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Allelopathy of Bracken Fern (Pteridium arachnoideum): New Evidence from Green Fronds, Litter, and Soil

机译:蕨蕨(化翼蕨)的化感作用:来自绿色叶,凋落物和土壤的新证据

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摘要

The neotropical bracken fern Pteridium arachnoideum (Kaulf.) Maxon. (Dennstaedtiaceae) is described as an aggressive pioneer plant species. It invades abandoned or newly burned areas and represents a management challenge at these invaded sites. Native to the Atlantic Forest and Cerrado (Tropical Savanna) Brazilian biomes, P. arachnoideum has nevertheless become very problematic in these conservation hotspots. Despite some reports suggesting a possible role of allelopathy in this plant’s dominance, until now there has been little evidence of isolated and individually identified compounds with phytotoxic activities present in its tissues or in the surrounding environment. Thus, the aim of this study was to investigate the allelopathic potential of P. arachnoideum by isolating and identifying any secondary metabolites with phytotoxic activity in its tissues, litter, and soil. Bioguided phytochemical investigation led to the isolation and identification of the proanthocyanidin selligueain A as the major secondary compound in the green fronds and litter of this fern. It is produced by P. arachnoideum in its green fronds, remains unaltered during the senescence process, and is the major secondary compound present in litter. Selligueain A showed phytotoxic activity against the selected target species sesame (Sesamum indicum) early development. In particular, the compound inhibited root and stem growth, and root metaxylem cell size but did not affect chlorophyll content. This compound can be considered as an allelochemical because it is present in the soil under P. arachnoideum patches as one of the major compounds in the soil solution. This is the first report of the presence of selligueain A in any member of the Dennstaedtiaceae family and the first time an isolated and identified allelochemical produced by members of the Pteridium species complex has been described. This evidence of selligueain A as a putative allelochemical of P. arachnoideum reinforces the role of allelopathy in the dominance processes of this plant in the areas where it occurs.
机译:新热带蕨蕨蕨(Kaulf。)Maxon。 (Dennstaedtiaceae)被描述为具有侵略性的先锋植物物种。它侵袭了废弃的或新烧毁的地区,在这些侵袭的地点代表了管理上的挑战。然而,原住民原住民为大西洋森林和塞拉多(热带稀树草原)的巴西生物群落,但在这些保护区中,蛛形假单胞菌已变得非常成问题。尽管有一些报道表明化感作用可能在该植物的优势中起作用,但迄今为止,几乎没有证据表明在其组织或周围环境中存在具有植物毒性活性的分离和单独鉴定的化合物。因此,本研究的目的是通过分离和鉴定在其组织,垫料和土壤中具有植物毒性活性的次生代谢产物来研究蛛形假单胞菌的化感潜力。生物引导的植物化学研究导致原花青素selligueain A的分离和鉴定,该花青素a是该蕨类植物绿色叶和凋落物中的主要次要化合物。它是由蛛形假单胞菌的绿色叶产生的,在衰老过程中保持不变,并且是凋落物中主要的次要化合物。 Selligueain A对选定的目标物种芝麻(Sesamum indicum)的早期发育显示出植物毒活性。尤其是,该化合物抑制根和茎的生长以及根部木质部细胞的大小,但不影响叶绿素含量。该化合物可以被认为是一种化感物质,因为它作为土壤溶液中的主要化合物之一,存在于蛛形假单胞菌斑块下的土壤中。这是关于丹参科家族中任何成员中都存在蝶肽A的首次报道,并且首次描述了由翼状species属物种复合体成员产生的分离和鉴定的化感物质。脂联素A作为拟南芥的化感化学物质的这一证据加强了化感作用在该植物发生地区的优势过程中的作用。

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