Isolation and Morphological Characterization of Lead Tolerant Bacteria Associated with Perna viridis

Yoshua Mario Sumbodo, Fiona Aqhila Dewi, Okti Hajeng Kristiadi, Annisa Nur Ayuningtyas, Heksa Raihan, Muhammad Zainuri, Hermin Pancasakti Kusumaningrum
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Abstract

Lead is a heavy metal contamination that is released into sea waters and cannot be decomposed so it accumulation and magnification along the food chain. Efforts to explore bacteria that have tolerance and have the potential to become lead reduction agents are a strategic step in remediating lead contamination. One mechanism for lead bioremediation by bioaccumulation is to utilize metallothionein protein which can potentially be obtained from isolates of green mussel associated bacteria. Bacterial isolates associated with green mussels were obtained by isolating the bacteria and testing the tolerance of the bacterial isolates using Luria Bertani media which was added with Pb(NO3)2 at a concentration of 100 ppm and its multiples to determine their tolerance to lead. The bacterial isolates obtained were characterized based on colony and cell morphology. The results of the lead resistance test carried out showed that 11 bacterial isolates were obtained and 3 bacterial isolates had tolerance to lead with a lead concentration of 400 ppm. Bacterial isolates that are tolerant to lead show changes in cell morphology to reduce the impact of exposure to lead which has a lethal effect, because the resulting decrease in cell surface area can reduce lead absorption.
绿枝Perna viridis耐铅细菌的分离与形态鉴定
铅是一种重金属污染,被释放到海水中,无法分解,因此它会沿着食物链积累和放大。努力探索具有耐受性并有可能成为铅减少剂的细菌是修复铅污染的战略步骤。利用从青贻贝相关菌分离物中获得的金属硫蛋白是铅生物富集修复的一种机制。通过对青贻贝相关细菌进行分离,并采用添加浓度为100 ppm的Pb(NO3)2的Luria Bertani培养基及其倍数对其进行耐受性测试,确定其对铅的耐受性。根据菌落和细胞形态对分离得到的细菌进行了鉴定。结果表明,在铅浓度为400ppm时,获得了11株菌株,其中3株菌株对铅具有耐受性。对铅具有耐受性的细菌分离株表现出细胞形态的变化,以减少暴露于具有致命影响的铅的影响,因为由此导致的细胞表面积的减少可以减少铅的吸收。
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