Influence of auxin and its polar transport inhibitor on the development of somatic embryos in Digitalis trojana

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作者
Sandeep Kumar Verma
Ashok Kumar Das
Saikat Gantait
Songul Gurel
Ekrem Gurel
机构
[1] Abant Izzet Baysal University,Department of Biology
[2] Sugar Institute,Plant Breeding Department
[3] Ulsan National Institute of Science and Technology,Center for Superfunctional Materials, School of Natural Sciences
[4] Bidhan Chandra Krishi Viswavidyalaya,All India Coordinated Research Project on Groundnut, Directorate of Research
[5] Bidhan Chandra Krishi Viswavidyalaya,Department of Genetics and Plant Breeding, Faculty of Agriculture
来源
3 Biotech | 2018年 / 8卷
关键词
Auxin; Foxglove; In vitro rooting; Polar auxin transport inhibitor; Somatic embryogenesis;
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摘要
The present study reports the role of auxin and its transport inhibitor during the establishment of an efficient and optimized protocol for the somatic embryogenesis in Digitalis trojana Ivan. Hypocotyl segments (5 mm long) were placed vertically in the Murashige and Skoog medium supplemented with three sets [indole-3-acetic acid (IAA) alone or 2,3,5-triiodobenzoic acid (TIBA) alone or IAA–TIBA combination] of formulations of plant growth regulators, to assess their differential influence on induction and proliferation of somatic embryos (SEs). IAA alone was found to be the most effective, at a concentration of 0.5 mg/l, inducing ~ 10 SEs per explant with 52% induction frequency. On the other hand, the combination of 0.5 mg/l of IAA and 1 mg/l of TIBA produced significantly fewer (~ 3.6 SEs) and abnormal (enlarged, oblong, jar and cup-shaped) SEs per explant with 24% induction frequency in comparison to that in the IAA alone. The explants treated with IAA–TIBA exhibited a delayed response along with the formation of abnormal SEs. Our study revealed that IAA induces high-frequency SE formation when used singly, but the frequency gradually declines when IAA was coupled with increasing levels of TIBA. Eventually, our findings bring new insights into the roles of auxin and its polar transport in somatic embryogenesis of D. trojana.
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