Chapter 9 The Outlook for C4 Crops in Future Climate Scenarios
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-64926-5_9
Reference231 articles.
1. Ainsworth EA, Long SP (2005) What have we learned from 15 years of free-air CO2 enrichment (FACE)? A meta-analytic review of the responses of photosynthesis, canopy properties and plant production to rising CO2. New Phytol 165:351–372
2. Allen LH Jr, Kakani VG, Vu JC, Boote KJ (2011) Elevated CO2 increases water use efficiency by sustaining photosynthesis of water-limited maize and sorghum. J Plant Physiol 168:1909–1918
3. Amaducci S, Colauzzi M, Battini F, Fracasso A, Perego A (2016) Effect of irrigation and nitrogen fertilization on the production of biogas from maize and sorghum in a water limited environment. Eur J Agron 76:54–65
4. Anami S, De Block M, Machuka J, Van Lijsebettens M (2009) Molecular improvement of tropical maize for drought stress tolerance in sub-Saharan Africa. Crit Rev Plant Sci 28:16–35
5. Assefa Y, Staggenborg SA, Prasad VP (2010) Grain sorghum water requirement and responses to drought stress: a review. Crop Manag 9:0–0
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1. Mesophyll-specific overexpressing ofSvHXK6gene improves water use efficiency without yield loss in C4Setaria viridis;2023-07-11
2. Midday water use efficiency in sorghum is linked to faster stomatal closure rate, lower stomatal aperture and higher stomatal density;The Plant Journal;2023-06-22
3. Anatomical drivers of stomatal conductance in sorghum lines with different leaf widths grown under different temperatures;Plant, Cell & Environment;2023-04-17
4. Elevated [CO2] negatively impacts C4 photosynthesis under heat and water stress without penalizing biomass;Journal of Experimental Botany;2023-02-17
5. Anatomical drivers of stomatal conductance in sorghum lines with different leaf widths grown under different temperatures;2022-10-20
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