A暴露一个月后大菱鲆组织对锌的吸收趋势

Siti Noor Syuhada Muhammad Amin, Azman Azid, S. M. Aziz, Salmiah Jamal Mat Rosid, Azma Abdul Malek, Nrulhuda Mohammad Yusoff
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引用次数: 1

摘要

大闸蟹(Tachypleus gigas)是马来西亚半岛发现的一种马蹄蟹。周围水中的金属会积聚到马蹄蟹的组织中。本研究测定了马蹄蟹连续接触金属后对锌(Zn)的吸收。在柔佛州的葛朗山和彭亨的雪亭,分别在对照池和锌处理池(20 mg/L)中饲养1个月,并进行曝气。在不同的时间间隔(第0天、第10天、第20天、第30天)对锌处理池的12只马蹄蟹和对照池的6只马蹄蟹进行了盖、鳃、螯、腿、消化道、肝胰腺和甲壳等组织的解剖。这些组织冷冻干燥,并在200℃的热板上用65%的硝酸消化。采用电感耦合等离子体-光学发射光谱法(ICP-OES)测定Zn含量。在不同组织中测定不同浓度的锌。在连续暴露30 d后,大菱鲆组织中锌浓度升高。从第0天到第30天,组织吸收锌的增加模式是明显的。鳃部金属积累浓度最高,为6398.60±909.51µg/g (dw)。因此,证实了银鱼对Zn的吸收,因此它有可能成为检测周围水体中金属污染的合适的生物指标(特别是它们的鳃)。
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A A Trend of Zinc Uptake into Tachypleus Gigas Tissues After a Month of Exposure
Tachypleus gigas is one of the species of horseshoe crabs found in Peninsular Malaysia. Metals in the surrounding water can accumulate into horseshoe crab tissues. This study was conducted to determine zinc (Zn) uptake into horseshoe crab tissues after continuous exposure to the metals. T. gigas that were sampled from Gelang Patah, Johor and Cherating, Pahang were reared in the control tank and Zn treatment tank (20 mg/L) with aeration supply for a month. Twelve horseshoe crabs from Zn treatment tank and 6 horseshoe crabs from control tank were dissected for tissues namely operculum, gills, chelicerae, leg, digestive tract, hepatopancreas and carapace in different intervals (Day 0, Day 10, Day 20 and Day 30). These tissues were freeze dried and digested with 65% nitric acid on a hotplate at 200oC. Zn were measured using Inductively Coupled Plasma - Optical Emission Spectrometry (ICP-OES). Different concentrations of Zn were measured in different tissues. The tissues of T. gigas showed increased concentrations of Zn by following exposure in 30 days. The increasing pattern of Zn uptake into the tissues from day 0- 30 are clear. The gills showed highest concentrations of metals accumulation with the value of 6398.60 ± 909.51 µg/g (dw). Thus, uptake of Zn into T. gigas was confirmed, therefore it has the potential to become the suitable bio-indicator (especially their gills) to detect the metal pollution in the surrounding water.
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