Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2005, Vol. 31 ›› Issue (12): 1544-1551.

• ORIGINAL PAPERS • Previous Articles     Next Articles

Differences between Maize and Wheat for Non-photochemical Quenching (qN) during Photosynthetic Induction

ZHAO Ming; Ryuichi Ishil; DING Zai-Song; JIANG Wen; CHEN Li   

  1. 1Institute of Crop Sciences, Chinese Academy of Agricultural Scienses, Beijing 100081,China
  • Received:2004-11-17 Revised:1900-01-01 Online:2005-12-12 Published:2005-12-12
  • Contact: ZHAO Ming

Abstract: In order to compare the difference between maize (Zea mays L.) and wheat (Triticum aestivum L.) in response to adaptation from dark to light, the dynamics of non-photochemical quenching (qN) were observed and analyzed during photosynthetic induction. The results showed that the dynamics of qN could be classified into three types, which were F-form, M-form and S-form.During the dark adaptation from 15 minutes to 24 hours, wheat had F-form and M-form,while M-from and S-form were showed in maize. There was no marked difference between maize and wheat in Fv/Fm,qp and ΦpsII,while apparent difference existed in qN, and the time of reaching the maximum and steady-state of qN(expressed as TqNmtx and TqN, respectively),which were new parameters defined here, was markedly higher in maize leaves than in wheat leaves when tllumination occurred after dark adaptation. However, there was no apparent difference between maize and wheat in the time needed to reach the steady-state of photosynthetic rate(Pm) and stomatal conductance(Gs) under 1600 μmol·m-2·s-1 light intensity after dark adaptation. Meanwhile, the limitation of CO2 supplied to leaves with plastic film sealing up the leaves in a short period(less than 30 min) had a minimal effect on the dynamics of qN, which implied that the different dynamics did not result from the start of CO2 assimilation or stomatal regulstion. The messurement of the typical pattern for oxidation-reduction of P700 and the estimate of the functional pool size of intersystem electrons per reaction center supported our belief that the redox state of P700 in PSI and the pool size of the intersystem were not the main factors that led to great differences in dynamics of qN between maise and wheat. However, the analsis of the qN component showed that high-energy state quenching(qE), state transitional quenching(qT) and photoinhibitory quenching (q1) were 55.6%, 18.5%, and 25.9% of qN when reaching qNmex, respectively, which meant it might be qE that resulted in the different dynsmics of qN between maize and wheat. The results suggested that maize(C4) might have a higher qE to maintain the proton gradient of thylakoid than wheat (C3) for adapting to the transition from dark to light and to initate the use of NADPH and ATP by carbon fixation during photosynthetic induction.

Key words: Maize (Zea mays L.), Wheat (Triticum aestivum L.), Photosynthesis, Non-photochemical quenching of chlorophyll fluorescence

CLC Number: 

  • Q945
[1] GAO Zhen, LIANG Xiao-Gui, ZHANG Li, ZHAO Xue, DU Xiong, CUI Yan-Hong, ZHOU Shun-Li. Effects of irrigating at different growth stages on kernel number of spring maize in the North China Plain [J]. Acta Agronomica Sinica, 2021, 47(7): 1324-1331.
[2] ZHOU Lian, LIU Chao-Xian, XIONG Yu-Han, ZHOU Jing, CAI Yi-Lin. Functional analysis of plasma membrane intrinsic protein ZmPIP1;1 involved in drought tolerance and photosynthesis in maize [J]. Acta Agronomica Sinica, 2021, 47(3): 472-480.
[3] HOU Hui-Zhi, ZHANG Xu-Cheng, FANG Yan-Jie, YU Xian-Feng, WANG Hong-Li, MA Yi-Fan, ZHANG Guo-Ping, LEI Kang-Ning. Effects of micro ridge-furrow with plastic mulching on soil hydrothermal environment and photosynthesis at seedling stage of spring wheat on cold rain-fed area [J]. Acta Agronomica Sinica, 2020, 46(9): 1398-1407.
[4] Jing-Nan ZOU,Qi YU,Xi-Jun JIN,Ming-Yao WANG,Bin QIN,Chun-Yuan REN,Meng-Xue WANG,Yu-Xian ZHANG. Effects of exogenous melatonin on physiology and yield of soybean during seed filling stage under drought stress [J]. Acta Agronomica Sinica, 2020, 46(5): 745-758.
[5] YU Qi,FENG Nai-Jie,WANG Shi-Ya,ZUO Guan-Qiang,ZHENG Dian-Feng. Effects of S3307 on the photosynthesis and yield of mung bean at R1 and R5 stages under waterlogging stress [J]. Acta Agronomica Sinica, 2019, 45(7): 1080-1089.
[6] YAN Qing-Qing,ZHANG Ju-Song,DAI Jian-Min,DOU Qiao-Qiao. Effects of glycinebetain on photosynthesis and biomass accumulation of island cotton seedlings under saline alkali stress [J]. Acta Agronomica Sinica, 2019, 45(7): 1128-1135.
[7] Han-Yu WU,Fei XIAO,Ya-Li ZHANG,Chuang-Dao JIANG,Wang-Feng ZHANG. Repetitive intense flashes inhibit photosystem II activity and thermal dissipation in cotton leaves [J]. Acta Agronomica Sinica, 2019, 45(5): 792-797.
[8] Han-Yu WU,Ya-Jun ZHANG,Wang-Feng ZHANG,Ke-Ru WANG,Shao-Kun LI,Chuang-Dao JIANG. Photosynthetic characteristics of senescent leaf induced by high planting density of maize at heading stage in the field [J]. Acta Agronomica Sinica, 2019, 45(2): 248-255.
[9] Qing-Fei WU, Lei QIN, Lei DONG, Ze-Hong DING, Ping-Hua LI, Bai-Juan DU. Transcriptome Analysis on a Maize Photosynthetic Mutant hcf136 (high chlorophyll fluorescence 136) [J]. Acta Agronomica Sinica, 2018, 44(04): 493-504.
[10] BAI Wei, ZHANG Li-Zhen, PANG Huan-Cheng, SUN Zhan-Xiang, NIU Shi-Wei, CAI Qian,AN Jing-Wen. Effects of Straw Returning Combined with Nitrogen Fertilizer on Photosynthetic Performance and Yield of Spring Maize in Northeast China [J]. Acta Agron Sin, 2017, 43(12): 1845-1855.
[11] XIAO Fei,YANG Yan-Long,WANG Ya-Ting,MA Hui,ZHANG Wang-Feng. Effects of Low Temperature on PSI and PSII Photoinhibition in Cotton Leaf at Boll Stage [J]. Acta Agron Sin, 2017, 43(09): 1401-1409.
[12] WU Xiao-Li,LI Chao-Su,TANG Yong-Lu,LI Jun,MA Xiao-Ling,LI Shi-Zhao,HUANG Ming-Bo. Canopy Architecture, Physiological Characteristics and Assimilate Partitioning in Wheat Cultivars with 9000 kg hm?2 Yield Potential in Sichuan Basin [J]. Acta Agron Sin, 2017, 43(07): 1043-1056.
[13] XU Yao-Zhao,ZENG Xiu-Cun,ZHANG Fen-Qin,SUN Jia,SUN Wan-Cang,WU Jun-Yan,FANG Yan,LIU Zi-Gang,SUN Bo-Lin. Response of Leaf Anatomical Structure and Photosynthetic Characteristics of Winter Turnip Rape (B. rapa L.) to Low Temperature before Winter [J]. Acta Agron Sin, 2017, 43(03): 432-441.
[14] XU Wen,SHEN Hao,GUO Jun,YU Xiao-Cong,LI Xiang,YANG Yan-Hui,MA Xiao,ZHAO Shi-Jie,SONG Jian-Min. Drought Resistance of Wheat NILs with Different Cuticular Wax Contents in Flag Leaf [J]. Acta Agron Sin, 2016, 42(11): 1700-1707.
[15] LIU Ling-Yun,LIU Hao,ZHAO Jing,WANG Yan-Xia,WANG Peng-Tao*. Map-based Cloning and Functional Analysis of Low Chlorophyll Fluorescence Gene LCF3 in Arabidopsis thaliana [J]. Acta Agron Sin, 2016, 42(05): 690-695.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!