m(-2)的滨海假单胞菌和裸露双歧杆菌树上进行沉积物上油会降低通过光系统II(PSII)的电子传输速率(ETR)和PSII的量子产率。上油还降低了裸草油菜中PSII(F-v / i(m))的光化学效率,但在滨海菜中却没有。上油15周后,不定根在A. marina茎的基部发育,而在B. Gymnorrhiza中则不然。与不带根的类似幼苗相比,具有不定根的自然存在的滨海幼苗显示出较低的叶片CO2交换速率,PSII的光化学效率和叶绿素含量。这些结果表明,船用燃料油不利地影响了滨海曲霉和裸枝油菜红树林的光合性能。滨海曲霉通过在茎的根部产生不定根来响应上油。茎基部不定根的产生可能是滨海曲霉中油或其他有毒污染物的有用生物学指标。

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