Haemogregarines infecting reptiles in Egypt 1) Blood and merogenics stages of Haemogregarine sp. infecting the skink Scincus scincus in Egypt

Author(s):  
Hewaydah Shafeey ◽  
Hoda Mohamadain ◽  
Rewaida Gaber ◽  
Nazera Emara
Keyword(s):  
2021 ◽  
Author(s):  
Zhihong Zhang ◽  
Shuaihui Gan ◽  
Guobiao Zuo ◽  
Liangliang Zhao ◽  
Zhaoyang Chen ◽  
...  

Author(s):  
Konrad Staudt ◽  
Wolfgang Böhme ◽  
Werner Baumgartner

The sandfish (Scincidae: Scincus scincus) is a lizard having outstanding skin properties. The scales show low friction behaviour and high abrasion resistance. After giving molecular support by DNA and protein analysis in Part 1 for increased glycosylation of the skins β-keratins, in this study the effect of glycans for friction reduction was investigated by (1) ammonium-based keratinolysis of skin exuviae and applying a β-keratin film on a glass surface and by (2) β-elimination based deglycosylation of β-keratins and immobilization of liberated glycans on a glass surface via silanisation. Both techniques resemble the natural model in the species investigated, the sandfish Scincus scincus and the Berber skink Eumeces schneideri. In the sandfish, a decreased friction coefficient was found by friction angle measurements, and a low adhesion force was measured by investigation with atomic force microscopy (AFM). These characteristics are possibly based by prevention of the formation of van der Waals bonds. This low adhesion force correlates with low friction and has a positive impact on abrasion resistance. A monosaccharide analysis confirmed the presence of carbohydrates.


Author(s):  
Konrad Staudt ◽  
Friederike Petra Maria Saxe ◽  
Heiko Schmied ◽  
Raphael Soeur ◽  
Wolfgang Böhme ◽  
...  

The Sandfish (Scincidae: Scincus Scincus) Is a Lizard Capable of Moving through Desert Sand in a Swimming-Like Fashion. the Epidermis of this Lizard Shows a High Resistance against Abrasion Together with a Low Friction to Sand as an Adaption to a Subterranean Life below the Desert’s Surface, Outperforming even Steel. the Low Friction Is Mainly Caused by Chemical Composition of the Scales, which Consist of Glycosylated β-Keratins. in this Study, the Friction, the Micro-Structure, the Glycosylation of the β-Keratin Proteins and β-Keratin Coding DNA of the Sandfish in Comparison to other Reptilian Species Was Investigated, Mainly with the Closely Related Berber Skink (Scincidae: Eumeces Schneideri) and another Sand Swimming Species, the Not Closer Related Shovel-Snouted Lizard (Lacertidae: Meroles Anchietae). Glycosylated β-Keratins of the Sandfish, Visualized with Different Lectins Resulted in O-Linked Glycans through PNA Employed as Carbohydrate Marker. Furthermore, the Glycosylation of β-Keratins in Various Squamatean Species Was Investigated and All Species Tested Were Found Positive; however, it Seems Like both Sand Swimming Species Examined Have a much Stronger Glycosylation of their β-Keratins. in Order to Prove this Finding through a Genetic Foundation, DNA of a β-Keratin Coding Gene of the Sandfish Was Sequenced and Compared with a Homologue Gene of Eumeces Schneideri. by Comparison of the Protein Sequence, a Higher Abundance of O-Glycosylation Sites Was Found in the Sandfish (enabled through the Amino Acids Serine and Threonine), Giving Molecular Support for a Higher Glycosylation of the β-Keratins in this Species.


2017 ◽  
Vol 24 (7) ◽  
pp. 1711-1721
Author(s):  
Mukhtar Ahmed ◽  
O.A. Aldokhi ◽  
E.S. Alenezy
Keyword(s):  

1979 ◽  
Vol 209 (1) ◽  
pp. 91-96 ◽  
Author(s):  
M. F. Hussein ◽  
N. Badir ◽  
R. El Ridi ◽  
S. El Deeb

Check List ◽  
2015 ◽  
Vol 11 (5) ◽  
pp. 1774 ◽  
Author(s):  
Soheila Shafiei ◽  
Mohammad Ebrahim Sehhatisabet ◽  
Naeim Moradi

One adult female specimen of the Sandfish Skink (Scincus scincus conirostris) was collected in southeastern Iran during fieldwork on 20 January 2009. Interestingly, the new locality of the species is situated approximately 700 km east of the nearest previously known locality. This record indicates a larger distribution of Scincus scincus conirostris on the Iranian plateau than previously known. Information on morphological characters and habitat are presented herein.


2020 ◽  
Vol 171 ◽  
pp. 17-30
Author(s):  
Jérôme Canei ◽  
Carmen Burtea ◽  
Denis Nonclercq

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