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首页> 外文期刊>The New Phytologist >Common mycorrhizal networks amplify competition by preferential mineral nutrient allocation to large host plants
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Common mycorrhizal networks amplify competition by preferential mineral nutrient allocation to large host plants

机译:常见的菌根网络通过向大型寄主植物中优先分配矿物质养分来扩大竞争

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摘要

Arbuscular mycorrhizal (AM) fungi interconnect plants in common mycorrhizal networks (CMNs) which can amplify competition among neighbors. Amplified competition might result from the fungi supplying mineral nutrients preferentially to hosts that abundantly provide fixed carbon, as suggested by research with organ-cultured roots. We examined whether CMNs supplied N-15 preferentially to large, nonshaded, whole plants. We conducted an intraspecific target-neighbor pot experiment with Andropogon gerardii and several AM fungi in intact, severed or prevented CMNs. Neighbors were supplied N-15, and half of the target plants were shaded. Intact CMNs increased target dry weight (DW), intensified competition and increased size inequality. Shading decreased target weight, but shaded plants in intact CMNs had mycorrhizal colonization similar to that of sunlit plants. AM fungi in intact CMNs acquired N-15 from the substrate of neighbors and preferentially allocated it to sunlit, large, target plants. Sunlit, intact CMN, target plants acquired as much as 27% of their nitrogen from the vicinity of their neighbors, but shaded targets did not. These results suggest that AM fungi in CMNs preferentially provide mineral nutrients to those conspecific host individuals best able to provide them with fixed carbon or representing the strongest sinks, thereby potentially amplifying asymmetric competition below ground.
机译:丛枝菌根(AM)真菌将植物与常见的菌根网络(CMN)相互连接,可以扩大邻居之间的竞争。根据器官培养根的研究表明,真菌可能会向富含大量固定碳的宿主优先提供矿物质营养,这可能导致竞争加剧。我们检查了CMN是否优先向大型,无阴影的整株植物提供N-15。我们用完整的,切断的或预防的CMNs中的Andropogon gerardii和几种AM真菌进行了种内靶标邻近实验。向邻居提供N-15,一半目标植物被遮蔽。完整的CMN增加目标干重(DW),加剧竞争并增加尺寸不均。遮荫降低了目标体重,但是完整CMN中的遮荫植物的菌根定植与阳光照射的植物相似。完整CMN中的AM真菌从邻居的基质中获取N-15,并优先将其分配给阳光充足的大型目标植物。完好无损的CMN阳光照射目标植物从附近邻居那里获取了多达27%的氮,而阴影目标则没有。这些结果表明,CMNs中的AM真菌优先向那些能够为它们提供固定碳或代表最强汇的最有针对性的寄主个体提供矿物质营养,从而潜在地扩大了地下的非对称竞争。

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