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首页> 外文期刊>BMC Plant Biology >Anatomically induced changes in rice leaf mesophyll conductance explain the variation in photosynthetic nitrogen use efficiency under contrasting nitrogen supply
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Anatomically induced changes in rice leaf mesophyll conductance explain the variation in photosynthetic nitrogen use efficiency under contrasting nitrogen supply

机译:解剖学诱导的水稻叶片叶片测量的变化解释了对比氮供应下光合氮利用效率的变化

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The ratio of CO2 mesophyll conductance (gm) to Ribulose-1, 5-bisphosphate carboxylase/oxygenase (Rubisco) content has been suggested to positively affect photosynthetic nitrogen use efficiency (PNUE). The anatomical basis of gm has been quantified, but information on the relationship between cell-level anatomies and PNUE is less advanced. Here, hydroponic experiments were conducted in rice plants supplied with ammonium (NH4+) and nitrate (NO3?) under three N levels (low, 0.71?mM; intermediate, 2.86?mM; high, 7.14?mM) to investigate the gas exchange parameters, leaf anatomical structure and PNUE. The results showed a lower PNUE in plants supplied with high nitrogen and NH4+, which was positively correlated with the gm/Rubisco ratio. A one-dimensional within-leaf model revealed that the resistance to CO2 diffusion in the liquid phase (rliq) dominated the overall mesophyll resistance (rm), in which CO2 transfer resistance in the cell wall, cytoplasm and stroma were significantly affected by nitrogen supply. The chloroplast surface area exposed to intercellular space (Sc) per Rubisco rather than the gm/Sc ratio was positively correlated with PNUE and was thus considered a key component influencing PNUE. In conclusion, our study emphasized that Sc was the most important anatomical trait in coordinating gm and PNUE with contrasting N supply.
机译:已经提出了CO 2-2-2-2-2-叶片电导(GM)与核糖糖-1,5-双磷酸羧酸酶/氧酶(Rubisco)含量的比例积极影响光合氮使用效率(PNUE)。 GM的解剖学基础已经量化,但有关细胞级解剖学和PNUE之间关系的信息不太高级。在此,在3个N水平(低,0.71Ωmm;中间,2.86Ωmm;高,7.14Ωmm),在含有铵(NH4 +)和硝酸铵(NO 3?)的水稻植物中进行水培实验。研究气体交换参数,叶子解剖结构和pnue。结果表明,在高氮和NH 4 +供应的植物中显示出较低的肺部,其与GM / Rubisco比率正相关。叶片内模型显示,液相(RLIQ)中的CO 2扩散的抗性主导了整个培养的抗性(RM),其中通过氮气供应显着影响细胞壁,细胞质和基质中的CO 2转移性。暴露于每Rubisco的细胞间空间(SC)而不是GM / SC比下暴露于细胞间空间(SC)的叶绿体表面积与PNUE呈正相关,因此被认为是影响PNUE的关键部件。总之,我们的研究强调,SC是协调GM和PNUE中最重要的解剖特征,与对比N供应。

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