Independence Award
- First Rank - Second Rank - Third Rank
Labour Award
- First Rank - Second Rank -Third Rank
National Award
- Study on food stuff for animal(2005)
- Study on rice breeding for export and domestic consumption(2005)
VIFOTEC Award
- Hybrid Maize by Single Cross V2002 (2003)
- Tomato Grafting to Manage Ralstonia Disease(2005)
- Cassava variety KM140(2010)
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Exogenous Melatonin Improves Drought Tolerance by Regulating the Antioxidant Defense System and Photosynthetic Efficiency in Fodder Soybean Seedings
Saturday, 2025/03/29 | 08:34:21
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Qianhan Zhao, Xueling Zheng, Chen Wang, Qinyi Wang, Qiyun Wei, Xiashun Liu, Yujiao Liu, Along Chen, Jia Jiang, Xueying Zhao, Tiantian He, Jiayi Qi, Yuchen Han, Haonan Qin, Fuchun Xie, Yajun Chen Plants (Basel); 2025 Feb 5; 14(3):460. doi: 10.3390/plants14030460. AbstractFodder soybean (Glycine max L.) with high protein and yield is a popular forage grass in northeast China. Seasonal drought inhibits its growth and development during seedling stage. The objective of this study was to observe morpho-physiological changes in fodder soybean seedlings under melatonin (MT) treatments and identify appropriate concentration to alleviate the drought damage. Two varieties commonly used in northeast China were treated with 0, 50, 100, and 150 μM melatonin at soil water content of 30%. The results indicated that applying melatonin enhanced height, biomass and altered root morphology of fodder soybean seedlings under water-deficient conditions. The treatments with melatonin at different concentrations significantly reduced the contents of H2O2, O2- and MDA, while boosting the capacity of the antioxidant defense system and the content of osmotic adjustment substances. Meanwhile, increases in light energy capture and transmission efficiency were observed. Furthermore, treatment with melatonin regulated the expression levels of genes associated with photosynthesis and the antioxidant defense system. Notably, 100 μM melatonin treatment produced the most favorable effect in all treatments under drought conditions. These research results provide new information for enhancing the drought tolerance of fodder soybean using chemical measures.
See https://pubmed.ncbi.nlm.nih.gov/39943023/
Figure 1. Effects of different melatonin concentrations on root morphology of fodder soybean under drought stress. (A) ‘Gongnong 535’ fodder soybean; (B) ‘Mudanjiang’ fodder soybean. Abbreviations and their full forms are provided as follows: NW: normal water supply; DC: drought condition; WT: treated with water; M50: treated with 50 μM MT; M100: treated with 100 μM MT; M150: treated with 150 μM MT. |
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