首页> 外文期刊>The Journal of Experimental Biology >A highly stable, non-digestible lectin from Pomacea diffusa unveils clade-related protection systems in apple snail eggs
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A highly stable, non-digestible lectin from Pomacea diffusa unveils clade-related protection systems in apple snail eggs

机译:来自Pomacea Diffusa的高度稳定,不可消化的凝集素揭示了苹果蜗牛鸡蛋的思潮相关的保护系统

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The acquisition of egg protection is vital for species survival. Poisonous eggs from Pomacea apple snails have defensive macromolecules for protection. Here we isolated and characterized a novel lectin called PdPV1 that is massively accumulated in the eggs of Pomacea diffusa and seems part of its protective cocktail. The native protein, an oligomer of ca 256 kDa, has high structural stability, withstanding 15 min boiling and denaturing by SDS. It resists in vitro proteinase digestion and displays structural stability between pH 2.0 and pH 12.0, and up to 85 degrees C. These properties, as well as its subunit sequences, glycosylation pattern, presence of carotenoids, size and global shape resemble those of its orthologs from other Pomacea. Furthermore, like members of the canaliculata clade, PdPV1 is recovered unchanged in feces of mice ingesting it, supporting an anti-nutritive defensive function. PdPV1 also displays a strong hemagglutinating activity, specifically recognizing selected ganglioside motifs with high affinity. This activity is only shared with PsSC, a perivitelline from the same clade (bridgesii clade). As a whole, these results indicate that species in the genus Pomacea have diversified their egg defenses: those from the bridgesii clade are protected mostly by non-digestible lectins that lower the nutritional value of eggs, in contrast with protection by neurotoxins of other Pomacea clades, indicating that apple snail egg defensive strategies are clade specific. The harsh gastrointestinal environment of predators would have favored their appearance, extending by convergent evolution the presence of plant-like highly stable lectins, a strategy not reported in other animals.
机译:收购卵子保护对于物种生存至关重要。来自Pomacea Apple蜗牛的有毒卵具有防御性宏观重量以进行保护。在这里,我们被分离并表征了一种名为PDPv1的新型凝集素,这些凝集素在Pomacea Diffusa的卵中大规模积累,似乎是其保护鸡尾酒的一部分。本地蛋白质,Ca 256kDa的低聚物具有高结构稳定性,耐高温沸腾和通过SDS变性。它抵抗体外蛋白酶消化,并在pH 2.0和pH 12.0之间显示结构稳定性,最高85℃。这些性质,以及其亚基序列,糖基化图案,类胡萝卜素的存在,尺寸和全球形状类似于其矫形器来自其他Pomacea。此外,像Canaliculata的成员一样,PDPv1在摄取它的小鼠的粪便中被回收不变,支持抗营养防御功能。 PDPV1还显示出强烈的血凝活性,特别是识别具有高亲和力的选定神经节苷脂基序。此活动仅与PSSC共享,来自同一思工(Bridgesii Clade)的PeriviteLine。作为一个整体,这些结果表明,在属福寿螺物种多样化他们的鸡蛋防御:那些来自bridgesii分支大多是通过降低鸡蛋的营养价值不易消化的凝集素其他福寿螺分支的神经毒素的保护,在保护的对比,表明苹果蜗牛鸡蛋防御策略是特定的。捕食者的苛刻胃肠环境将有利于他们的外观,通过植物样高度稳定的凝集素的存在延伸,在其他动物中没有报道的策略。

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