Photosynthesis and yield response to elevated CO2, C4 plant foxtail millet behaves similarly to C3 species

被引:32
作者
Li, Ping [1 ,2 ]
Li, Bingyan [1 ]
Seneweera, Saman [3 ]
Zong, Yuzheng [1 ]
Li, Frank Yonghong [1 ,4 ]
Han, Yuanhuai [1 ,2 ,5 ]
Hao, Xingyu [1 ]
机构
[1] Shanxi Agr Univ, Coll Agr, Taigu 030801, Peoples R China
[2] Shanxi Key Lab Genet Resources & Genet Improvemen, Taigu 030801, Shanxi, Peoples R China
[3] Natl Inst Fundamental Studies, Kandy 20000, Sri Lanka
[4] Inner Mongolia Univ, Coll Life Sci, Ecol, Huhehot 010021, Sri Lanka
[5] Minist Agr, Key Lab Crop Gene Resources & Germplasm Enhanceme, Taiyuan 030031, Shanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Elevated [CO2; Foxtail millet; Photosynthesis; Yield; Gene expression; WATER-USE EFFICIENCY; CLIMATE-CHANGE IMPACTS; GENE-EXPRESSION; STOMATAL CONDUCTANCE; GROWTH-RESPONSE; ASPEN TREES; DROUGHT; INCREASES; LEAVES; MAIZE;
D O I
10.1016/j.plantsci.2019.05.006
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Foxtail millet (Setaria italica) is a nutrient-rich food source traditionally grown in arid and semi-arid areas, as it is well adapted to drought climate. Yet there is limited information as how the crop responses to the changing climate. In order to investigate the response of foxtail millet to elevated [CO2] and the underlying mechanism, the crop was grown at ambient [CO2] (400 mu mol mol(-1)) and elevated [CO2] (600 mu mol mol(-1)) in an open-top chamber (OTC) experimental facility in North China. The changes in leaf photosynthesis, chlorophyll fluorescence, biomass, yield and global gene expression in response to elevated [CO2] were determined. Despite foxtail millet being a C-4 photosynthetic crop, photosynthetic rates (P-N) and intrinsic water-use efficiency (WUEi), were increased under elevated [CO2]. Similarly, grain yield and above-ground biomass also significantly increased (P < 0.05) for the two years of experimentation under elevated [CO2]. Increases in seeds and tiller number, spike and stem weight were the main contributors to the increased grain yield and biomass. Using transcriptomic analyses, this study further identified some genes which play a role in cell wall reinforcement, shoot initiation, stomatal conductance, carbon fixation, glycolysis / gluconeogenesis responsive to elevated [CO2]. Changes in these genes reduced plant height, increased stem diameters, and promote CO2 fixation. Higher photosynthetic rates at elevated [CO2] demonstrated that foxtail millet was not photosynthetically saturated at elevated [CO2] and its photosynthesis response to elevated [CO2] were analogous to C-3 plants.
引用
收藏
页码:239 / 247
页数:9
相关论文
共 72 条
[1]   What have we learned from 15 years of free-air CO2 enrichment (FACE)?: A meta-analytic review of the responses of photosynthesis, canopy [J].
Ainsworth, EA ;
Long, SP .
NEW PHYTOLOGIST, 2005, 165 (02) :351-371
[2]   The response of photosynthesis and stomatal conductance to rising [CO2]:: mechanisms and environmental interactions [J].
Ainsworth, Elizabeth A. ;
Rogers, Alistair .
PLANT CELL AND ENVIRONMENT, 2007, 30 (03) :258-270
[3]   The effects of elevated CO2 concentration on soybean gene expression.: An analysis of growing and mature leaves [J].
Ainsworth, Elizabeth A. ;
Rogers, Alistair ;
Vodkin, Lila O. ;
Walter, Achim ;
Schurr, Ulrich .
PLANT PHYSIOLOGY, 2006, 142 (01) :135-147
[4]   Elevated CO2 increases water use efficiency by sustaining photosynthesis of water-limited maize and sorghum [J].
Allen, Leon Hartwell, Jr. ;
Kakani, Vijaya Gopal ;
Vu, Joseph C. V. ;
Boote, Kenneth J. .
JOURNAL OF PLANT PHYSIOLOGY, 2011, 168 (16) :1909-1918
[5]   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
[6]   The significance of digital gene expression profiles [J].
Audic, S ;
Claverie, JM .
GENOME RESEARCH, 1997, 7 (10) :986-995
[7]   Logistic Regression Modeling of Cropping Systems To Predict Fumonisin Contamination in Maize [J].
Battilani, Paola ;
Pietri, Amedeo ;
Barbano, Carlo ;
Scandolara, Andrea ;
Bertuzzi, Terenzio ;
Marocco, Adriano .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2008, 56 (21) :10433-10438
[8]   Reference genome sequence of the model plant Setaria [J].
Bennetzen, Jeffrey L. ;
Schmutz, Jeremy ;
Wang, Hao ;
Percifield, Ryan ;
Hawkins, Jennifer ;
Pontaroli, Ana C. ;
Estep, Matt ;
Feng, Liang ;
Vaughn, Justin N. ;
Grimwood, Jane ;
Jenkins, Jerry ;
Barry, Kerrie ;
Lindquist, Erika ;
Hellsten, Uffe ;
Deshpande, Shweta ;
Wang, Xuewen ;
Wu, Xiaomei ;
Mitros, Therese ;
Triplett, Jimmy ;
Yang, Xiaohan ;
Ye, Chu-Yu ;
Mauro-Herrera, Margarita ;
Wang, Lin ;
Li, Pinghua ;
Sharma, Manoj ;
Sharma, Rita ;
Ronald, Pamela C. ;
Panaud, Olivier ;
Kellogg, Elizabeth A. ;
Brutnell, Thomas P. ;
Doust, Andrew N. ;
Tuskan, Gerald A. ;
Rokhsar, Daniel ;
Devos, Katrien M. .
NATURE BIOTECHNOLOGY, 2012, 30 (06) :555-+
[9]   Climate change impacts on the potential productivity of corn and winter wheat in their primary United States growing regions [J].
Brown, RA ;
Rosenberg, NJ .
CLIMATIC CHANGE, 1999, 41 (01) :73-107
[10]   Expression patterns of C- and N-metabolism related genes in wheat are changed during senescence under elevated CO2 in dry-land agriculture [J].
Buchner, Peter ;
Tausz, Michael ;
Ford, Rebecca ;
Leo, Audrey ;
Fitzgerald, Glenn J. ;
Hawkesford, Malcolm J. ;
Tausz-Posch, Sabine .
PLANT SCIENCE, 2015, 236 :239-249