...
首页> 外文期刊>African Journal of Microbiology Research >Difference in photoinhibition and photoprotection between seedings and saplings leaves of Taxus cuspidata under high irradiance
【24h】

Difference in photoinhibition and photoprotection between seedings and saplings leaves of Taxus cuspidata under high irradiance

机译:高辐射下东北红豆杉幼苗与幼树叶片光抑制和光保护的差异。

获取原文

摘要

The differences in chloroplast pigments, gas exchange and photosystemII (PSII) photochemistry as well as xanthophyll in seeding and sapling leaves of?Taxus cuspidatagrown in full sunlight were examined. Compared with the sapling leaves, the chlorophyll content, photosynthetic capacity and light intensity for saturation of photosynthesis were lower in seeding leaves. The response curves of PSII photochemistry demonstrated that both seeding and sapling leaves occurred a down-regulation of PSII photochemistry at high irradiance, more serious down-regulation being examined in seeding leaves. And the down-regulation of PSII photochemistry occurred significantly when measured at midday, indicating that photoinhibition occurred heavily in seeding leaves when exposed to high light. The actual PSII efficiency (ΦPSII) and the efficiency of excitation capture by open PSII centers drastically decreased with the increase of non-photochemical quenching (NPQ) at midday. The photorespiration rate in seeding leaves was lower than that in sapling leaves under high irradiance. The results indicated that the xanthophlly cycle was activated in both the seeding and sapling leaves at midday and an increase of de-epoxidation were observed, but a little higher level of de-epoxidation was measured in seeding leaves. The xanthophyll cycle may play an important role in the dissipation of excess light energy associated with NPQ to avoid photodamage. Our results suggested that photoinhibition occurred in seeding leaves significantly due to lower capacity of CO2assimilation, photorespiration and the light intensity for saturation of photosynthesis, as well as the lower PSII photochemistry at high irradiance; therefore the?T. cuspidataseeding could not adapt to growing at high irradiance.
机译:研究了在阳光充足的条件下,虎杖种子和幼树叶片中叶绿体色素,气体交换和光系统II(PSII)光化学以及叶黄素的差异。与幼树叶片相比,播种叶片的叶绿素含量,光合能力和光合作用饱和度均较低。 PSII光化学的响应曲线表明,在高辐照度下,播种叶片和幼树叶片均发生PSII光化学的下调,而在播种叶片中观察到更严重的下调。中午测量时,PSII光化学的下调显着发生,表明当暴露于强光下时,光抑制在种子叶片中大量发生。随着中午非光化学猝灭(NPQ)的增加,实际PSII效率(ΦPSII)和开放PSII中心激发捕获的效率急剧下降。在高辐照度下,种子叶片的光呼吸速率低于幼树叶片的光呼吸速率。结果表明,中午时分,种子叶和幼树叶片的黄腐周期都被激活,并且脱环氧化作用有所增加,但是种子叶中的脱环氧化作用水平更高。叶黄素循环在与NPQ相关的多余光能的消散中可能起重要作用,以避免光损伤。我们的结果表明,由于CO2同化能力,光呼吸作用和光合作用饱和度的光强度降低,以及高辐照度下较低的PSII光化学作用,播种叶片中发生了光抑制作用。因此? cuspidataseeding无法适应高照度下的生长。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号