<p>The use of bio-effectors for sustainable seaweed cultivation has gained much traction lately. This study investigated the effect of priming with 6-benzylaminopurine (BAP), Kinetin (KIN), and <i>Ascophyllum nodusum</i> extract (AMPEP) on survival, regeneration, and adventitious lateral shoot formation in red seaweed <i>Gracilaria dura</i>. Treatment with varying concentrations (0.0001, 0.001, &amp; 0.01%) and exposure times (15, 30, &amp; 60&#xa0;min) was studied. There were no statistically significant differences in AMPEP, BAP, and KIN treatments either individually or in combination on the survival of explants. Individual treatments improved regeneration (89 ± 5.48%) with BAP (0.01%, 60&#xa0;min), and adventitious lateral shoot development (5.18 ± 0.84 shoots explant<sup>−1</sup>) with KIN (0.001%, 30&#xa0;min) compared to controls. The effect of the combination of treatments of the bio-effectors was considerably lower. The highest regeneration (56 ± 5.48%) was reported in AMPEP (0.001%, 30&#xa0;min): KIN (0.0001%, 60&#xa0;min): BAP (0.1%, 60&#xa0;min), while the highest adventitious lateral shoot development (2.36 ± 0.22 shoots explant<sup>−1</sup>) was reported in BAP 0.01%, 60&#xa0;min: KIN (0.0001%, 60&#xa0;min): AMPEP (0.001%), 30&#xa0;min treatment. The study would benefit sustainable seaweed aquaculture. However, open-sea performance and agar quality studies require further evaluation.</p>

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Explant priming with bio-effectors improves regeneration by 6-benzylaminopurine treatment while adventitious lateral shoot development by kinetin in marine red alga Gracilaria dura (Rhodophyta)

  • Bhavik Kantilal Bhagiya,
  • Digvijay Singh Yadav,
  • Vaibhav A. Mantri

摘要

The use of bio-effectors for sustainable seaweed cultivation has gained much traction lately. This study investigated the effect of priming with 6-benzylaminopurine (BAP), Kinetin (KIN), and Ascophyllum nodusum extract (AMPEP) on survival, regeneration, and adventitious lateral shoot formation in red seaweed Gracilaria dura. Treatment with varying concentrations (0.0001, 0.001, & 0.01%) and exposure times (15, 30, & 60 min) was studied. There were no statistically significant differences in AMPEP, BAP, and KIN treatments either individually or in combination on the survival of explants. Individual treatments improved regeneration (89 ± 5.48%) with BAP (0.01%, 60 min), and adventitious lateral shoot development (5.18 ± 0.84 shoots explant−1) with KIN (0.001%, 30 min) compared to controls. The effect of the combination of treatments of the bio-effectors was considerably lower. The highest regeneration (56 ± 5.48%) was reported in AMPEP (0.001%, 30 min): KIN (0.0001%, 60 min): BAP (0.1%, 60 min), while the highest adventitious lateral shoot development (2.36 ± 0.22 shoots explant−1) was reported in BAP 0.01%, 60 min: KIN (0.0001%, 60 min): AMPEP (0.001%), 30 min treatment. The study would benefit sustainable seaweed aquaculture. However, open-sea performance and agar quality studies require further evaluation.