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光呼吸研究进展 被引量:1

Research Advances in Photorespiration
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摘要 光呼吸是指植物绿色组织依赖光能吸收O_(2)并释放CO_(2)的过程,它被认为是一个浪费能量的过程。正常生长的C_(3)植物光呼吸可损耗光合产物的25%~30%,在干旱、高温、高光等逆境胁迫下,该损耗可高达50%,因此,显著提高C_(3)植物的生产力可通过减少光呼吸通量来实现。尽管光呼吸对植物生产力的负面影响明显,但它对植物一些必要生理活动可能起着重要作用,其中包括参与光保护、H_(2)O_(2)信号发生、氮代谢、光氧化和抗逆反应等。该文对光呼吸的改造优化需要把握好平衡点与适配度。基于Rubisco改造、CO_(2)浓缩机制(CCM)和光呼吸支路创建的光呼吸改造研究进展进行了综述。通过了解调控光呼吸提高植物光能转化效率方面的最新进展,可望为光呼吸代谢的分子调控及改良研究提供指导。 Photorespiration is a process,in which plant green tissue absorbs O_(2) and releases CO_(2) depending on light energy,which is considered to be a waste of energy.Photorespiration of normally growing C_(3) plants can lose 25%-30%of photosynthate,and the loss can be as high as 50%under stresses,such as drought,high temperature and high light.Therefore,significantly improving the productivity of C_(3) plants can be achieved by reducing photorespiration flux.Although photorespiration has obvious negative effects on plant productivity,it may play an important role in some essential physiological activities of plants,including participating in photoprotection,H_(2)O_(2) signaling,nitrogen metabolism,photooxidation and stress response.Thus,the transformation and optimization of photorespiration need to grasp the balance point and adaptation.The photorespiration modification based on Rubisco modification,CO_(2) concentration mechanism(CCM)and photorespiration branch creation was reviewed.By understanding the latest progress in the regulation of photorespiration to improve the efficiency of plant light conversion,it is expected to provide guidance for the studies on molecular regulation and improvement of photorespiration metabolism.
作者 钟孝芬 李波娣 李敏姬 张智胜 彭新湘 ZHONG Xiaofen;LI Bodi;LI Minji;ZHANG Zhisheng;PENG Xinxiang(State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources,South China Agricultural University,Guangzhou 510642,China)
出处 《热带亚热带植物学报》 CAS CSCD 北大核心 2022年第6期782-790,共9页 Journal of Tropical and Subtropical Botany
基金 广东省自然科学基金项目(2019B030302006) 国家重点基础研究发展计划项目(973计划)(2020YFA0907603)资助。
关键词 光呼吸 RUBISCO CO_(2)浓缩机制 光呼吸支路 Photorespiration Rubisco CO_(2)concentration mechanism Photorespiration bypass
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  • 1Yang, JC,Zhang, JH.Grain filling of cereals under soil drying[J].中国生物学文摘,2006,20(2):38-38. 被引量:99
  • 2武维华.植物生理学[M].北京:科学出版社.2002:233-234.
  • 3匡廷云.作物光能利用效率与调控[M].济南:山东科学技术出版社,2003:366-384.
  • 4Eckardt N A. Photo respiration revisited[J]. The Plant Cell, 2005, 17: 2139-2141.
  • 5Wingler A, Lea P], Quick W P, et al. Photorespiration: metabolic pathways and their role in stress protection[J]. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences, 2000, 355: 1517-1529.
  • 6Igarashi D, Tsuchida H, Miyao M, et al. Glutamate: glyoxylate aminotransferase modulates amino acid content during photorespiration[J]. Plant Physiology, 2006, 142: 901-910.
  • 7Coschigano K T, Melo-Oliveira R, Lim], et al. Arabido psis gls mutants and distinct Fd-GOGAT genes: implications for photorespiration and primary nitrogen assimilation[J]. The Plant Ceil, 1998, 10: 741-752.
  • 8Sharkey T D. Estimating the rate of photorespiration in leaves[J]. Physiologia Plantarum , 1988, 73: 147-152.
  • 9Zelitch I. Increased rate of net photosynthetic carbon dioxide uptake caused by the inhibition of glycolate oxidase[J]. Plant Physiology, 1966, 41: 1623-1631.
  • 10Osmond C B, Grace S C. Perspectives on photoinhibition and photo respiration in the field: quintessential inefficiencies of the light and dark reactions of photosynthesis[J]. Journal of Experimental Botany, 1995, 46: 1351-1362.

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