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在多种营养受限培养基中培养的刺孢小克银汉霉和深黄被孢霉中储备脂质周转的抑制作用。

Repression of reserve lipid turnover in Cunninghamella echinulata and Mortierella isabellina cultivated in multiple-limited media.

作者信息

Papanikolaou S, Sarantou S, Komaitis M, Aggelis G

机构信息

Laboratory of General and Agricultural Microbiology, Department of Agricultural Biotechnology, Agricultural University of Athens, Athens, Greece.

出版信息

J Appl Microbiol. 2004;97(4):867-75. doi: 10.1111/j.1365-2672.2004.02376.x.

Abstract

AIMS

To study patterns of reserve lipid biosynthesis and turnover (degradation) in two oleaginous Zygomycetes, namely Cunninghamella echinulata and Mortierella isabellina under various growth conditions. Fatty acid composition of the reserve lipid of both strains was also studied in all growth steps.

METHODS AND RESULTS

Cunninghamella echinulata and Mortierella isabellina were grown in carbon-excess batch cultures. In the investigated strains, accumulation of reserve lipid occurred only when the activity of both NAD(+)-isocitrate dehydrogenase (ICDH) and NADP(+)-ICDH were not detectable in the cell-free extract. Specifically, in C. echinulata, NAD(+)-ICDH activity was detected even after depletion of ammonium nitrogen in the medium, resulting in a delay of the initiation of lipid accumulation period. On the contrary, in M. isabellina, lipid accumulation occurred simultaneously with ammonium nitrogen exhaustion in the growth medium, as the activity of both NAD(+)- and NADP(+)-ICDH were not detectable after nitrogen depletion. In C. echinulata reserve lipid was not degraded after glucose had been exhausted. Supplementations of the medium with Fe(3+), yeast extract or Mg(2+) induced, however, reserve lipid breakdown and formation of lipid-free material. In M. isabellina after glucose exhaustion, notable lipid degradation occurred, accompanied by a significant lipid-free material biosynthesis. Nevertheless, in multiple-limited media, in which Mg(2+) or yeast extract, besides carbon and nitrogen, were limiting nutrients, reserve lipid breakdown was repressed. In both strains, the quantity of gamma-linolenic acid (GLA) in the reserve lipids [varying between 9 and 16% (w/w) in C. echinulata and 1.5-4.5% (w/w) in M. isabellina] was proportional to lipid-free biomass.

CONCLUSIONS

Lipid accumulation period in Zygomycetes is initiated by the attenuation of ICDH activity in the mycelium while the regulation of ICDH from ammonium nitrogen is strain specific. While a single nitrogen limitation was enough to induce lipid accumulation, however, multiple limitations were needed in order to repress lipid turnover in oleaginous Zygomycetes. As for GLA, its biosynthesis in the mycelium seemed proportional to lipid-free biomass synthesis.

SIGNIFICANCE AND IMPACT OF THE STUDY

Several nutrients are indispensable for functioning the mechanisms involved in the mobilization of reserve lipid in oleaginous moulds. Therefore, reserve lipid turnover in oleaginous moulds could be repressed in multiple-limited media.

摘要

目的

研究两种产油接合菌,即刺孢小克银汉霉和深黄被孢霉在不同生长条件下储备脂质生物合成和周转(降解)的模式。还对两种菌株在所有生长阶段储备脂质的脂肪酸组成进行了研究。

方法与结果

刺孢小克银汉霉和深黄被孢霉在碳过量的分批培养中生长。在所研究的菌株中,仅当在无细胞提取物中未检测到NAD(+)-异柠檬酸脱氢酶(ICDH)和NADP(+)-ICDH的活性时,储备脂质才会积累。具体而言,在刺孢小克银汉霉中,即使培养基中的铵态氮耗尽后仍能检测到NAD(+)-ICDH活性,导致脂质积累期的起始延迟。相反,在深黄被孢霉中,脂质积累与生长培养基中铵态氮的耗尽同时发生,因为氮耗尽后未检测到NAD(+)-和NADP(+)-ICDH的活性。在刺孢小克银汉霉中,葡萄糖耗尽后储备脂质不会降解。然而,向培养基中添加Fe(3+)、酵母提取物或Mg(2+)会诱导储备脂质分解并形成无脂质物质。在深黄被孢霉中,葡萄糖耗尽后发生了显著的脂质降解,同时伴随着大量无脂质物质的生物合成。然而,在多种营养成分受限的培养基中,除碳和氮外,Mg(2+)或酵母提取物是限制营养成分,储备脂质的分解受到抑制。在两种菌株中,储备脂质中γ-亚麻酸(GLA)的含量[在刺孢小克银汉霉中为9%至16%(w/w),在深黄被孢霉中为1.5%至4.5%(w/w)]与无脂质生物量成正比。

结论

接合菌中的脂质积累期是由菌丝体中ICDH活性的减弱引发的,而铵态氮对ICDH的调节具有菌株特异性。虽然单一的氮限制足以诱导脂质积累,但为了抑制产油接合菌中储备脂质的周转则需要多种限制因素。至于GLA,其在菌丝体中的生物合成似乎与无脂质生物量的合成成正比。

研究的意义和影响

几种营养成分对于产油霉菌中储备脂质动员所涉及的机制发挥作用不可或缺。因此,在多种营养成分受限的培养基中可以抑制产油霉菌中储备脂质的周转。

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