Boosting Polyamines to Enhance Shoot Regeneration in Potato (Solanum tuberosum L.) Using AgNO3

Author:

Adly Walaa M. R. M.,Mazrou Yasser S. A.ORCID,EL-Denary Mohammad E.,Mohamed Mahasen A.,Abd El-Salam El-Sayed T.,Fouad Ahmed S.ORCID

Abstract

Advancements in shoot regeneration systems support biotechnology-based tools used in the genetic improvement of plant crops. This study aims to enhance shoot regeneration in potatoes by boosting polyamine content by adding AgNO3 to the shoot regeneration medium (MS medium supplemented with 30 g L−1 sucrose, 100 mg L−1 myoinositol, and 2.25 BA mg L−1). Five concentrations of AgNO3 (2, 4, 6, 8, and 10 mg L−1) were used in addition to a control. The effect of AgNO3 on regeneration assumed a more or less concentration-dependent bell-shaped curve peaking at 4 mg L−1. Enhancements in shoot regeneration were attributed to the known role of AgNO3 as an ethylene action blocker in addition to improvements in polyamine accumulation without an increase in H2O2 content, lipid peroxidation, or DNA damage. The uncoupling of shoot regeneration and polyamine content recorded at high AgNO3 concentrations can be attributed to the consumption of polyamines to counteract the synchronized oxidative stress manifested by increases in H2O2 content, lipid peroxidation, and DNA damage.

Publisher

MDPI AG

Subject

Horticulture,Plant Science

Reference65 articles.

1. The Potato of the Future: Opportunities and Challenges in Sustainable Agri-food Systems

2. Potato Production, Usage, and Nutrition—A Review

3. Progress of potato staple food research and industry development in China

4. Bioethanol Production as Biofuel from Potato Peel Using Saccharomyces Cerevisiae PTCC 5052 and Zymomonas Mobilis PTCC 1718;Maroufpour;Bioagro,2019

5. Genome Sequence and Analysis of the Tuber Crop Potato;Diambra;Nature,2011

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