Laad P, Patel P, Guruprasad K N, Sharma M P, Kataria S, Brestic M
School of Life Sciences, Devi Ahilya Vishwavidyalaya, Khandwa Road, 452001 Indore, India.
Department of Botany, SBN Government PG College, 451551 Barwani, India.
Photosynthetica. 2023 May 5;61(2):236-243. doi: 10.32615/ps.2023.014. eCollection 2023.
The study aims to understand the effect of UV exclusion and arbuscular mycorrhizal fungi (AMF) inoculation on the photosynthetic parameters of soybean. The study was conducted in nursery bags and plants were grown under iron mesh covered with UV cut-off filters. The plants grown under the exclusion of UV with AMF inoculation (I) showed higher photosynthetic pigments, carbonic anhydrase activity, reduced internal CO concentration, enhanced transpiration rate, and stomatal conductance as well as improved photosynthetic rate over uninoculated plants. Moreover, -UVB+I and -UVAB+I plants exhibited an increased performance index, the activity of the water-splitting complex on the donor side of PSII, and the concentration of active PSII reaction centers per excited cross-section. Overall, UV-excluded and AMF-inoculated plants showed the highest quantum yield of PSII and rate of photosynthesis. Our study will pave the way for future investigation to identify the possible role of UV exclusion and AMF in improving the photosynthetic performance for better yield of soybean.
该研究旨在了解紫外线排除和接种丛枝菌根真菌(AMF)对大豆光合参数的影响。研究在育苗袋中进行,植株在覆盖有紫外线截止滤光片的铁网下生长。在排除紫外线并接种AMF(I)条件下生长的植株,与未接种植株相比,表现出更高的光合色素、碳酸酐酶活性、降低的胞内CO浓度、增强的蒸腾速率和气孔导度,以及提高的光合速率。此外,-UVB+I和-UVAB+I植株表现出性能指数增加、PSII供体侧水裂解复合物的活性以及每个激发截面活性PSII反应中心的浓度增加。总体而言,排除紫外线并接种AMF的植株表现出最高的PSII量子产率和光合速率。我们的研究将为未来的调查铺平道路,以确定紫外线排除和AMF在改善光合性能以提高大豆产量方面可能发挥的作用。