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Arbuscular mycorrhizal fungi contribute to phosphorus uptake by wheat grown in a phosphorus-fixing soil even in the absence of positive growth responses

机译:丛枝菌根真菌即使在没有正向生长反应的情况下,也会促进固磷土壤中小麦的磷吸收

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摘要

We used P-32 to quantify the contribution of an arbuscular mycorrhizal (AM) fungus (Glomus intraradices) to phosphorus (P) uptake by wheat (Triticum aestivum), grown in compartmented pots. The soil was from a major cereal-growing area, the Eyre Peninsula, South Australia; it was highly calcareous and P-fixing. Fertilizer P was added to soil at 20 mg kg(-1), as solid or liquid. Two extraction methods were used to estimate plant-available P. Fungal colonization was well established at harvest (36 d). Application of P decreased both colonization and hyphal length density in soil, with small differences between different P fertilizers. Plants showed large positive responses in terms of growth or total P uptake to all P additions, and showed no positive (or even negative) responses to AM colonization, regardless of P application. P-32 was detected only in AM plants, and we calculated that over 50% of P uptake by plants was absorbed via AM fungi, even when P was added. The results add to the growing body of knowledge that 'nonresponsive' AM plants have a functional AM pathway for P transfer to the plant; it should not be ignored in breeding plants for root traits designed to improve P uptake.
机译:我们使用P-32来量化丛生盆栽的小麦(Triticum aestivum)对丛枝菌根(AM)真菌(Glomus intraradices)吸收磷(P)的贡献。土壤来自主要的谷物产区南澳大利亚的艾尔半岛。它是高度钙质和固磷的。将肥料P以固体或液体形式以20 mg kg(-1)添加到土壤中。两种提取方法被用于估计植物可利用的P。在收获时(36 d)已经很好地建立了真菌定植。施磷减少了土壤定殖和菌丝长度密度,不同磷肥之间的差异很小。无论添加何种磷肥,植物均表现出对所有磷素添加量的生长或总磷素吸收有较大的正响应,对AM定植也无正(甚至负)响应。仅在AM植物中检测到P-32,并且我们计算出即使添加P也能通过AM真菌吸收超过50%的植物P吸收。结果增加了越来越多的知识,即“无反应”的AM植物具有将P转移至植物的功能性AM途径。在育种植物中,为了提高磷的吸收而设计的根部性状不容忽视。

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