Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Tartu, Estonia.
Estonian Academy of Sciences, Tallinn, Estonia.
Plant Cell Environ. 2021 Sep;44(9):3049-3063. doi: 10.1111/pce.14131. Epub 2021 Jul 5.
Leaf isoprene emission rate, I, decreases with increasing atmospheric CO concentration with major implications for global change. There is a significant interspecific variability in [CO ]-responsiveness of I, but the extent of this variation is unknown and its reasons are not understood. We hypothesized that the magnitude of emission reduction reflects the size and changeability of precursor pools responsible for isoprene emission (dimethylallyl diphosphate, DMADP and 2-methyl-erythritol 2,4-cyclodiphosphate, MEcDP). Changes in I and intermediate pool sizes upon increase of [CO ] from 400 to 1500 μmol/mol were studied in nine woody species spanning boreal to tropical ecosystems. I varied 10-fold, total substrate pool size 37-fold and the ratio of DMADP/MEcDP pool sizes 57-fold. At higher [CO ], I was reduced on average by 65%, but [CO ]-responsiveness varied an order of magnitude across species. The increase in [CO ] resulted in concomitant reductions in both substrate pools. The variation in [CO ]-responsiveness across species scaled with the reduction in pool sizes, the substrate pool size supported and the share of DMADP in total substrate pool. This study highlights a major interspecific variation in [CO ]-responsiveness of isoprene emission and conclusively links this variation to interspecific variability in [CO ] effects on substrate availability and intermediate pool size.
叶片异戊二烯排放速率 I 随大气 CO 浓度的增加而降低,这对全球变化有重大影响。[CO] 对 I 的响应存在显著的种间变异性,但这种变异的程度尚不清楚,其原因也尚不清楚。我们假设,排放减少的幅度反映了负责异戊二烯排放的前体池的大小和可变性(二甲基烯丙基二磷酸,DMADP 和 2-甲基-赤藓醇 2,4-环二磷酸,MEcDP)。在从 400 增加到 1500 μmol/mol 的[CO]时,研究了跨越北方到热带生态系统的 9 种木本物种中 I 和中间池大小的变化。I 变化了 10 倍,总基质池大小变化了 37 倍,DMADP/MEcDP 池大小的比例变化了 57 倍。在较高的[CO]下,I 平均减少了 65%,但[CO]的响应在种间变化了一个数量级。[CO]的增加导致两种基质池同时减少。种间[CO]响应的变化与池大小、基质池大小支持的变化以及 DMADP 在总基质池中的比例的变化有关。本研究强调了异戊二烯排放对[CO]的响应存在主要的种间变异性,并明确将这种变异性与[CO]对基质可用性和中间池大小的影响的种间变异性联系起来。