Hughes John K, Hodge Angela, Fitter Alastair H, Atkin Owen K
Department of Biology, University of York, York, UK.
Trends Plant Sci. 2008 Nov;13(11):583-8. doi: 10.1016/j.tplants.2008.08.010. Epub 2008 Sep 29.
Most plant species form mycorrhizas, yet these are neglected by plant physiologists. One consequence of this neglect is reduced ability to predict plant respiration, because respiration rate (R) in mycorrhizal roots might be higher than in non-mycorrhizal roots owing to increased substrate availability associated with enhanced nutrient uptake, coupled with increased respiratory product demand. Other predictions include that mycorrhizal colonization will affect scaling of R with tissue nitrogen concentrations; that mycorrhizal and non-mycorrhizal root R differ in their response to nutrient supply; and that the impact of colonization on R is related to fungal biomass. Failure to examine properly the role of colonization in determining root R means that current interpretations of root and soil respiration data might be flawed.
大多数植物物种都会形成菌根,但植物生理学家却忽略了它们。这种忽视的一个后果是预测植物呼吸作用的能力下降,因为菌根根中的呼吸速率(R)可能高于非菌根根,这是由于与养分吸收增强相关的底物可用性增加,以及呼吸产物需求增加所致。其他预测包括菌根定殖会影响R与组织氮浓度的比例关系;菌根和非菌根根的R对养分供应的反应不同;以及定殖对R的影响与真菌生物量有关。未能正确研究定殖在决定根R中的作用意味着目前对根和土壤呼吸数据的解释可能存在缺陷。