首页> 外文期刊>Journal of Experimental Botany >Restoration of photosystem II photochemistry and carbon assimilation and related changes in chlorophyll and protein contents during the rehydration of desiccated Xerophyta scabrida leaves
【24h】

Restoration of photosystem II photochemistry and carbon assimilation and related changes in chlorophyll and protein contents during the rehydration of desiccated Xerophyta scabrida leaves

机译:干燥旱生叶片复水过程中光系统II光化学和碳同化的恢复以及叶绿素和蛋白质含量的相关变化

获取原文
获取原文并翻译 | 示例
           

摘要

Recovery of photosynthesis in rehydrating desiccated leaves of the poikilochlorophyllous desiccation-tolerant plant Xerophyta scabrida was investigated. Detached leaves were remoistened under 12 h light/dark cycles for 96 h. Water, chlorophyll (Chl), and protein contents, Chl fluorescence, photosynthesis–CO2 concentration response, and the amount and activity of Rubisco were measured at intervals during the rehydration period. Leaf relative water contents reached 87% in 12 h and full turgor in 96 h. Chl synthesis was slower before than after 24 h, and Chla:Chlb ratios changed from 0.13 to 2.6 in 48 h. The maximum quantum efficiency recovered faster during rehydration than the photosystem II operating efficiency and the efficiency factor, which is known to depend mainly on the use of the electron transport chain products. From 24 h to 96 h of rehydration, net carbon fixation was Rubisco limited, rather than electron transport limited. Total Rubisco activity increased during rehydration more than the Rubisco protein content. Desiccated leaves contained, in a close to functional state, more than half the amount of the Rubisco protein present in rehydrated leaves. The results suggest that in X. scabrida leaves Rubisco adopts a special, protective conformation and recovers its activity during rehydration through modifications in redox status.
机译:研究了耐多草叶绿化干燥植物旱生干旱菌(Xerophyta scabrida)的复水干燥叶片中光合作用的恢复。将分离的叶子在12小时的明/暗循环中湿润96小时。在补液期间,定期测量水分,叶绿素(Chl)和蛋白质含量,Chl荧光,光合作用-CO 2 浓度响应以及Rubisco的量和活性。叶片相对含水量在12 h达到87%,在96 h达到饱满。 Chl的合成比24小时之前要慢,并且Chla:Chlb的比率在48小时内从0.13变为2.6。在水合过程中,最大量子效率的恢复速度快于光系统II的工作效率和效率因数,而效率因数主要取决于电子传输链产物的使用。从补液的24小时到96小时,净碳固定受到Rubisco的限制,而不是电子传输的限制。在补液过程中,总Rubisco活性增加的幅度超过Rubisco蛋白含量。脱水后的叶片在接近功能状态时所含的水合叶片中的Rubisco蛋白含量超过其一半。结果表明,在腐臭假单胞菌叶中,Rubisco具有特殊的保护性构象,并通过修饰氧化还原状态恢复了补液过程中的活性。

著录项

相似文献

  • 外文文献
  • 中文文献
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