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Abiotic stress-induced oscillations in steady-state transcript levels of Group 3 LEA protein genes in the moss Physcomitrella patens

机译:非生物胁迫诱导苔藓小立碗藓中第3组LEA蛋白基因稳态转录水平的振荡

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摘要

The moss, Physcomitrella patens is a non-seed land plant belonging to early diverging lineages of land plants following colonization of land in the Ordovician period in Earth’s history. Evidence suggests that mosses can be highly tolerant of abiotic stress. We showed previously that dehydration stress and abscisic acid treatments induced oscillations in steady-state levels of LEA (Late Embryogenesis Abundant) protein transcripts, and that removal of ABA resulted in rapid attenuation of oscillatory increases in transcript levels. Here, we show that other abiotic stresses like salt and osmotic stresses also induced oscillations in steady-state transcript levels and that the amplitudes of the oscillatory increases in steady-state transcript levels are reflective of the severity of the abiotic stress treatment. Together, our results suggest that oscillatory increases in transcript levels in response to abiotic stresses may be a general phenomenon in P. patens and that temporally dynamic increases in steady-state transcript levels may be important for adaptation to life in constantly fluctuating environmental conditions.
机译:苔藓小叶藓(Physcomitrella patens)是一种非种子的陆地植物,属于地球历史上奥陶纪时期的土地定殖后的早期分化植物。有证据表明,苔藓可以高度耐受非生物胁迫。我们以前表明脱水压力和脱落酸处理在LEA(晚期胚胎发生丰富)蛋白转录物的稳态水平下引起振荡,而ABA的去除导致转录物水平的振荡增加迅速减弱。在这里,我们表明,其他非生物胁迫(如盐和渗透胁迫)也会引起稳态转录本水平的振荡,并且稳态转录本水平上振荡增加的幅度反映了非生物胁迫处理的严重性。总之,我们的结果表明,响应非生物胁迫,转录水平的振荡增加可能是P. patens中的普遍现象,而稳态转录水平的时间动态增加对于在不断变化的环境条件下适应生活可能很重要。

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