Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Kreutzwaldi 1, 51014 Tartu, Estonia.
J Plant Res. 2012 Mar;125(2):263-74. doi: 10.1007/s10265-011-0429-7. Epub 2011 May 17.
Changes in isoprene emission (Φ(isoprene)), and foliage photosynthetic (A) rates, isoprene precursor dimethylallyldiphosphate (DMADP), and nitrogen and carbon contents were studied from late summer to intensive leaf fall in Populus tremula to gain insight into the emission controls by temperature and endogenous, senescence-induced, modifications. Methanol emissions, characterizing degradation of cell wall pectins, were also measured. A rapid reduction in Φ(isoprene) and A of 60-70% of the initial value was observed in response to a rapid reduction of ambient temperature by ca. 15°C (cold stress). Later phases of senescence were associated with further reductions in Φ(isoprene) and A, with simultaneous major decrease in nitrogen content. However, during episodes of temperature increase, A and in particular, Φ(isoprene) partly recovered. Variation in Φ(isoprene) during senescence was correlated with average temperature of preceding days, with the highest degree of explained variance observed with average temperature of 6 days. Throughout the study, methanol emissions were small, but a large burst of methanol emission was associated with leaf yellowing and abscission. Overall, these data demonstrate that the capacity for isoprene emission can adjust to environmental conditions in senescing leaves as well, but the responsiveness is low compared with mid-season and is also affected by stress.
研究了从夏末到剧烈落叶期间欧洲山杨叶片中异戊二烯排放(Φ(isoprene))、光合作用(A)速率、异戊二烯前体二甲基烯丙基二磷酸(DMADP)以及氮和碳含量的变化,以深入了解温度和内源性、衰老诱导的变化对排放的控制作用。还测量了表征细胞壁果胶降解的甲醇排放。环境温度快速降低约 15°C(冷胁迫)会导致Φ(isoprene)和 A 快速降低,初始值的 60-70%。衰老的后期阶段与Φ(isoprene)和 A 的进一步降低以及氮含量的大幅下降同时发生。然而,在温度升高期间,A,特别是Φ(isoprene)部分恢复。衰老过程中Φ(isoprene)的变化与前几天的平均温度相关,观察到的最高解释方差与 6 天的平均温度相关。在整个研究过程中,甲醇排放较小,但大量甲醇排放与叶片变黄和脱落有关。总的来说,这些数据表明,衰老叶片中异戊二烯排放的能力也可以适应环境条件,但响应能力较低,与生长中期相比,也受到胁迫的影响。