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Controls of the quantum yield and saturation light of isoprene emission in different-aged aspen leaves

机译:不同年龄白杨叶片中异戊二烯发射的量子产率和饱和光的控制

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摘要

Leaf age alters the balance between the use of end-product of plastidic isoprenoid synthesis pathway, dimethylallyl diphosphate (DMADP), in prenyltransferase reactions leading to synthesis of pigments of photosynthetic machinery and in isoprene synthesis, but the implications of such changes on environmental responses of isoprene emission have not been studied. Because under light-limited conditions, isoprene emission rate is controlled by DMADP pool size (SDMADP), shifts in the share of different processes are expected to particularly strongly alter the light dependency of isoprene emission. We examined light responses of isoprene emission in young fully-expanded, mature and old non-senescent leaves of hybrid aspen (Populus tremula x P. tremuloides) and estimated in vivo SDMADP and isoprene synthase activity from postillumination isoprene release. Isoprene emission capacity was 1.5-fold larger in mature than in young and old leaves. The initial quantum yield of isoprene emission (αI) increased by 2.5-fold with increasing leaf age primarily as the result of increasing SDMADP. The saturating light intensity (QI90) decreased by 2.3-fold with increasing leaf age, and this mainly reflected limited light-dependent increase of SDMADP possibly due to feedback inhibition by DMADP. These major age-dependent changes in the shape of the light response need consideration in modeling canopy isoprene emission.
机译:叶龄改变了质体类异戊二烯合成途径的最终产物二甲基烯丙基二磷酸酯(DMADP)在异戊二烯基转移酶反应(导致光合作用色素的合成)和异戊二烯合成之间的平衡,但是这些变化对环境响应的影响。尚未研究异戊二烯的排放。因为在受光限制的条件下,异戊二烯的发射速率受DMADP池大小(SDMADP)的控制,因此不同工艺所占份额的变化有望特别强烈地改变异戊二烯发射的光依赖性。我们检查了杂种杨木(杨木x tremuloides)的年轻的完全膨胀,成熟和老的非衰老叶片中异戊二烯发射的光响应,并根据光照后异戊二烯的释放估算了体内的SDMADP和异戊二烯合酶活性。成熟的异戊二烯排放能力是老叶和老叶的1.5倍。异戊二烯排放(αI)的初始量子产率随叶龄的增加而增加了2.5倍,这主要是由于SDMADP的增加所致。饱和光强度(QI90)随着叶龄的增加而降低了2.3倍,这主要反映了SDMADP有限的光依赖性增加,这可能是由于DMADP的反馈抑制所致。在建模冠层异戊二烯发射时,需要考虑光响应形状的这些主要的与年龄相关的变化。

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