Will future maize improvement programs leverage the canopy light-interception, photosynthetic, and biomass capacities of traditional accessions?

Ahamadeen Nagoor Mohamed Mubarak, Mohammathu Musthapha Mufeeth Mohammathu, Arachchi Devayalage Nishantha Thissa Kumara

PeerJ(2023)

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摘要
Maize germplasm has greater latent potential to address the global food and feed crisis because of its high radiation, water and nutrient efficiencies. Photosynthetic and canopy architectural traits in maize are important in determining yield. The present study aimed to screen a subset of local maize accessions in Sri Lanka to evaluate their photosynthetic, biomass and yield related traits and to identify resource efficient germplasm. Experiments were carried out in the Ampara district of Sri Lanka. Eight maize accessions ; and and two elite F cultivars (. and ) were analyzed under field conditions. Our results showed that maize genotypes produced a lower leaf area index (LAI) at the third and tenth week after field planting (WAP). However, the LAI was significantly increased in six WAP by , , and . A similar trend was observed for percentage of light interception at three WAP (47%), six WAP (>64%), and decreased at 10 WAP. In addition, LAI maximum values were between 3.0 and 3.5, allowing 80% of the incident light to be intercepted by maize canopies. The estimated light extinction coefficient () remained lower (<0.5), suggesting that maize leaves are eractophilic canopies. Although fractional interception () varies, and had the highest values (0.57), and quantum yields of PSII (>0.73) in dark-adapted leaves. In addition, , , , and had significantly higher rates of photosynthesis with minimal stomatal conductance and transpiration rates. As a result, they outperformed the control plants in terms of biomass, cob weight and grain yield. This suggests that native maize germplasm could be introduced as novel, less resource-intensive cultivars to sustain global food security.
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Keywords Chlorophyll content, Fractional interception, Leaf area index, Light extinction, coef fi cient, Photosynthetic rates, Biomass, Grain yield, Radiation use ef fi ciency, Canopy architecture, Water use ef fi ciency
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