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A relationship between tolerance to dehydration of rice cell lines and ability for ABA synthesis under stress

机译:胁迫下水稻细胞系的脱水耐性与ABA合成能力的关系

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Plant dehydration is commonly caused by some adverse environmental conditions such as salinity, drought and freezing. As the plant hormone abscisic acid (ABA) is involved in responses to water stress, we studied its putative relationship with the degree of tolerance to these abiotic stresses. For this purpose we used cell lines that had been established from mature embryos of rice (Oryza sativa L, cvs. Bahia and Bomba), and selected by their high (L-T) or low (L-S) levels of tolerance to each type of stress. Tolerance of rice calli to either osmotic, saline, or freezing stress was generally improved by a previous treatment with ABA. This ABA effect was evident in those callus lines with low tolerance (L-S), as their ability to recover from stress increased up to three fold. Independent of the cultivar used, there were no significant differences in the endogenous ABA contents between untreated L-T and L-S lines. However, upon stress, the increase in endogenous ABA was higher in L-T than in L-S lines. These results, together with those obtained by using Fluridone, an inhibitor of ABA synthesis, show that differences in the level of cell tolerance to osmotic, saline and freezing stress are related to their different capacity of ABA synthesis under stress conditions. (c) 2005 Elsevier SAS. All rights reserved.
机译:植物脱水通常是由一些不利的环境条件引起的,例如盐度,干旱和冻结。由于植物激素脱落酸(ABA)参与了对水分胁迫的响应,因此我们研究了其与这些非生物胁迫的耐受程度之间的推定关系。为此目的,我们使用了从水稻成熟胚(Oryza sativa L,cvs.Bahia和Bomba)建立的细胞系,并根据其对每种胁迫的耐受性高(L-T)或低(L-S)水平进行选择。水稻愈伤组织对渗透,盐或冰冻胁迫的耐受性通常通过先前用ABA处理而得到改善。这种ABA效应在那些低耐受性(L-S)的愈伤组织中很明显,因为它们从压力中恢复的能力提高了三倍。与所用品种无关,未经处理的L-T和L-S品系之间的内源ABA含量无显着差异。然而,在胁迫下,L-T的内源ABA的增加高于L-S系。这些结果以及使用氟啶酮(ABA合成抑制剂)获得的结果表明,细胞对渗透,盐和冰冻胁迫的耐受性水平的差异与它们在胁迫条件下合成ABA的不同能力有关。 (c)2005 Elsevier SAS。版权所有。

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