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Published on: October 25, 2024
Improved acetate tolerance and astaxanthin productivity in Haematococcus pluvialis through adaptive laboratory
Bangxiang He1, Na Li2, Yu Zhao2
1College of Biological and Food Engineering, Anhui Polytechnic University, Wuhu 241000, China; Anhui Engineering Laboratory for Industrial Microbiology Molecular Breeding, Anhui Polytechnic University, Wuhu 241000, China.
Abstract:
The industrial cultivation of Haematococcus pluvialis for astaxanthin is constrained by a fundamental trade-off: stress promotes astaxanthin accumulation but suppresses growth. To overcome this, we applied adaptive laboratory evolution (ALE) under progressive high acetate stress (2.5-5-7.5 g/L NaAc). This approach generated robust strains, AC50 and AC75, with survival rates of 81% and 44%-over fourfold higher than the wild-type (WT). In the green stage, AC50 under 5 g/L NaAc increased cell density, biomass, and astaxanthin yield by 44%, 55%, and 80%, respectively, relative to WT under 1 g/L NaAc. These advantages extended in the red stage, where AC50 also showed substantial improvements in biomass and astaxanthin yield. Transcriptomic analysis revealed a dual strategy: ALE restored global stress-response networks (plant hormone signaling, transporters, photosystem, and lipid metabolism) toward homeostasis while selectively upregulating key pathways for astaxanthin biosynthesis and glycolysis. Our work provides both a superior strain (AC50) and a mechanistic framework for alleviating the classical growth-production dichotomy, advancing efficient acetate-based astaxanthin production.
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