首页|The significance of endophytic and phyllospheric N-2 fixation in forest trees: evidence from stable (N-15) and radioactive (N-13) tracer studies

The significance of endophytic and phyllospheric N-2 fixation in forest trees: evidence from stable (N-15) and radioactive (N-13) tracer studies

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Key message The proportional contribution of endophytic and phyllospheric diazotrophs to tree N nutrition can be quantified by N-15 techniques. Observations of vigorous growth of Pinus spp. on unreclaimed gravel mining sites, together with measured net nitrogen (N) gains of 50 kg N ha(-1) y(-1) in sand culture, indicate the importance of alternative N sources when soil organic matter (SOM) cannot meet plant demand. Non-nodulated trees can respond positively to inoculation with N-2 fixing bacteria under conditions of low N supply, suggesting that non-nodular symbiotic N-2 fixation can make a significant contribution to tree nutrition, a well-established pathway for cereals, forage grasses and some industrial crops in N-limited environments. We reviewed the literature where non-isotopic approaches and techniques based on stable (N-15) and radioactive (N-13) tracers were used to estimate the relative contribution of endophytic and phyllospheric N-2 fixation to the N economies of non-nodulated trees. The principal avenue of enquiry has so far involved determination of the response of trees to inoculation with diazotrophic bacteria. There is a need to obtain in situ measurements of the reliance of non-leguminous trees on endophytic and phyllospheric N-2 fixation under a range of environmental and edaphic conditions. Current methodological obstacles have to be overcome to meet this challenge. Future research directions are suggested.

N-15N-13N-15(2)Dinitrogen fixationPhyllosphereEndophyteBIOLOGICAL NITROGEN-FIXATIONPLANT-GROWTH PROMOTIONLODGEPOLE PINENUTRITIONNODULESGAS

Chalk, Phillip M.、Lam, Shu K.、Chen, Deli

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Univ Melbourne

2022

Trees

Trees

ISSN:0931-1890
年,卷(期):2022.36(4)
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