Triticale Green Plant Regeneration Is Due to DNA Methylation and Sequence Changes Affecting Distinct Sequence Contexts in the Presence of Copper Ions in Induction Medium

被引:9
|
作者
Orlowska, Renata [1 ]
Pachota, Katarzyna Anna [1 ]
Androsiuk, Piotr [2 ]
Bednarek, Piotr Tomasz [1 ]
机构
[1] Natl Res Inst, Plant Breeding & Acclimatizat Inst, Dept Plant Physiol & Biochem, PL-05870 Blonie, Poland
[2] Univ Warmia & Mazury, Fac Biol & Biotechnol, Dept Plant Physiol Genet & Biotechnol, PL-10719 Olsztyn, Poland
关键词
androgenesis; copper; genetic variation; metAFLP; silver; symmetrical; asymmetrical methylation context; time; triticale; BASE EXCISION-REPAIR; SUPEROXIDE-DISMUTASE; OXIDATIVE STRESS; BIOSYNTHESIS; ARABIDOPSIS; PATHWAY; CULTURE; METHIONINE; COMPLEX; ENZYMES;
D O I
10.3390/cells11010084
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Metal ions in the induction medium are essential ingredients allowing green plant regeneration. For instance, Cu(II) and Ag(I) ions may affect the mitochondrial electron transport chain, influencing the Yang cycle and synthesis of S-adenosyl-L-methionine, the prominent donor of the methylation group for all cellular compounds, including cytosines. If the ion concentrations are not balanced, they can interfere with the proper flow of electrons in the respiratory chain and ATP production. Under oxidative stress, methylated cytosines might be subjected to mutations impacting green plant regeneration efficiency. Varying Cu(II) and Ag(I) concentrations in the induction medium and time of anther culture, nine trials of anther culture-derived regenerants of triticale were derived. The methylation-sensitive AFLP approach quantitative characteristics of tissue culture-induced variation, including sequence variation, DNA demethylation, and DNA de novo methylation for all symmetric-CG, CHG, and asymmetric-CHH sequence contexts, were evaluated for all trials. In addition, the implementation of mediation analysis allowed evaluating relationships between factors influencing green plant regeneration efficiency. It was demonstrated that Cu(II) ions mediated relationships between: (1) de novo methylation in the CHH context and sequence variation in the CHH, (2) sequence variation in CHH and green plant regeneration efficiency, (3) de novo methylation in CHH sequences and green plant regeneration, (4) between sequence variation in the CHG context, and green plant regeneration efficiency. Cu(II) ions were not a mediator between de novo methylation in the CG context and green plant regeneration. The latter relationship was mediated by sequence variation in the CG context. On the other hand, we failed to identify any mediating action of Ag(I) ions or the moderating role of time. Furthermore, demethylation in any sequence context seems not to participate in any relationships leading to green plant regeneration, sequence variation, and the involvement of Cu(II) or Ag(I) as mediators.
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页数:14
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  • [1] Effect of copper and silver ions on sequence and DNA methylation changes in triticale regenerants gained via somatic embryogenesis
    Katarzyna Anna Pachota
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    [J]. Journal of Applied Genetics, 2022, 63 : 663 - 675
  • [2] Effect of copper and silver ions on sequence and DNA methylation changes in triticale regenerants gained via somatic embryogenesis
    Pachota, Katarzyna Anna
    Orlowska, Renata
    [J]. JOURNAL OF APPLIED GENETICS, 2022, 63 (04) : 663 - 675
  • [3] DNA methylation changes in triticale due to in vitro culture plant regeneration and consecutive reproduction
    Joanna Machczyńska
    Renata Orłowska
    Dariusz Rafał Mańkowski
    Janusz Zimny
    Piotr Tomasz Bednarek
    [J]. Plant Cell, Tissue and Organ Culture (PCTOC), 2014, 119 : 289 - 299
  • [4] DNA methylation changes in triticale due to in vitro culture plant regeneration and consecutive reproduction
    Machczynska, Joanna
    Orlowska, Renata
    Mankowski, Dariusz Rafal
    Zimny, Janusz
    Bednarek, Piotr Tomasz
    [J]. PLANT CELL TISSUE AND ORGAN CULTURE, 2014, 119 (02) : 289 - 299