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A Kruppel-like transcription factor gene is involved in salt stress responses in Medicago spp.

机译:Kruppel样转录因子基因参与了Medicago spp中的盐胁迫反应。

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Legume plants are able to fix nitrogen in symbiotic association with rhizobia and, like many crops, are sensitive to high salt conditions. However, very few molecular markers can be associated to stress tolerance in legume crops. A Kruppel-like transcription factor, Mtzpt2-1, required for the formation of the nitrogen-fixing region, confers salt tolerance to yeast cells. Here, legume responses to salt stresses were studied using alfalfa and its close relative Medicago truncatula, a model legume species. Salt stress induces the Mszpt2-1 gene both in roots and root harbouring nodules. In addition, Sinorhizobium meliloti strains tolerating up to 700 mM NaCl, were used in nodulation assays to assess salt tolerance of the symbiotic response of M. truncatula. Few nodules, mainly in the upper part of the root, could be detected in plants treated with 200 mM NaCl, suggesting that nodule initiation was particularly sensitive to salt stress. We have also defined for M. truncatula the threshold of NaCl tolerance after which recovery of stressed plants is irreversible under laboratory conditions. After analysing several times of salt treatment ( 150 mM NaCl), M. truncatula 108R plants stressed for 7 days could not recover ( less than 5%), whereas a 4-day treatment allowed at least 75% recovery. Transgenic M. truncatula plants expressing Mtzpt2-1 in antisense configuration are more sensitive to 'recover' from salt stress than the wild type. These results identify Mtzpt2-1 as a molecular marker potentially linked to stress tolerance in M. truncatula and suggest its participation in a transcriptional program induced in these plants to cope with salt stress. [References: 21]
机译:豆科植物能够与根瘤菌共生结合固定氮,并且像许多农作物一样,对高盐条件敏感。然而,很少有分子标记物与豆类作物的胁迫耐受性相关。形成固氮区所需的Kruppel样转录因子Mtzpt2-1,赋予酵母细胞耐盐性。在这里,使用紫花苜蓿及其近缘的苜蓿苜蓿模型豆研究了豆科植物对盐胁迫的响应。盐胁迫在根和根瘤中都诱导了Mszpt2-1基因。此外,在结瘤试验中使用了耐受高达700 mM NaCl的苜蓿中华根瘤菌菌株,以评估截叶分枝杆菌共生反应的耐盐性。在用200 mM NaCl处理过的植物中,几乎没有根瘤,主要在根的上部,这表明根瘤的萌发对盐胁迫特别敏感。我们还为截短芒草(M. truncatula)定义了NaCl耐受性的阈值,在此阈值之后,在实验室条件下无法恢复受胁迫的植物。在分析了数次盐处理(150 mM NaCl)后,压力达7天的梅花苜蓿108R植物无法恢复(少于5%),而4天的处理至少恢复了75%。以野生型表达反义构型的Mtzpt2-1的转基因M. truncatula植物对从盐胁迫中“恢复”更为敏感。这些结果将Mtzpt2-1鉴定为可能与截叶芒抗逆性相关的分子标记,并暗示其参与了在这些植物中诱导的转录程序以应对盐胁迫。 [参考:21]

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