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首页> 外文期刊>Plant physiology >INFLUENCE OF ENVIRONMENTAL FACTORS AND AIR COMPOSITION ON THE EMISSION OF ALPHA-PINENE FROM QUERCUS ILEX LEAVES
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INFLUENCE OF ENVIRONMENTAL FACTORS AND AIR COMPOSITION ON THE EMISSION OF ALPHA-PINENE FROM QUERCUS ILEX LEAVES

机译:环境因子和空气组成对栎冬青树叶排放α-PIN的影响

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We studied the emission of alpha-pinene from Quercos ilex leaves. Only the abaxial side of the hypostomatous Q. ilex leaf emits alpha-pinene. Light induced photosynthesis and alpha-pinene emission. However, the response of photosynthesis to dark-to-light transitions was faster than that of alpha-pinene, suggesting that ATP controls the emission. The emission was higher at 30 than at 20 degrees C, whereas photosynthesis did not change. Therefore, the relationship between photosynthesis and alpha-pinene emission does not always hold. When CO2 was removed from the air, transpiration was stimulated but photosynthesis and alpha-pinene emission were inhibited. alpha-Pinene inhibition was more rapid under low O-2. When CO2 in the air was increased, photosynthesis was stimulated and transpiration was reduced, but alpha-pinene emission was unaffected. Therefore, the emission depends on the availability of photosynthetic carbon, is not saturated at ambient CO2, and is not dependent on stomatal opening. The pattern of alpha-pinene emission from Q. ilex is different from that of plants having specialized structures for storage and emission of terpenes. We suggest that alpha-pinene emitted by Q. ilex leaves is synthesized in the chloroplasts and shares the same biochemical pathway with isoprene emitted by isoprene-emitting oak species. [References: 28]
机译:我们研究了Quercos冬青叶中α-pine烯的发射。只有下气孔Q.冬青叶的背面发出α-pine烯。光诱导的光合作用和α-pine烯发射。但是,光合作用对暗光过渡的响应比α-pine烯的响应快,这表明ATP控制了发射。在30℃时的发射高于在20℃时的发射,而光合作用没有改变。因此,光合作用和α-pine烯发射之间的关系并不总是成立。当空气中的二氧化碳被去除时,蒸腾作用被刺激,但光合作用和α-pine烯的释放被抑制。在低O-2下,α-P烯的抑制作用更为迅速。当空气中的二氧化碳增加时,光合作用得到促进,蒸腾作用减少,但α-pine烯的释放不受影响。因此,排放取决于光合碳的可用性,在环境CO2下不会饱和,并且不依赖于气孔的开放。 Q. ilex的α-pine烯发射模式与具有专门结构以储存和发射萜烯的植物不同。我们建议Q.冬青树叶发出的α-pine烯是在叶绿体中合成的,并且与散发异戊二烯的橡树种散发的异戊二烯具有相同的生化途径。 [参考:28]

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