Abstract
AbstractA well-developed canopy structure can increase the biomass accumulation and yield of crops. Peanut seeds were sown in a soil inoculated with an arbuscular mycorrhizal fungus (AMF) and uninoculated controls were also sown. Canopy structure was monitored using a 3-D laser scanner and photosynthetic characteristics with an LI-6400 XT photosynthesis system after 30, 45 and 70 days of growth to explore the effects of the AMF on growth, canopy structure and photosynthetic characteristics and yield. The AMF colonized the roots and AMF inoculation significantly increased the height, canopy width and total leaf area of the host plants and improved canopy structure. AMF reduced the tiller angle of the upper and middle canopy layers, increased that of the lower layer, reduced the leaf inclination of the upper, middle and lower layers, and increased the average leaf area and leaf area index after 45 days of growth, producing a well-developed and hierarchical canopy. Moreover, AMF inoculation increased the net photosynthetic rate in the upper, middle and lower layers. Plant height, canopy width, and total leaf area were positively correlated with net photosynthetic rate, and the inclination angle and tiller angle of the upper leaves were negatively correlated with net photosynthetic rate. Overall, the results demonstrate the effects of AMF inoculation on plant canopy structure and net photosynthetic rate.
Publisher
Springer Science and Business Media LLC
Reference41 articles.
1. Chang, T. G. et al. A three-dimensional canopy photosynthesis model in rice with a complete description of the canopy architecture, leaf physiology, and mechanical properties. J. Exp. Bot. 70(9), 2479–2490 (2019).
2. Zelitch, I. Close relationship between net photosynthesis and crop yield. Bioscience 32(10), 796–802 (1982).
3. Wang, Y. H. & Li, J. Y. Molecular basis of plant architecture. Annu. Rev. Plant Biol. 59, 253–279 (2008).
4. Song, Q. F., Chu, C. C., Parry, M. A. J. & Zhu, X. G. Genetics-based dynamic systems model of canopy photosynthesis: the key to improve light and resource use efficiencies for crops. Food Energy Secur. 5(1), 18–25 (2016).
5. Wang, X. P., Fan, W. Y. & Qu, D. Relationship between leaf area index and leaf inclination distribution based on single line, multi-angle measurement by TRAC. Chin. J. Ecol. 33(12), 3209–3215 (2014).
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