Effect of the Cytokinin Type in the Culture Medium on the Ultrastructure of Leaf Chloroplasts and Photosynthetic Pigment Content of In Vitro Apple (Malus x domestica Borkh.) Shoots
Zsuzsa Máthéné Szigeti, Katalin Solymosi, Richárd Kovásznai-Oláh, Judit Dobránszki

TL;DR
This study examines how different cytokinins affect the structure of chloroplasts and photosynthetic pigments in apple plant shoots grown in a lab.
Contribution
The paper provides a comparative ultrastructural analysis of chloroplast changes in different apple cultivars under various cytokinin treatments.
Findings
Thidiazuron increased grana height and altered leaf anatomy in both apple cultivars.
6-benzylaminopurine riboside and thidiazuron reduced photosynthetic pigment content in in vitro apple leaves.
Meta-topolin preserved chloroplast integrity and pigment levels similar to the control.
Abstract
Thidiazuron, 6-benzylaminopurine riboside, and meta-topolin are cytokinins often used in apple tissue cultures. Three different CK-containing Murashige and Skoog media were used during the experiments: medium without CK or media containing 4.5 μM thidiazuron, 4.5 μM 6-benzylaminopurine riboside, or 4.5 μM meta-topolin, respectively. Comparative ultrastructural studies across cytokinin types and apple cultivars were lacking. We studied the changes in photosynthetic pigment content of the leaves with absorption spectroscopy and chloroplast structure with light and transmission electron microscopy. At the light microscopy level, large changes were detected in the length and length-to-width ratios of the chloroplasts in the spongy and palisade mesophyll cell sections in 6-benzylaminopurine riboside- and meta-topolin-treated leaves of the McIntosh scion. In the chloroplasts of the McIntosh…
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Taxonomy
TopicsPlant tissue culture and regeneration · Plant Molecular Biology Research · Transgenic Plants and Applications
