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CO
2
elevation modulates the response of leaf gas exchange to progressive soil drying in tomato plants
Jie Liu, Tiantian Hu
*
, Liang Fang, Xiaoying Peng,
Fulai Liu
*
Corresponding author for this work
Department of Plant and Environmental Sciences
Section for Crop Sciences
14
Citations (Scopus)
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Dive into the research topics of 'CO
2
elevation modulates the response of leaf gas exchange to progressive soil drying in tomato plants'. Together they form a unique fingerprint.
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Agriculture & Biology
abscisic acid
45%
carbon nitrogen ratio
13%
drought
9%
drying
67%
gas exchange
84%
leaf area
10%
leaves
38%
plant response
10%
prediction
8%
sap
12%
shoots
15%
soil
44%
soil water
52%
stomatal conductance
11%
tomatoes
65%
transpiration
11%
water stress
30%
water use efficiency
35%
xylem
23%
Earth & Environmental Sciences
abscisic acid
78%
drought
8%
drought stress
43%
dry matter
12%
drying
72%
gas exchange
100%
leaf area
13%
prediction
5%
rate
7%
shoot
23%
soil
37%
soil water
44%
stomatal conductance
14%
transpiration
11%
water use efficiency
38%
xylem
28%