首页> 外文期刊>Journal of Applied Phycology >Response of trehalose, its degrading enzyme, sucrose, and floridoside/isofloridoside under abiotic stresses in Gracilariopsis lemaneiformis (Rhodophyta)
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Response of trehalose, its degrading enzyme, sucrose, and floridoside/isofloridoside under abiotic stresses in Gracilariopsis lemaneiformis (Rhodophyta)

机译:麦芽莲菌根植物胁迫下海藻糖,其降解酶,蔗糖和佛罗烷酚/异氯玻璃的反应(肾甲膜)

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摘要

Compatible solutes, including trehalose, sucrose, and floridoside/isofloridoside, are involved in acclimation to abiotic stresses in red algae. However, the contributions of these carbohydrates, especially trehalose and sucrose, to the stress response are still unclear. In the present study, the accumulation of these carbohydrates and the gene expression and activity of trehalase (the only degrading enzyme of trehalose) were studied under three stress conditions in the seaweed Gracilariopsis lemaneiformis. Under heat stress, trehalase activity was decreased to 0.38- and 0.46-fold at 24 and 48 h, respectively, whereas trehalose and floridoside/isofloridoside were significantly accumulated. Under salt stress, levels of trehalose and its degrading enzyme were almost unchanged; however, the floridoside amount increased between 12 and 24 h, and isofloridoside only exhibited a 1.44-fold increase at 48 h. Under drought stress, the transcriptional level and activity of trehalase were markedly upregulated with a maximum 4.36-fold increase (at 3 h) and 2.37-fold increase (at 48 h), respectively; trehalose levels remained unchanged; floridoside was significantly inhibited, and isofloridoside was almost unchanged except for a slight decrease at 24 h. In conclusion, trehalose and floridoside/isofloridoside were stimulated by heat stress; floridoside accumulation was triggered under hyperosmotic conditions; the mRNA abundance and activity of trehalase were activated by the drought treatment. However, sucrose made no contribution to abiotic stress tolerance in G. lemaneiformis.
机译:兼容溶质,包括海藻糖,蔗糖和佛罗西醚/异氟玻璃,参与了红藻类中非生物胁迫的适应性。然而,这些碳水化合物,尤其是海藻糖和蔗糖的贡献仍然不清楚。在本研究中,在海藻Gracilariopsis lemaneificis的三个应力条件下,研究了这些碳水化合物的积累和海藻糖酶的基因表达和活性(海藻糖的唯一降解)。在热应激下,在24和48小时的下,海藻酶活性降至0.38-0.46倍,而海藻糖和佛罗膦酰胺/异氟玻璃显着积累。在盐胁迫下,海藻糖水平及其降解酶几乎不变;但是,佛罗里达吡啶素在12至24小时之间增加,并且异氟玻璃苷在48小时内表现出1.44倍。在干旱胁迫下,红外酶的转录水平和活性显着上调,最大为4.36倍(3小时)和2.37倍(在48小时)增加;海藻糖水平保持不变;除了24小时的略微减少外,异氟化硼菊酯几乎不变。结论,通过热应激刺激海藻糖和佛罗膦酰胺/异氟玻璃苷;佛罗里达吡吡吡吡吡吡吡吡吡吡吡吡吡吡吡吡饰条件下;通过干旱治疗激活海藻酶的mRNA丰度和活性。然而,蔗糖对G.Lemaneificis的非生物胁迫耐受性没有贡献。

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  • 来源
    《Journal of Applied Phycology》 |2019年第6期|共9页
  • 作者单位

    Ningbo Univ Sch Marine Sci Key Lab Marine Biotechnol Zhejiang Prov Ningbo Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Key Lab Marine Biotechnol Zhejiang Prov Ningbo Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Key Lab Marine Biotechnol Zhejiang Prov Ningbo Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Key Lab Marine Biotechnol Zhejiang Prov Ningbo Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Key Lab Marine Biotechnol Zhejiang Prov Ningbo Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Key Lab Marine Biotechnol Zhejiang Prov Ningbo Zhejiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Gracilariopsis lemaneiformis; Compatible solute; Trehalose; Trehalase; Stress tolerance;

    机译:Gracilariopsis lemaneiformis;相容的溶质;海藻糖;海藻糖酶;压力耐受性;

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