首页> 外文期刊>Applied and Environmental Microbiology >Endogenously Synthesized (?)-proto-Quercitol and Glycine Betaine Are Principal Compatible Solutes of Schizochytrium sp. Strain S8 (ATCC 20889) and Three New Isolates of Phylogenetically Related Thraustochytrids
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Endogenously Synthesized (?)-proto-Quercitol and Glycine Betaine Are Principal Compatible Solutes of Schizochytrium sp. Strain S8 (ATCC 20889) and Three New Isolates of Phylogenetically Related Thraustochytrids

机译:内源性合成(?)-原-槲皮醇和甘氨酸甜菜碱是Schizochytrium sp。的主要兼容溶质。菌株S8(ATCC 20889)和系统发育相关破囊壶菌的三个新分离株

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We report that endogenously synthesized (?)-proto-quercitol (1d-1,3,4/2,5-cyclohexanepentol) and glycine betaine were the principal compatible solutes of Schizochytrium sp. strain S8 (ATCC 20889) and three new osmotolerant isolates of thraustochytrids (strains T65, T66, and T67). The compatible solutes were identified and quantified by use of nuclear magnetic resonance spectroscopy, and their identity was confirmed by mass spectroscopy and measurement of the specific optical rotation. The cellular content of compatible solutes increased with increasing NaCl concentration of a defined medium. (?)-proto-Quercitol was the dominating solute at all NaCl concentrations tested (0.25 to 1.0 M), e.g., cells of S8 and T66 stressed with 1.0 M NaCl accumulated about 500 μmol (?)-proto-quercitol and 100 μmol glycine betaine per g dry weight. To our knowledge, (?)-proto-quercitol has previously been found only in eucalyptus. The 18S rRNA gene sequences of the four (?)-proto-quercitol-producing strains showed 99% identity, and they displayed the same fatty acid profile. The only polyunsaturated fatty acids accumulated were docosahexaenoic acid (78%) and docosapentaenoic acid (22%). A less osmotolerant isolate (strain T29), which was closely phylogenetically related to Thraustochytrium aureum (ATCC 34304), did not contain (?)-proto-quercitol or glycine betaine. Thus, the level of osmotolerance and the osmolyte systems vary among thraustochytrids.
机译:我们报告内源性合成(?)-原-槲皮醇(1d-1,3,4 / 2,5-环己烷戊醇)和甘氨酸甜菜碱是Schizochytrium sp的主要相容溶质。 S8菌株(ATCC 20889)和破囊壶菌的三个新的耐渗透菌株(菌株T65,T66和T67)。通过使用核磁共振波谱法鉴定并定量了相容的溶质,并通过质谱法和比旋光度的测量确认了它们的身份。相容性溶质的细胞含量随特定培养基中NaCl浓度的增加而增加。在所有测试的NaCl浓度(0.25至1.0 M)下,(α)-原始槲皮醇是主要的溶质,例如,受1.0 M NaCl胁迫的S8和T66细胞积聚了约500μmol(β)-原始槲皮醇和100μmol甘氨酸甜菜碱每克干重。据我们所知,以前仅在桉树中发现(-)-原-槲皮醇。四个(α)-原始-槲皮醇生产菌株的18S rRNA基因序列具有99%的同一性,并且它们显示相同的脂肪酸谱。积累的唯一多不饱和脂肪酸是二十二碳六烯酸(78%)和二十二碳五烯酸(22%)。较不耐渗透的分离株(T29株)与金黄色梭菌(ATCC 34304)在系统发育上密切相关,不包含(β)-原-槲皮醇或甘氨酸甜菜碱。因此,破囊壶菌的渗透耐受水平和渗透液系统各不相同。

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