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Response of plants to ectomycorrhizae in N-limited conditions: which factors determine its variation?

机译:N限制条件下植物对外生菌根的反应:哪些因素决定其变化?

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In the present work, the following hypotheses were tested: (1) the negative effects of mycorrhization over host plant productivity in N-limited conditions are due to N retention by the fungal partner and not due to excessive C drainage; (2) If mycorrhization results in decreased N uptake, the host plant decreases its C investment in fungal growth. The effects of mycorrhization over a wide range of combinations between N availability, N concentration in plant tissues, and degree of mycorrhizal colonization were studied in Pinus pinaster L. mycorrhizal with Pisolithus tinctorius. Several plant productivity parameters, the seedlings’ N status, chl a fluorescence (JIP test), and mycorrhizal colonization were measured. N was always limiting. A gradient of mycorrhizal effects over the host plant’s growth and vitality was successfully obtained. The mycorrhizal effects on plant growth and N uptake were very strongly and positively correlated, and no evidence was found of a C limitation to growth, confirming hypothesis 1. Indications were found that the plants continued to provide C to the fungus although the N supplied by it was increasingly lower, denying hypothesis 2. A new index, the mycorrhizal N demand–supply balance, was found to efficiently explain, and to have a curvilinear relation with, the variation in response to mycorrhization. The mycorrhizal effect on host plant growth was not related to a negative effect on its photosynthetic performance and, therefore, reflected changes in resource allocation between host plant and mycorrhizal fungus, not in plant vitality.
机译:在目前的工作中,检验了以下假设:(1)在氮有限的条件下,菌根对寄主植物生产力的负面影响是由于真菌伴侣保留了氮,而不是由于过多的C排放造成的; (2)如果菌根导致减少的N吸收,则宿主植物会减少其对真菌生长的C投资。研究了松材线虫与Pisolithus tinctorius在N有效性,植物组织中的N浓度和菌根定植程度之间的广泛组合中的菌根作用。测量了几个植物生产力参数,幼苗的N状态,荧光(JIP测试)和菌根定植。 N总是限制性的。成功获得了在宿主植物的生长和活力上的菌根作用梯度。菌根对植物生长和氮吸收的影响非常强烈且呈正相关,并且没有发现限制生长的C的证据,这证实了假设1。迹象表明,尽管由N提供的氮仍能为真菌提供C。它越来越低,否认了假设2。发现了一个新的指数,即菌根氮需求-供应平衡,可以有效地解释菌根反应的变化,并与之成曲线关系。菌根对寄主植物生长的影响与其对其光合性能的负面影响无关,因此,反映了寄主植物与菌根真菌之间资源分配的变化,而不是植物活力。

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