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Effect of Salt Stress on Germin Gene Expression in Barley Roots.

机译:盐胁迫对大麦根系萌发基因表达的影响。

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摘要

Germin gene expression in barley (Hordeum vulgare L.) seedlings responds to developmental and environmental cues. During seed germination, germin mRNA levels were maximal 2 d after the start of imbibition in control seedlings and declined to low levels by 6 d. When seeds were sown in the presence of 200 mM NaCl, germin mRNA levels were also maximal after 2 d, but NaCl treatment, which slowed seedling growth, prolonged germin gene expression for an additional 1 d. In 4-d-old seedlings, germin mRNA levels were highest in roots and higher in the vascular transition region than in shoots. In roots of 6-d-old seedlings, germin gene expression was regulated by salt shock and plant growth regulators. Induced germin mRNA levels were maximal 8 h after treatment with NaCl, salicylate, methyl salicylate, or methyl jasmonate and 4 h after treatment with abscisic acid and indoleacetic acid. Like germin mRNA, dehydrin mRNA levels were maximal 8 h after NaCl treatment. In contrast, peroxidase mRNA levels declined to less than control levels within 30 min of treatment. Germin gene expression is regulated developmentally by salt stress and by treatments with plant hormones. Since germin is an oxalate oxidase, these result imply that oxalate has important roles in plant development and homeostasis.
机译:大麦(Hordeum vulgare L.)幼苗中的萌发基因表达对发育和环境线索有响应。在种子萌发过程中,对照幼苗开始吸收后2 d,胚芽mRNA的水平最高,到6 d下降至低水平。当在200 mM NaCl存在下播种时,2 d后胚芽mRNA水平也达到最大值,但是NaCl处理减慢了幼苗的生长,又延长了胚芽基因的表达1 d。在4 d龄幼苗中,根部的胚芽mRNA水平最高,而血管过渡区的胚芽mRNA水平则高于芽。在6 d龄幼苗的根中,胚芽基因表达受到盐激和植物生长调节剂的调节。用NaCl,水杨酸盐,水杨酸甲酯或茉莉酸甲酯处理后8小时,用脱落酸和吲哚乙酸处理后4小时,诱导的胚芽mRNA水平最高。像胚芽mRNA一样,脱水钠mRNA水平在NaCl处理后最大8小时。相反,在治疗的30分钟内,过氧化物酶的mRNA水平下降至低于对照水平。盐胁迫和植物激素处理在发育过程中调节着生殖基因的表达。由于胚芽是草酸氧化酶,因此这些结果暗示草酸在植物发育和体内平衡中具有重要作用。

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