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CO2 Fertilisation of Growth in Wild C4 Grasses may be Amplified by Upregulated Photosynthesis

delete2026-08-04
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E
Edith J. Singini *
S
Sally Archibald
C
Colin P. Osborne
B
Brad S. Ripley
DOI:10.1111/pce.70785delete
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Abstract

Abstract

En 中文
Rising atmospheric CO2 is expected to have limited direct effects on C4 photosynthesis because the carbon-concentrating mechanism maintains near-saturating CO2 at Rubisco. Consequently, growth responses of C4 plants to elevated CO2 (eCO2) are generally attributed to indirect improvements in plant water relations. However, it remains unclear whether sustained exposure to eCO2 also induces changes in photosynthetic capacity that contribute directly to carbon gain. We examined the interactive effects of CO2 concentration and soil water availability on photosynthesis, biochemical capacity, and growth in three African C4 grasses grown under ambient (400 ppm) and elevated (550 ppm) CO2. Elevated CO2 increased net photosynthesis across species, with stronger responses under drought. Intrinsic water-use efficiency increased primarily through enhanced assimilation, while stomatal responses were contingent on water availability rather than driven directly by elevated CO2. Importantly, eCO2 induced species- and context-dependent increases in apparent photosynthetic capacity after prolonged treatment exposure. Megathyrsus maximus showed strong Vcmax increases under both water treatments and Jmax upregulation under well-watered conditions, Heteropogon contortus exhibited biochemical upregulation primarily under drought, and Themeda triandra showed little evidence of acclimation. Growth responses closely mirrored these physiological patterns, occurring only in species exhibiting coordinated biochemical adjustment. These results indicate that C4 responses to eCO2 cannot be explained solely by stomatal water saving and provide evidence that species-specific changes in apparent photosynthetic capacity may contribute to sustained carbon gain, particularly under water limitation.
Keywords:
C4 photosynthesis
drought
elevated CO2
grassland ecology
photosynthetic upregulation
water use efficiency
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Journal

P
Plant Cell and Environment
IF:
6.3
Papers:
6.5K
Citations:
3.2W

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university of sheffield
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university of the witwatersrand
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R
rhodes university
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Papers: 2.6K
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