Evaluating the Biodeterioration Enzymatic Activities of Fungal Contamination Isolated from Some Ancient Yemeni Mummies Preserved in the National Museum

Author:

Naji Khalid Mohammed1,Abdullah Qais Yusuf M.2,AL-Zaqri Aida Qaseem M.3,Alghalibi Saeed M.2

Affiliation:

1. Department of Chemistry, Faculty of Science, Sana’a University, Sana’a, Yemen

2. Department of Biology, Faculty of Science, Sana’a University, Sana’a, Yemen

3. Department of Archaeology, Faculty of Art, Sana’a University, Sana’a, Yemen

Abstract

Sophisticated mummification using chemical preservation was prevalent in ancient Yemeni civilization as noted in the 4th century B.C. mummies of the National Museum of Yemen, Sana’a, used in this study. Five of these mummies were used to evaluate hydrolytic enzymes produced as a result of fungal contamination. Forty-seven fungal species were isolated, thereby reflecting a high degree of contamination which may have resulted from the poor ventilation and preservation system.Aspergilluswas the most common genus isolated (48.9%). Fifteen isolates exhibited ability to produce cellulase (EC; 3.2.1.4),Aspergillus candidusbeing the highest cellulose-producer. Pectin lyase (PL, EC; 4.2.2.2) and pectin methyl esterase (PME, EC; 3.1.1.11) were produced byTrichoderma hamatum, whereas chitinase (EC; 3.2.1.14) was produced byAspergillus niger. Protease activity was noted by onlyCladosporium herbarum. The higher activities of these fungal hydrolytic enzymes represent the major threats of biodeterioration including deteriorating linen bandages as well as the mummy bodies. Therefore, it is recommended to improve the preservation system of the mummies at the National Museum to minimize the contamination up to the lowest level and protect the mummies from biodeterioration.

Publisher

Hindawi Limited

Subject

Biochemistry

Reference54 articles.

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