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Arbuscular mycorrhizae affect the N and C economy of nodulated Phaseolus vulgaris (L.) during NH4+ nutrition

机译:NH4 +营养期间丛枝菌根影响结节菜豆的氮和碳经济

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摘要

In the symbiosis between nodulated legume roots and arbuscular mycorrhizal (AM) fungi, the C and N economy can be influenced by the source of N-supply from either AM-derived NH4+ uptake or nodule-derived biological nitrogen fixation (BNF). This relationship was investigated in terms of NH4+ supply and BNF by the two symbionts. Nodulated Phaseolus vulgaris seedlings with and without AM, were hydroponically grown with either 0 N or 1 mM NH4+ supply. Plants were harvested at 30 days after emergence and measurements were taken for biomass, N2 fixation, photosynthesis, CO2 and O2 root respiration, calculated C and N economy. AM roots had higher NH4+ uptake and this was associated with the suppression of BNF and nodule growth. The higher NH4+ uptake in AM roots occurred with lower root maintenance respiration, compared to when N was derived from BNF. There was also an increase in the below-ground sink strength of NH4+ fed AM roots compared to NH4+ fed non-AM roots, as evidenced by the increases in root CO2 and O2 respiration and photosynthetic stimulation. These results indicate that although the AM root had higher total below-ground respiratory costs during NH4+ nutrition, there were lower respiratory C costs associated with N derived from AM symbionts in comparison to N from BNF.
机译:在根瘤豆科植物根与丛枝菌根(AM)真菌之间的共生中,碳和氮的经济性可能受到来自AM衍生的NH4 +吸收或根瘤衍生的生物固氮(BNF)的N供应源的影响。通过两个共生体研究了NH4 +供给和BNF的这种关系。使用0 N或1 mM NH4 +进行水培生长结节状的有和没有AM的菜豆幼苗。出苗后30天收获植物,并进行生物量,N2固定,光合作用,CO2和O2根呼吸,计算的C和N经济性的测量。 AM根具有较高的NH4 +吸收,这与抑制BNF和结节生长有关。与N来自BNF的情况相比,AM根中较高的NH4 +吸收发生在较低的根维持呼吸中。与NH4 +喂养的非AM根相比,NH4 +喂养的AM根在地下的下沉强度也有所增加,这可以通过根部CO2和O2呼吸作用以及光合作用刺激的增加来证明。这些结果表明,尽管在NH4 +营养期间AM根具有较高的地下总呼吸成本,但与BNF相比,与AM共生的N相关的呼吸碳成本较低。

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