GSTDTAP  > 气候变化
DOI10.1111/gcb.13678
Leaf and canopy scale drivers of genotypic variation in soybean response to elevated carbon dioxide concentration
Sanz-Saez, Alvaro1,2,4; Koester, Robert P.1,2,5; Rosenthal, David M.1,2,6; Montes, Christopher M.1,2; Ort, Donald R.1,2,3; Ainsworth, Elizabeth A.1,2,3
2017-09-01
发表期刊GLOBAL CHANGE BIOLOGY
ISSN1354-1013
EISSN1365-2486
出版年2017
卷号23期号:9
文章类型Article
语种英语
国家USA
英文摘要

The atmospheric [CO2] in which crops grow today is greater than at any point in their domestication history and represents an opportunity for positive effects on seed yield that can counteract the negative effects of greater heat and drought this century. In order to maximize yields under future atmospheric [CO2], we need to identify and study crop cultivars that respond most favorably to elevated [CO2] and understand the mechanisms contributing to their responsiveness. Soybean (Glycine max Merr.) is a widely grown oilseed crop and shows genetic variation in response to elevated [CO2]. However, few studies have studied the physiological basis for this variation. Here, we examined canopy light interception, photosynthesis, respiration and radiation use efficiency along with yield and yield parameters in two cultivars of soybean (Loda and HS93-4118) previously reported to have similar seed yield at ambient [CO2], but contrasting responses to elevated [CO2]. Seed yield increased by 26% at elevated [CO2] (600 mu mol/mol) in the responsive cultivar Loda, but only by 11% in HS93-4118. Canopy light interception and leaf area index were greater in HS93-4118 in ambient [CO2], but increased more in response to elevated [CO2] in Loda. Radiation use efficiency and harvest index were also greater in Loda than HS93-4118 at both ambient and elevated [CO2]. Daily C assimilation was greater at elevated [CO2] in both cultivars, while stomatal conductance was lower. Electron transport capacity was also greater in Loda than HS93-4118, but there was no difference in the response of photosynthetic traits to elevated [CO2] in the two cultivars. Overall, this greater understanding of leaf-and canopy-level photosynthetic traits provides a strong conceptual basis for modeling genotypic variation in response to elevated [CO2].


英文关键词crop yield elevated carbon dioxide concentration free-air CO2 enrichment genotypic variation Glycine max photosynthesis radiation use efficiency
领域气候变化 ; 资源环境
收录类别SCI-E
WOS记录号WOS:000406812100039
WOS关键词CO2 ENRICHMENT FACE ; RADIATION USE EFFICIENCY ; SEED YIELD ; GLYCINE-MAX ; INTRASPECIFIC VARIATION ; CONVERSION EFFICIENCY ; PHENOTYPIC PLASTICITY ; ENERGY-CONVERSION ; HARVEST INDEX ; PHOTOSYNTHESIS
WOS类目Biodiversity Conservation ; Ecology ; Environmental Sciences
WOS研究方向Biodiversity & Conservation ; Environmental Sciences & Ecology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/16502
专题气候变化
资源环境科学
作者单位1.Univ Illinois, Dept Plant Biol, Urbana, IL 61801 USA;
2.Univ Illinois, Inst Genom Biol, Urbana, IL 61801 USA;
3.USDA ARS, Global Change & Photosynth Res Unit, Urbana, IL USA;
4.Univ Missouri, Div Plant Sci, Columbia, MO 65201 USA;
5.Benson Hill,1100 Corp Sq Dr,Suite 243, St Louis, MO 63132 USA;
6.Ohio Univ, Dept Environm & Plant Biol, Athens, OH 45701 USA
推荐引用方式
GB/T 7714
Sanz-Saez, Alvaro,Koester, Robert P.,Rosenthal, David M.,et al. Leaf and canopy scale drivers of genotypic variation in soybean response to elevated carbon dioxide concentration[J]. GLOBAL CHANGE BIOLOGY,2017,23(9).
APA Sanz-Saez, Alvaro,Koester, Robert P.,Rosenthal, David M.,Montes, Christopher M.,Ort, Donald R.,&Ainsworth, Elizabeth A..(2017).Leaf and canopy scale drivers of genotypic variation in soybean response to elevated carbon dioxide concentration.GLOBAL CHANGE BIOLOGY,23(9).
MLA Sanz-Saez, Alvaro,et al."Leaf and canopy scale drivers of genotypic variation in soybean response to elevated carbon dioxide concentration".GLOBAL CHANGE BIOLOGY 23.9(2017).
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