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首页> 外文期刊>New Zealand Journal of Ecology >Effects of Agathis australis (New Zealand kauri) leaf litter on germination and seedling growth differs among plant species
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Effects of Agathis australis (New Zealand kauri) leaf litter on germination and seedling growth differs among plant species

机译:不同植物物种的Agathis australis(新西兰贝壳杉)叶片凋落物对发芽和幼苗生长的影响不同

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Agathis australis (A. australis, New Zealand kauri, Araucariaceae) exerts a substantial influence on soil properties and nutrient cycling, and mature specimens form an acidic organic soil layer beneath them that can be up to 2 m deep. We investigatedwhether phytotoxic compounds occurred in A. australis leaf litter and organic soil, and whether allelopathy may explain the distinctiveness of plant communities surrounding A. australis. We extracted water-soluble compounds from fresh litter, and conducted bioassays of seed germination and seedling growth in these extracts on both A. australis-associated and non-associated species. Germination of all species except A. australis was inhibited by extracts from A. australis litter, which probably containsphytotoxic compounds. Germination of a forest species that is not associated with A. australis was inhibited by the low pH organic soils collected from beneath mature A. australis, but when these soils were neutralised using lime, its germination was notinhibited. Lactuca sativa, a species highly sensitive to phytotoxic compounds, was negatively affected by both the low pH of the organic soil and the presence of phytotoxic compounds. In contrast, there was no effect of the organic soil on the germination and growth of A. australis-associated species. These results suggest that the high acidity of A. australis organic soil plays a considerable role in structuring the composition of plant communities associated with A. australis, and also that A. australis litter probably contains unidentified phytotoxic compounds that may exert additional direct allelopathic effects on sensitive species.
机译:Agathis australis(A。australis,新西兰贝壳杉,南洋杉科)对土壤特性和养分循环产生重大影响,成熟的标本在其下方形成酸性有机土壤层,深度可达2 m。我们调查了A.tralus Austtralis的凋落物和有机土壤中是否存在植物毒性化合物,以及化感作用是否可以解释A. australis周围植物群落的独特性。我们从新鲜的凋落物中提取水溶性化合物,并对与南方土壤杆菌相关和非相关物种的这些提取物进行了种子发芽和幼苗生长的生物测定。除南方土壤以外的所有物种的发芽都受到南方土壤凋落物提取物的抑制,该提取物可能含有植物毒性化合物。从成熟的澳大利亚南方土壤中收集的低pH有机土壤抑制了与澳大利亚南方土壤不相关的森林物种的发芽,但是当这些土壤用石灰中和时,其发芽不会受到抑制。苜蓿(Lactuca sativa)是一种对植物毒性化合物高度敏感的物种,受到有机土壤pH值低和植物毒性化合物的存在的负面影响。相比之下,有机土壤对南方土壤曲霉相关物种的发芽和生长没有影响。这些结果表明,高酸度的澳洲土壤杆菌有机土壤在构造与澳洲土壤杆菌相关的植物群落组成方面起着相当重要的作用,而且澳洲土壤杆菌的凋落物可能含有未鉴定的植物毒性化合物,可能对植物产生其他直接的化感作用。敏感物种。

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