首页> 外文期刊>Planta: An International Journal of Plant Biology >Glucan-rich diet is digested and taken up by the carnivorous sundew (Drosera rotundifolia L.): Implication for a novel role of plant β-1,3-glucanases
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Glucan-rich diet is digested and taken up by the carnivorous sundew (Drosera rotundifolia L.): Implication for a novel role of plant β-1,3-glucanases

机译:富含葡聚糖的饮食被食肉的白菜(Drosera rotundifolia L.)消化并吸收:对植物β-1,3-葡聚糖酶有新作用

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摘要

Carnivory in plants evolved as an adaptation strategy to nutrient-poor environments. Thanks to specialized traps, carnivorous plants can gain nutrients from various heterotrophic sources such as small insects. Digestion in traps requires a coordinated action of several hydrolytic enzymes that break down complex substances into simple absorbable nutrients. Among these, several pathogenesis-related proteins including β-1,3-glucanases have previously been identified in digestive fluid of some carnivorous species. Here we show that a single acidic endo-β-1,3-glucanase of ~50 kDa is present in the digestive fluid of the flypaper-trapped sundew (Drosera rotundifolia L.). The enzyme is inducible with a complex plant β-glucan laminarin from which it releases simple saccharides when supplied to leaves as a substrate. Moreover, thin-layer chromatography of digestive exudates showed that the simplest degradation products (especially glucose) are taken up by the leaves. These results for the first time point on involvement of β-1,3-glucanases in digestion of carnivorous plants and demonstrate the uptake of saccharide-based compounds by traps. Such a strategy could enable the plant to utilize other types of nutritional sources e.g., pollen grains, fungal spores or detritus from environment. Possible multiple roles of β-1,3-glucanases in the digestive fluid of carnivorous sundew are also discussed.
机译:植物中的食肉动物已经发展成为对营养缺乏的环境的一种适应策略。借助专门的陷阱,食肉植物可以从各种异养来源(例如小昆虫)中获取营养。捕集阱中的消化需要几种水解酶的协同作用,这些酶将复杂的物质分解为简单的可吸收营养。其中,先前已在某些肉食性物种的消化液中发现了几种与发病相关的蛋白质,包括β-1,3-葡聚糖酶。在这里,我们显示了约50 kDa的单个酸性内切β-β-1,3-葡聚糖酶存在于捕蝇草包裹的茅膏菜(Drosera rotundifolia L.)的消化液中。该酶可以用复杂的植物β-葡聚糖层合蛋白诱导,当以叶片为底物提供给叶片时,它会从中释放出简单的糖类。此外,消化液的薄层色谱分析表明,最简单的降解产物(尤其是葡萄糖)被叶片吸收。这些结果首次涉及β-1,3-葡聚糖酶参与肉食植物的消化,并证明了诱集剂对糖基化合物的吸收。这样的策略可以使植物利用其他类型的营养来源,例如花粉粒,真菌孢子或来自环境的碎屑。还讨论了β-1,3-葡聚糖酶在肉食毛霉菌消化液中可能的多种作用。

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