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Seedling leaves allocate lower fractions of nitrogen to photosynthetic apparatus in nitrogen fixing trees than in non-nitrogen fixing trees in subtropical China

机译:与亚热带非固氮树相比固氮树的幼苗叶片将较低的氮元素分配给光合作用设备

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摘要

Photosynthetic-nitrogen use efficiency (PNUE) is a useful trait to characterize leaf physiology and survival strategy. PNUE can also be considered as part of ‘leaf economics spectrum’ interrelated with leaf nutrient concentrations, photosynthesis and respiration, leaf life-span and dry-mass investment. However, few studies have paid attention to PNUE of N-fixing tree seedlings in subtropical China. In this study, we investigated the differences in PNUE, leaf nitrogen (N) allocation, and mesophyll conductance (gm) in Dalbergia odorifera and Erythrophleum fordii (N-fixing trees), and Betula alnoides and Castanopsis hystrix (non-N-fixing trees). PNUE of D. odorifera and E. fordii were significantly lower than those of B. alnoides and C. hystrix mainly because of their allocation of a lower fraction of leaf N to Rubisco (PR) and bioenergetics (PB). Mesophyll conductance had a significant positive correlation with PNUE in D. odorifera, E. fordii, and B. alnoides, but the effect of gm on PNUE was different between species. The fraction of leaf N to cell wall (PCW) had a significant negative correlation with PR in B. alnoides and C. hystrix seedling leaves, but no correlation in D. odorifera and E. fordii seedling leaves, which may indicate that B. alnoides and C. hystrix seedling leaves did not have enough N to satisfy the demand from both the cell wall and Rubisco. Our results indicate that B. alnoides and C. hystrix may have a higher competitive ability in natural ecosystems with fertile soil, and D. odorifera and E. fordii may grow well in N-poor soil. Mixing these non-N-fixing and N-fixing trees for afforestation is useful for improving soil N utilization efficiency in the tropical forests.
机译:光合氮利用效率(PNUE)是表征叶片生理和生存策略的有用特征。 PNUE也可以被视为与叶片养分含量,光合作用和呼吸作用,叶片寿命和干物质投资相关的“叶片经济学谱”的一部分。然而,很少有研究关注亚热带中国固氮树苗的PNUE。在这项研究中,我们调查了黄檀和Erythrophleum fordii(固氮树),西南桦和and(非固氮树)的PNUE,叶氮(N)分配和叶肉电导(gm)的差异。 )。 D. odorifera和E. fordii的PNUE显着低于B. alnoides和C. hystrix的PNUE,这主要是因为它们将较低比例的叶N分配给Rubisco(PR)和生物能学(PB)。叶肉电导率与D. E 中的PNUE呈显着正相关。 fordii B alnoides ,但是 g m对PNUE的影响在物种之间是不同的。叶N占细胞壁的比例( P CW)与 B 中的 P R显着负相关。 alnoides C hystrix 幼苗叶片,但在 D 中没有相关性。 odorifera E fordii 幼苗叶片,可能表示 B alnoides C hystrix 幼苗叶片的氮不足,无法满足细胞壁和Rubisco的需求。我们的结果表明 B alnoides C hystrix 在土壤肥沃的自然生态系统和 D 中可能具有更高的竞争能力。 odorifera E fordii 在缺氮土壤中可能生长良好。将这些非固氮树和固氮树混合用于造林,对于提高热带森林中土壤氮的利用效率是有用的。

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