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Systemic Signaling in the Photosynthetic Induction Phase of Calamagrostis angustifolia on the Sanjiang Plain Wetland of Northeast China

机译:东北三江平原湿地夜光藻光合诱导期的系统信号传递。

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Deyeuxia angustifolia was grown in the Sanjiang plain wetland. The treatments with different light intensities on the different leaf area at different positions, effects of illumination on the photosynthetic induction process of the leaves without pre-illumination (target leaves) was studied systematically. The possible mechanism and the signal transduction pathway of the systemic regulation were explored. The results showed that illumination of systemic leaves significantly increased the photosynthetic induction rate of target leaves. The time for reaching 50% of the maximum photosynthetic rate in the target leaves was reduced by about 19%, and the time for reaching 90% by about 27%. Either one or multiple systemic leaves were pre-illuminated and the photosynthetic induction rates of target leaves were all significantly accelerated. No significant difference was detected on the extent of the promotion effects of photosynthetic induction rates in target leaves. When the systemic leaves were illuminated with a Photosynthetic Photon Flux Density (PPFD) of 30 μmol m -2 s -1 , the photosynthetic induction rate of target leaves was not significantly enhanced. When the systemic leaves were illuminated with PPFDs of 100, 600 or 1300 μmol m -2 s -1 , photosynthetic induction rates of target leaves were significantly increased for all values; however, no significant differences were found on the extents of the enhancement effects on the photosynthetic induction rates of the target leaves when the systemic leaves were treated with more than these three light intensities. An effective systemic signaling could only be produced when the systemic leaves were illuminated with a light intensity above a certain threshold, and as soon the illumination exceeded this threshold, the strength of the systemic signaling did not increase with further increase in the light intensity.
机译:Deyeuxia angustifolia生长在三江平原湿地上。系统地研究了在不同位置,不同位置,不同叶片面积上采用不同光强度的处理,光照对未进行预光照的叶片(目标叶片)光合诱导过程的影响。探索了全身调节的可能机制和信号转导途径。结果表明,全身叶片光照显着提高了目标叶片的光合诱导速率。达到目标叶片最大光合速率的50%的时间减少了约19%,达到90%的时间减少了约27%。预先照亮了一个或多个系统叶片,并且显着加快了目标叶片的光合诱导速率。在目标叶片中光合作用诱导率的促进作用程度上未检测到显着差异。当全身叶片以30μmolm -2 s -1的光合光子通量密度(PPFD)照射时,目标叶片的光合诱导速率并未显着提高。当用100、600或1300μmolm -2 s -1的PPFD照射全身叶片时,所有值的目标叶片的光合诱导速率均显着提高;然而,当用超过这三种光强度处理全身叶片时,对目标叶片的光合诱导速率的增强作用程度没有发现显着差异。仅当用高于某个阈值的光强度照亮全身叶片时,才能产生有效的全身信号,并且一旦照度超过该阈值,全身信号的强度就不会随着光强度的进一步增加而增加。

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