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Proline accumulation and salt-stress-induced gene expression in a salt-hypersensitive mutant of Arabidopsis.

机译:拟南芥盐超敏感突变体中脯氨酸的积累和盐胁迫诱导的基因表达。

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摘要

The sos1 mutant of Arabidopsis thaliana is more than 20 times more sensitive to NaCl stress than wild type Arabidopsis. Because proline (Pro) is generally thought to have an important role in plant salt tolerance, the sos1 mutant and the wild type were compared with respect to their capacity to accumulate Pro under NaCl stress, and sos1 mutant plants accumulated more Pro than wild-type. The P5CS gene, which catalyzes the rate-limiting step in Pro biosynthesis, is induced by salt stress to a higher level in sos1 than in the wild type. Although a defective high-affinity K uptake system in sos1 causes K deficiency and inhibits growth in NaCl-treated plants, this decrease is not a sufficient signal for Pro accumulation and P5CS gene expression. Not all salt-stress-induced genes have a higher level of expression in sos1. The expression levels of AtPLC and RD29A, which encode a phospholipase C homolog and a putative protective protein, respectively, are the same in sos1 as in the wild type. However, the expression of AtMYB, which encodes a putative transcriptional factor, is induced to a much higher level by salt stress in sos1. Thus, the SOS1 gene product serves as a negative regulator for the expression of P5CS and AtMYB, but has no effect on AtPLC and RD29A expression.
机译:拟南芥的sos1突变体对NaCl胁迫的敏感性是野生型拟南芥的20倍以上。由于一般认为脯氨酸(Pro)在植物耐盐性中起重要作用,因此比较了sos1突变体和野生型在NaCl胁迫下积累Pro的能力,并且sos1突变体植物比野生型积累了更多的Pro 。盐胁迫在sos1中诱导的P5CS基因在Pro生物合成中催化了限速步骤,其诱导水平高于野生型。尽管sos1中高亲和力的K吸收系统存在缺陷,导致K缺乏并抑制了NaCl处理的植物的生长,但这种下降并不是Pro积累和P5CS基因表达的充分信号。并非所有盐胁迫诱导的基因在sos1中都有较高的表达水平。在sos1中,分别编码磷脂酶C同源物和推定的保护性蛋白的AtPLC和RD29A的表达水平与野生型相同。但是,编码盐假定的转录因子AtMYB的表达被sos1中的盐胁迫诱导到更高的水平。因此,SOS1基因产物充当P5CS和AtMYB表达的负调节剂,但对AtPLC和RD29A表达没有影响。

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