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Effect of N supply on the carbon economy of barley when accounting for plant size

机译:N供应对植物尺寸核算时大麦碳经济的影响

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Nitrogen availability and ontogeny both affect the relative growth rate (RGR) of plants. In this study of barley (Hordeum vulgare L.) we determined which growth parameters are affected by nitrate (N) availability, and whether these were confounded by differences in plant size, reflecting differences in growth. Plants were hydroponically grown on six different nitrate (N) concentrations for 28 days, and nine harvests were performed to assess the effect of N on growth parameters. Most growth parameters showed similar patterns of responses to N supply whether compared at common time points or common plant sizes. N had a significant effect on the biomass allocation: increasing N increased leaf mass ratio (LMR) and decreased root mass ratio (RMR). Specific leaf area (SLA) was not significantly affected by N. RGR increased with increasing N supply up to 1 mM, associated with increases in both LMR and net assimilation rate (NAR). Increases in N supply above 1 mM did not increase RGR as increases in LMR were offset by decreases in NAR. The high RGR at suboptimal N supply suggest a higher nitrogen use efficiency (biomass/N supply). The reasons for the homeostasis of growth under suboptimal N levels are discussed.
机译:氮可用性和组来影响既影响植物的相对生长速率(RGR)。在这项关于大麦(Hordeum Vulgare L.)的研究中,确定了哪种生长参数受硝酸盐(n)可用性的影响,以及这些是否因植物规模的差异而受到混淆,反映了生长差异。植物在六种不同的硝酸盐(N)浓度上培养28天,进行九个收获,以评估n对生长参数的影响。无论是在常用时间点还是常见的植物尺寸,大多数增长参数都显示出对N供应的相似的反应模式。 n对生物质分配有显着影响:增加N增加的叶质质量比(LMR)并降低了根系质量比(RMR)。对于高达1mm的N次,N.RGR增加,特异性叶面积(SLA)没有显着影响,随着LMR和净同化率(NAR)的增加,增加了1毫米。在1mm以上的N供应量增加未增加RGR,因为LMR的增加被NAR的降低偏移。次优N供应时的高RGR表明氮气利用效率较高(生物量/ N供应)。讨论了在次优N水平下增长的稳态的原因。

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