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Optimizing Sugarcane Clonal Propagation In Vitro by Using Calcium Ammonium Nitrate and Ammonium Sulfate. | LitMetric

Optimizing Sugarcane Clonal Propagation In Vitro by Using Calcium Ammonium Nitrate and Ammonium Sulfate.

Plants (Basel)

National Key Laboratory for Tropical Crop Breeding, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China.

Published: October 2024

AI Article Synopsis

  • This study replaces dangerous nitrate-based chemicals in sugarcane propagation with safer fertilizers like calcium ammonium nitrate and ammonium sulfate.
  • Six local sugarcane varieties were tested to evaluate different ratios of nitrate and ammonium ions across treatment groups.
  • Treatment 3, with 39.38 mM nitrate and 20.59 mM ammonium, was found to be the most effective and cost-efficient method for improving plant growth, making it a recommended choice for practical production.

Article Abstract

To replace explosive nitrate-based chemicals in MS medium, this study developed a new, safer, and more cost-effective method using fertilizer-grade calcium ammonium nitrate and ammonium sulfate. This approach replaces ammonium nitrate and potassium nitrate, ensuring both safety and cost efficiency for sugarcane propagation. Six local sugarcane varieties-Zhongtang1 (ZT1), Zhongtang3 (ZT3), Zhongtang6 (ZT6), Guitang42 (GT42), Guitang44 (GT44), and Guiliu 07150 (GT07150)-were used. In the control group (Ck), nitrate ions (NO) were 39.28 mM, and ammonium ions (NH) were 20.49 mM, with a 2:1 ratio. In the treatment groups, the concentrations of nitrate ions (NO) and ammonium ions (NH) included treatment 1 (19.69 mM NO and 10.3 mM NH), treatment 2 (29.54 mM and 15.44 mM), treatment 3 (39.38 mM and 20.59 mM), treatment 4 (49.225 mM and 25.74 mM), treatment 5 (59.07 mM and 30.89 mM), and treatment 6 (68.915 mM and 36.03 mM), respectively, all with the same 2:1 ratio. Fifty bottles per treatment, with three replicates, were used for each sugarcane plantlets treatment. After five subcultures, the optimal ratio was determined by assessing morphological and physiological parameters, nitrogen levels, and SOD enzyme activity. The results indicated that treatment 3 (39.38 mM and 20.59 mM) and treatment 4 (49.225 mM and 25.74 mM) had the best morphological and physiological indicators. The optimal doses of calcium ammonium nitrate and ammonium sulfate were found in treatments 3 and 4, as well as in the control, with no significant difference among them. However, treatment 3, due to its lower dose, was more cost effective. To improve cost efficiency in practical production, it is recommended to use the lower concentration ratio of treatment 3 for plant tissue culture plantlets.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11478678PMC
http://dx.doi.org/10.3390/plants13192767DOI Listing

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