首页> 外文期刊>The New Phytologist >Impact of temperature on the relationship between respiration and nitrogen concentration in roots: an analysis of scaling relationships, Q10 values and thermal acclimation ratios
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Impact of temperature on the relationship between respiration and nitrogen concentration in roots: an analysis of scaling relationships, Q10 values and thermal acclimation ratios

机译:温度对根系呼吸和氮含量关系的影响:比例关系,Q10值和热适应比的分析

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* The impact of nitrogen (N) supply on the temperature response of root respiratory O(2) uptake (R) was assessed in several herbaceous species grown in solution culture. Warm-grown (25 : 20 degrees C, day:night) plants differing in root N concentration were shifted to 13 : 8 degrees C for 7 d to cold-acclimate. * Log-log plots of root R vs root N concentration both showed that R increased with increasing tissue N concentration, irrespective of the growth temperature. Although the regression slopes of the log-log plots did not differ between the warm-grown and cold-acclimated plants, cold-acclimated plants did exhibit a higher y-axis intercept than their warm-grown counterparts. This suggests that cold acclimation of root R is not entirely dependent on cold-induced increases in tissue N concentration and that scaling relationships (i.e. regression equations fitted to the log-log plots) between root R and N concentration are not fixed. * No systematic differences were found in the short-term Q(10) (proportional change in R per 10 degrees C change in temperature), or degree of cold acclimation (as measured by the proportional difference between warm- and cold-acclimated roots) among roots differing in root N concentration. The temperature response of root R is therefore insensitive to tissue N concentration. * The insensitivity of Q(10) values and acclimation to tissue N concentration raises the possibility that root R and its temperature sensitivity can be predicted for a range of N supply scenarios.
机译:*在溶液培养中生长的几种草本物种中评估了氮(N)供应对根呼吸O(2)摄取(R)的温度响应的影响。将根氮浓度不同的温热(25:20摄氏度,白天:夜晚)植物移至13:8摄氏度,持续7 d进行冷适应。 *根R与根N浓度的对数对数图均显示R随组织N浓度的增加而增加,而与生长温度无关。尽管对数对数图的回归斜率在温生植物和冷适应植物之间没有差异,但冷适应植物的y轴截距确实比温生植物高。这表明根R的冷驯化不完全取决于冷诱导的组织N浓度的增加,并且根R和N浓度之间的比例关系(即拟合对数对数图的回归方程)不是固定的。 *在短期Q(10)(温度每变化10摄氏度R的比例变化)或冷驯化程度(通过热适应和冷适应根之间的比例差异来衡量)中没有发现系统差异根氮浓度不同的根之间因此,根R的温度响应对组织N浓度不敏感。 * Q(10)值的不敏感性和对组织N浓度的适应性增加了可以针对N种供应情景预测根R及其温度敏感性的可能性。

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