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吴明晗, 朱葆华, 张瑞豪, 王路路, 孙畅泽, 潘克厚. Cd2+对三角褐指藻生长及尿苷二磷酸葡萄糖焦磷酸化酶基因表达调控的影响[J]. 水生生物学报, 2021, 45(4): 749-755. DOI: 10.7541/2021.2020.132
引用本文: 吴明晗, 朱葆华, 张瑞豪, 王路路, 孙畅泽, 潘克厚. Cd2+对三角褐指藻生长及尿苷二磷酸葡萄糖焦磷酸化酶基因表达调控的影响[J]. 水生生物学报, 2021, 45(4): 749-755. DOI: 10.7541/2021.2020.132
WU Ming-Han, ZHU Bao-Hua, ZHANG Rui-Hao, WANG Lu-Lu, SUN Chang-Ze, PAN Ke-Hou. EFFECTS OF CADMIUM ON THE GROWTH AND EXPRESSION OF UDP-GLUCOSE PYROPHOSPHORYLASE GENE IN PHAEODACTYLUM TRICORNUTUM[J]. ACTA HYDROBIOLOGICA SINICA, 2021, 45(4): 749-755. DOI: 10.7541/2021.2020.132
Citation: WU Ming-Han, ZHU Bao-Hua, ZHANG Rui-Hao, WANG Lu-Lu, SUN Chang-Ze, PAN Ke-Hou. EFFECTS OF CADMIUM ON THE GROWTH AND EXPRESSION OF UDP-GLUCOSE PYROPHOSPHORYLASE GENE IN PHAEODACTYLUM TRICORNUTUM[J]. ACTA HYDROBIOLOGICA SINICA, 2021, 45(4): 749-755. DOI: 10.7541/2021.2020.132

Cd2+对三角褐指藻生长及尿苷二磷酸葡萄糖焦磷酸化酶基因表达调控的影响

EFFECTS OF CADMIUM ON THE GROWTH AND EXPRESSION OF UDP-GLUCOSE PYROPHOSPHORYLASE GENE IN PHAEODACTYLUM TRICORNUTUM

  • 摘要: 为了探究Cd2+对三角褐指藻(Phaeodactylum tricornutum)生长及尿苷二磷酸葡萄糖焦磷酸化酶(UDP-glucose pyrophosphorylase, UGPase)基因表达调控的影响, 研究以不同浓度Cd2+处理三角褐指藻, 测定其生长、叶绿素荧光参数、UGP基因转录水平、UGPase活性和金藻昆布多糖含量等指标。结果表明: 低浓度(0.1 μmol/L)Cd2+促进三角褐指藻生长, UGP基因转录水平、UGPase活性和金藻昆布多糖含量分别比对照组提高了100.65%、11.99%和9.77%;而高浓度Cd2+处理组(2和5 μmol/L)各指标均显著降低, UGP基因转录水平较对照组分别下调了50.31%和60.47%, UGPase活性降低56.27%和66.72%, 金藻昆布多糖含量减少42.41%和47.30%。研究首次探究了Cd2+对三角褐指藻UGP基因表达的影响, 表明低浓度Cd2+促进三角褐指藻生长, 上调UGP基因表达, 提高金藻昆布多糖含量, 为Cd2+调控UGP基因的表达提供理论指导。

     

    Abstract: Chrysolaminaran is a water soluble polysaccharide that accumulates in cytosolic vacuoles and UDP-glucose (UDP-Glc) serves as the substrate for chrysolaminaran synthesis. In higher plants, UDP-glucose pyrophosphorylase (UGPase) is a key enzyme in carbohydrate metabolism, catalyzing the reversible production of UDP-Glc and pyrophosphate (PPi) from glucose-1-phosphate (Glc 1-P) and UTP. Our previous findings suggested that UGPase is a rate-limiting enzyme and may play an important role in chrysolaminarin biosynthesis in Phaeodactylum tricornutum. Therefore, theoretically speaking, increasing the UGP gene level is helpful to improve the accumulation of chrysolaminaran. UGPase activity was affected by transcriptional regulation with some environmental factors such as phosphate deficiency stress, cold, light exposure, sucrose feeding, salinity and cadmium excess. However, little is known about the expression patterns of UGP gene by environmental factors in P. tricornutum. Cadmium has been recognized as one of the most toxic aquatic contaminants. Evidence that microalgal cadmium tolerance achieved by metal-chelating peptides was obtained with Cadmium toxicity. It has been widely thought that Zinc has many known biological functions. Under conditions of Zn limitation, Cd enhances the growth rate of some marine phytoplankton in culture, and it thus seems that Cd may replace Zn in some essential biochemical function. To explore the effects of cadmium on the growth and expression of UDP-glucose pyrophosphorylase (UGPase) gene in Phaeodactylum tricornutum, different concentrations of Cd2+ were used to cultivate P. tricornutum and the growth, chlorophyll fluorescence parameters, UGP gene transcription level, UGPase activity and chrysolaminarin content were determined. The results showed that low concentration of Cd2+ (0.1 μmol/L) promoted the growth of P. tricornutum, and it increased the UGP gene transcriptional level, UGPase activity and the chrysolaminarin content by 100.65%, 11.99% and 9.77%, respectively, compared with those of the control group. High concentration of Cd2+ (2 and 5 μmol/L) significantly decreased all measurements. The UGP transcriptional level, UGPase activity and the chrysolaminarin content were decreased by 50.31% and 60.47%, 56.27% and 66.72%, 42.41% and 47.30%, respectively, compared with the control group. To our knowledge, this was the first time to investigate the effects of cadmium on UGP gene expression in P. tricornutum. The results revealed that low concentration of cadmium can enhance the growth of P. tricornutum, induce the expression of UGP gene and promote the synthesis of chrysolaminarin, which provide a reference for studying the expression of UGPase gene regulated by cadmium.

     

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