Higher CO2 Assimilation in Selected Rice Recombinant Inbred Lines Is Driven by Higher CO2 Diffusion and Light Use Efficiency Related to Leaf Anatomy and Mesophyll Cell Density

被引:5
作者
Zeng, Faliang [1 ]
Zhu, Lin [1 ]
Wang, Guojiao [1 ]
Liang, Yinpei [1 ]
Ma, Dianrong [1 ]
Wang, Jiayu [1 ]
机构
[1] Shenyang Agr Univ, Rice Res Inst, Key Lab Rice Biol & Genet Breeding Northeast China, Minist Agr & Rural Areas, Shenyang, Peoples R China
关键词
leaf anatomy; CO2; diffusion; stomatal conductance; mesophyll conductance; electron transport rate; mesophyll cell number; photosynthesis; PHOTOSYNTHETIC CAPACITY; RUBISCO ACTIVITY; CARBON-DIOXIDE; CONDUCTANCE; PROSPECTS; PATHWAY; LEAVES; RANGE; YIELD; FOOD;
D O I
10.3389/fpls.2022.915050
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Leaf anatomy determining the light distribution within the leaf and exerting influence on CO2 diffusion is considered to have dramatic potential for photosynthesis performance increase. In this study, we observed that two rice recombinant inbred lines, H138 and H217 (RILF11 plants from Sasanishiki x IRAT10), have higher net CO2 assimilation (An) than their parent Sasanishiki due mainly to the improvement of leaf anatomy. Our results showed that An positively correlated with anatomy traits' mesophyll cell number per cross-sectional area (NO.mescell/A(cros)) and mesophyll area (A(mes)). NO.(mescell)/A(cros) exert direct and indirect effects on An. Compared to Sasanishiki flag leaves, IRAT10, H138, and H217 have higher mesophyll cell numbers. Simultaneously, higher chlorophyll content and expression of genes encoding the light-harvesting protein of PSII and PSI (Lhcb1, 2, 3 and Lhca1, 2, 3) were recorded in IRAT10, H138, and H217, which facilitates light use efficiency. Higher electron transport rate and RuBP concentration were recorded in IRAT10, H138, and H217 flag leaves. Retinoblastoma-related gene (OsRBR1), exerting effects on mesophyll cell density, can be used to modify leaf anatomy for improving leaf photosynthesis. Additionally, higher stomatal conductance and mesophyll conductance were also recorded in H138 and H217 than in Sasanishiki. Furthermore, we modeled mesophyll conductance through anatomical traits, and the results revealed that chloroplast thickness was the dominant factor restricting CO2 diffusion within mesophyll cells rather than cell wall thickness. Higher RuBP content accompanied by higher CO2 concentration within the carboxylation set in H138 and H217 flag leaves contributed to higher CO2 assimilation.
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页数:15
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共 54 条
[1]   The cyclin-dependent kinase inhibitor orysa;KRP1 plays an important role in seed development of rice [J].
Barroco, Rosa Maria ;
Peres, Adrian ;
Droual, Anne-Marie ;
De Veylder, Lieven ;
Nguyen, Le Son Long ;
De Wolf, Joris ;
Mironov, Vladimir ;
Peerbolte, Rindert ;
Beemster, Gerrit T. S. ;
Inze, Dirk ;
Broekaert, Willem F. ;
Frankard, Valerie .
PLANT PHYSIOLOGY, 2006, 142 (03) :1053-1064
[2]   Leaf and Plant Age Affects Photosynthetic Performance and Photoprotective Capacity [J].
Bielczynski, Ludwik W. ;
Lacki, Mateusz K. ;
Hoefnagels, Iris ;
Gambin, Anna ;
Croce, Roberta .
PLANT PHYSIOLOGY, 2017, 175 (04) :1634-1648
[3]   Cell wall composition strongly influences mesophyll conductance in gymnosperms [J].
Carriqui, Marc ;
Nadal, Miquel ;
Clemente-Moreno, Maria J. ;
Gago, Jorge ;
Miedes, Eva ;
Flexas, Jaume .
PLANT JOURNAL, 2020, 103 (04) :1372-1385
[4]   Mesophyll conductance: walls, membranes and spatial complexity [J].
Evans, John R. .
NEW PHYTOLOGIST, 2021, 229 (04) :1864-1876
[5]   Resistances along the CO2 diffusion pathway inside leaves [J].
Evans, John R. ;
Kaldenhoff, Ralf ;
Genty, Bernard ;
Terashima, Ichiro .
JOURNAL OF EXPERIMENTAL BOTANY, 2009, 60 (08) :2235-2248
[6]   THE RELATIONSHIP BETWEEN CO2 TRANSFER CONDUCTANCE AND LEAF ANATOMY IN TRANSGENIC TOBACCO WITH A REDUCED CONTENT OF RUBISCO [J].
EVANS, JR ;
VONCAEMMERER, S ;
SETCHELL, BA ;
HUDSON, GS .
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY, 1994, 21 (04) :475-495
[7]   Phosphorylation network dynamics in the control of cell cycle transitions [J].
Fisher, Daniel ;
Krasinska, Liliana ;
Coudreuse, Damien ;
Novak, Bela .
JOURNAL OF CELL SCIENCE, 2012, 125 (20) :4703-4711
[8]   Mesophyll conductance to CO2:: current knowledge and future prospects [J].
Flexas, Jaume ;
Ribas-Carbo, Miquel ;
Diaz-Espejo, Antonio ;
Galmes, Jeroni ;
Medrano, Hiplito .
PLANT CELL AND ENVIRONMENT, 2008, 31 (05) :602-621
[9]   Rapid variations of mesophyll conductance in response to changes in CO2 concentration around leaves [J].
Flexas, Jaume ;
Diaz-Espejo, Antonio ;
Galmes, Jeroni ;
Kaldenhoff, Ralf ;
Medrano, Hipolito ;
Ribas-Carbo, Miquel .
PLANT CELL AND ENVIRONMENT, 2007, 30 (10) :1284-1298
[10]   Cell wall thickness and composition are involved in photosynthetic limitation [J].
Flexas, Jaume ;
Clemente-Moreno, Maria J. ;
Bota, Josefina ;
Brodribb, Tim J. ;
Gago, Jorge ;
Mizokami, Yusuke ;
Nadal, Miquel ;
Perera-Castro, Alicia, V ;
Roig-Oliver, Margalida ;
Sugiura, Daisuke ;
Xiong, Dongliang ;
Carriqui, Marc .
JOURNAL OF EXPERIMENTAL BOTANY, 2021, 72 (11) :3971-3986