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Antimicrobial properties of a nanostructured eggshell from a compost-nesting bird

机译:堆肥鸟的纳米结构蛋壳的抗菌特性

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摘要

Infection is an important source of mortality for avian embryos but parental behaviors and eggs themselves can provide a network of antimicrobial defenses. Mound builders (Aves: Megapodiidae) are unique among birds in that they produce heat for developing embryos not by sitting on eggs but by burying them in carefully tended mounds of soil and microbially decomposing vegetation. The low infection rate of eggs of one species in particular, the Australian brush-turkey (Alectura lathami), suggests that they possess strong defensive mechanisms. To identify some of these mechanisms, we first quantified antimicrobial albumen proteins and characterized eggshell structure, finding that albumen was not unusually antimicrobial, but that eggshell cuticle was composed of nanometer-sized calcite spheres. Experimental tests revealed that these modified eggshells were significantly more hydrophobic and better at preventing bacterial attachment and penetration into the egg contents than chicken eggs. Our results suggest that these mechanisms may contribute to the antimicrobial defense system of these eggs, and may provide inspiration for new biomimetic anti-fouling surfaces.
机译:感染是禽类胚胎死亡的重要来源,但父母的行为和卵本身可以提供抗微生物防御网络。土堆建造者(Aves:Megapodiidae)在鸟类中是独特的,它们产生热量来发育胚胎,而不是坐在鸡蛋上,而是将它们埋在精心照料的土堆中,并通过微生物分解植被。特别是澳大利亚刷火鸡(Alectura lathami)等一种蛋的感染率低,表明它们具有强大的防御机制。为了确定其中的一些机制,我们首先对抗菌蛋白进行了定量,并对蛋壳结构进行了表征,发现蛋白并不是异常的抗菌蛋白,而是蛋壳表皮由纳米方解石球组成。实验测试表明,与鸡蛋相比,这些修饰的蛋壳具有更大的疏水性,并且在防止细菌附着和渗入蛋内容物方面表现更好。我们的结果表明,这些机制可能有助于这些卵的抗菌防御系统,并可能为新型仿生防污表面提供启发。

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