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首页> 外文期刊>Journal of Thermal Biology >Thermal tolerance of dried shoots of the moss Bryum argenteum
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Thermal tolerance of dried shoots of the moss Bryum argenteum

机译:苔藓布鲁斯百杉的干芽的热耐受性

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摘要

We conducted laboratory experiments to determine the lethal temperatures of the shoots of dried Bryum argenteum and to determine how this restoration species responds to extreme environments. We specifically assessed changes in gene expression levels in the shoots of dried B. argenteum plants that were subjected to sudden heat shock (control (20 + 2 degrees C), 80 degrees C, 100 degrees C, 110 degrees C or 120 degrees C) followed by exposure to heat for an additional 10, 20, 30 or 60 min. After they were exposed to heat, the samples were placed in wet sand medium, and their survival and regeneration abilities were evaluated daily for 56 days. The results showed that lethal temperatures significantly reduced the shoot regeneration potential, delayed both shoot and protonemal emergence times and reduced the protonemal emergence area. In addition, the expression of nine genes (HSF3, HSP70, ERF, LEA, ELIP, LHCA, LHCB, Tr288 and DHN) was induced by temperature stress, as assessed after 30 min of exposure. Additionally, a new thermal tolerance level for dried B. argenteum - 120 degrees C for 20 min - was determined, which was the highest temperature recorded for this moss; this tolerance exceeded the previous record of 110 degrees C for 10 min. These findings help elucidate the survival mechanism of this species under heat shock stress and facilitate the recovery and restoration of destroyed ecosystems.
机译:我们进行了实验室实验,以确定干燥的Bryum Argenteum芽的致命温度,并确定该恢复物种如何应对极端环境。我们特别评估干燥B.的生物B.的基因表达水平的变化。对干燥的B.菌株突然进行热冲击(对照(20 + 2℃),80℃,100℃,110℃或120℃)然后暴露于加热另外10,20,30或60分钟。在将它们暴露于热之后,将样品置于湿砂介质中,并每天评估它们的存活和再生能力56天。结果表明,致命的温度显着降低了射击再生潜力,延迟了芽和原型出现时间,减少了原型出现面积。另外,通过温度应激诱导9个基因(HSF 3,HSP70,ERF,ERF,LEA,elip,LHCA,LHCB,TR288和DHN)的表达,如30分钟暴露于30分钟后评估。另外,测定了干燥B.Agenteum-120c-120℃的新的热耐耐受水平 - 是为此苔藓记录的最高温度;这种耐受性超过了110℃的先前记录10分钟。这些发现有助于阐明这种物种在热冲击压力下的存活机制,并促进破坏生态系统的复苏和恢复。

著录项

  • 来源
    《Journal of Thermal Biology》 |2020年第2020期|共9页
  • 作者单位

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

    Nanjing Forestry Univ 159 Longpan Rd Nanjing Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

    Chinese Acad Sci Xinjiang Inst Ecol &

    Geog CAS Key Lab Biogeog &

    Bioresource Arid Land Urumqi Peoples R China;

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

    Desiccation biology; Gurbantunggut desert; Thermal tolerance; Regeneration;

    机译:干燥生物学;Gurbantunggut沙漠;热耐受;再生;

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