The determiner of photosynthetic acclimation induced by biochemical limitation under elevated CO2 in japonica rice

被引:15
作者
Yang, Kai [1 ,2 ,5 ]
Huang, Yao [1 ,2 ]
Yang, Jingrui [1 ,2 ]
Yu, Lingfei [1 ]
Hu, Zhenghua [3 ]
Sun, Wenjuan [1 ]
Zhang, Qing [4 ,6 ]
机构
[1] Chinese Acad Sci, Inst Bot, State Key Lab Vegetat & Environm Change, Beijing, Peoples R China
[2] Univ Chinese Acad Sci, Beijing, Peoples R China
[3] Nanjing Univ Informat Sci & Technol, Collaborat Innovat Ctr Forecast & Evaluat Meteorol, Sch Appl Meteorol, Nanjing, Peoples R China
[4] Chinese Acad Sci, Inst Atmospher Phys, State Key Lab Atmospher Boundary Layer Phys & Atmo, Beijing, Peoples R China
[5] Chinese Acad Sci, Inst Bot, 20 Nanxin Village,Xiangshan St, Beijing, Peoples R China
[6] Chinese Acad Sci, Insitute Atmospher Phys, 40 Huayanli,Beichen West Rd,POB 9804, Beijing 100029, Peoples R China
基金
中国国家自然科学基金;
关键词
Biochemical limitation; Photosynthetic acclimation; Photosynthetic nitrogen allocation; Japonica rice; WHEAT TRITICUM-AESTIVUM; NITROGEN ALLOCATION; MESOPHYLL CONDUCTANCE; ATMOSPHERIC CO2; STOMATAL CONDUCTANCE; LEAF PHOTOSYNTHESIS; SEASONAL-CHANGES; ENRICHMENT FACE; CARBON-DIOXIDE; GAS-EXCHANGE;
D O I
10.1016/j.jplph.2022.153889
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Photosynthetic acclimation to prolonged elevated CO2 could be attributed to the two limited biochemical capacity, ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) carboxylation and ribulose-1,5-bisphosphate (RuBP) regeneration, however, which one is the primary driver is unclear. To quantify photosynthetic acclimation induced by biochemical limitation, we investigated photosynthetic characteristics and leaf nitrogen allocation to photosynthetic apparatus (Rubisco, bioenergetics, and light-harvesting complex) in a japonica rice grown in open-top chambers at ambient CO2 and ambient CO2+200 mu mol mol- 1 (e [CO2]). Results showed that photosynthesis was stimulated under e [CO2], but concomitantly, photosynthetic acclimation obviously occurred across the whole growth stages. The content of leaf nitrogen allocation to Rubisco and biogenetics was reduced by e [CO2], while not in light-harvesting complex. Unlike the content, there was little effects of CO2 enrichment on the percentage of nitrogen allocation to photosynthetic components. Additionally, leaf nitrogen did not reallocate within photosynthetic apparatus until the imbalance of sink-source under e [CO2]. The contribution of biochemical limitations, including Rubisco carboxylation and RuBP regeneration, to photosynthetic acclimation averaged 36.2% and 63.8% over the growing seasons, respectively. This study suggests that acclimation of photosynthesis is mainly driven by RuBP regeneration limitation and highlights the importance of RuBP regeneration relative to Rubisco carboxylation in the future CO2 enrichment.
引用
收藏
页数:8
相关论文
共 50 条
[41]   Effects of Elevated CO2 on Maize Physiological and Biochemical Processes [J].
Khan, Pirzada ;
Aziz, Tariq ;
Jan, Rahmatullah ;
Kim, Kyung-Min .
AGRONOMY-BASEL, 2025, 15 (01)
[42]   Acclimation mechanisms to elevated CO2 in plants [J].
Walter, Lidiane Cristine ;
Rosa, Hamilton Telles ;
Streck, Nereu Augusto .
CIENCIA RURAL, 2015, 45 (09) :1564-1571
[43]   Biochemical versus stomatal acclimation of dynamic photosynthetic gas exchange to elevated CO2 in three horticultural species with contrasting stomatal morphology [J].
Zhang, Ningyi ;
Berman, Sarah R. ;
van den Berg, Tom ;
Chen, Yunke ;
Marcelis, Leo F. M. ;
Kaiser, Elias .
PLANT CELL AND ENVIRONMENT, 2024, 47 (12) :4516-4529
[44]   Species-specific morphological and physiological characteristics and progressive nitrogen limitation under elevated CO2 concentration [J].
Song, Woo Kyung ;
Byeon, Si Yeon ;
Lee, HoonTaek ;
Lee, Min Su ;
Ryu, Daun ;
Kang, Jun Won ;
Han, Sim Hee ;
Oh, Chang Young ;
Kim, Hyun Seok .
IFOREST-BIOGEOSCIENCES AND FORESTRY, 2020, 13 :270-278
[45]   The effect of potassium on photosynthetic acclimation in cucumber during CO2 enrichment [J].
Dabu, X. ;
Li, S. ;
Cai, Z. ;
Ge, T. ;
Hai, M. .
PHOTOSYNTHETICA, 2019, 57 (02) :640-645
[46]   Does ear C sink strength contribute to overcoming photosynthetic acclimation of wheat plants exposed to elevated CO2? [J].
Aranjuelo, Iker ;
Cabrera-Bosquet, Llorenc ;
Morcuende, Rosa ;
Christophe Avice, Jean ;
Nogues, Salvador ;
Luis Araus, Jose ;
Martinez-Carrasco, Rafael ;
Perez, Pilar .
JOURNAL OF EXPERIMENTAL BOTANY, 2011, 62 (11) :3957-3969
[47]   Gas exchange and photosynthetic acclimation over subambient to elevated CO2 in a C3-C4 grassland [J].
Anderson, LJ ;
Maherali, H ;
Johnson, HB ;
Polley, HW ;
Jackson, RB .
GLOBAL CHANGE BIOLOGY, 2001, 7 (06) :693-707
[48]   Elevated CO2 Shifts Photosynthetic Constraint from Stomatal to Biochemical Limitations During Induction in Populus tomentosa and Eucalyptus robusta [J].
Tang, Xianhui ;
Zhao, Jie ;
Zhou, Jiayu ;
Zhu, Qingchen ;
Sheng, Xiyang ;
Yue, Chao .
PLANTS-BASEL, 2025, 14 (01)
[49]   The G protein γ subunit is important for nitrogen uptake and grain yield in rice under elevated CO2 [J].
Wang, Ke ;
Xu, Feiyun ;
Yuan, Wei ;
Feng, Zhiwei ;
Sun, Leyun ;
Xu, Weifeng .
PLANT AND SOIL, 2023, 482 (1-2) :543-551
[50]   Diurnal and Seasonal Variations in the Photosynthetic Characteristics and the Gas Exchange Simulations of Two Rice Cultivars Grown at Ambient and Elevated CO2 [J].
Miao, Yuxuan ;
Cai, Yao ;
Wu, Hao ;
Wang, Dan .
FRONTIERS IN PLANT SCIENCE, 2021, 12