Analysis and modification of central carbon metabolism in Hypsizygus marmoreus for improving mycelial growth performance and fruiting body yield

Анализ и модификация центрального углеродного метаболизма Hypsizygus marmoreus для улучшения роста мицелия и повышения урожайности плодовых тел
Shujing Sun, Hui Lin, Pengfei Li, Lu Ma, Shufang Lai, Kaihui Hu, Liaoyuan Zhang
2023-07-25

Hypsizygus marmoreuscentral carbon metabolismglucose-6-phosphate dehydrogenase (G6PDH)metabolomicspentose phosphate pathway
Hypsizygus marmoreus is one of the main industrially cultivated varieties of edible fungi, with a delicious taste and high nutritional value. However, the long harvest period of 130–150 days greatly limits its large-scale expansion. This study aimed to investigate the effects of central carbon metabolism (CCM) on the mycelial growth performance and fruiting body formation of H. marmoreus. Nine edible fungi with different harvest periods were collected and used to evaluate their intracellular carbon metabolic differences in the CCM, which revealed that the imbalanced distribution of intracellular carbon metabolic levels in the CCM of H. marmoreus might be one of the key factors resulting in a slow mycelial growth rate and a long harvest period. Further analysis by three strategies, including metabolomics, adaptation of different carbon sources, and chemical interference, confirmed that low carbon flux into the pentose phosphate pathway (PPP) limited the supply of raw materials, reduced power, and thus influenced the mycelial growth of H. marmoreus. Furthermore, four transformants with increased expression levels of glucose-6-phosphate dehydrogenase (G6PDH), a key rate-limiting enzyme in the PPP of H. marmoreus, were developed and showed more extracellular soluble protein secretion and higher sugar assimilation rates, as well as improved mycelial growth rates in bottle substrate mixtures. Finally, cultivation experiments indicated that the maturation periods of the fruiting body with ~4–5 days in advance and the maximum fruiting body yield of 574.8 g per bag with an increase of 7.4% were achieved by improving the G6PDH expression level of the PPP in H. marmoreus. This study showed that CCM played an important role in the mycelial growth and development of H. marmoreus, which provided new insights for future advancements in cultivating and breeding edible fungi.
1
Cultivation of G6PDH-enhanced strains shortened fruiting body maturation by ~4–5 days and increased maximum fruiting body yield to 574.8 g per bag (a 7.4% increase)
2
Four transformants overexpressing glucose-6-phosphate dehydrogenase (G6PDH) showed increased extracellular soluble protein secretion and higher sugar assimilation rates
3
G6PDH-overexpressing transformants exhibited improved mycelial growth rates in bottle substrate mixtures
4
Hypsizygus marmoreus exhibits imbalanced intracellular carbon metabolic levels in central carbon metabolism (CCM), likely causing slow mycelial growth and long harvest period
5
Low carbon flux into the pentose phosphate pathway (PPP) limits supply of raw materials and reducing power, negatively affecting mycelial growth
6
Metabolomics, carbon-source adaptation, and chemical interference analyses confirmed PPP flux as a key limiter of H. marmoreus mycelial performance

Hypsizygus marmoreus (central carbon metabolism and its manipulated strains)

Effects of central carbon metabolism—particularly pentose phosphate pathway flux and G6PDH expression—on mycelial growth performance, sugar assimilation, protein secretion, maturation period, and fruiting body yield

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2023-07-25
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Shujing Sun
Hui Lin
Pengfei Li
Lu Ma
Shufang Lai
Kaihui Hu
Liaoyuan Zhang
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