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Physiological responses among Brassica species under salinity stress show strong correlation with transcript abundance for SOS pathway-related genes

机译:盐胁迫下甘蓝型油菜种间的生理反应与SOS途径相关基因的转录本丰度密切相关

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Significant inter- and intra-specific variation for salt tolerance exists within the family Brassicaceae, which may be explored for dissecting genetic determinants of the salinity response in crops belonging to this family. Availability of contrasting cultivars for salinity response in crop species, such as Brossica, is highly advantageous for obvious reasons. Our analysis has indicated usefulness of available local germplasm (diploid and amphidiploid) in this endeavor. Assessments carried out employing suitable morphological, physiological and biochemical parameters in these cultivars reconfirm established fact related to 'in-general' better adaptability of amphidiploid species over diploid ones. In our study, the salinity-tolerant amphidiploid Brassica juncea cv CS52 (AB genome) exhibited sharp contrast in salinity response as compared to the sensitive diploid species Brassica nigra (B genome). The differences included effects of salinity on overall growth, electrolyte leakage, proline accumulation and the K+/Na+ ratio (P <= 0.01). Correlating well with relative stress tolerance of these Brassica cultivars, our studies on relative transcript abundance for salt overly sensitive (SOS) pathway orthologues also exhibited contrasting patterns of transcript accumulation. Transcript accumulation pattern for various SOS members after 24h of salinity stress in various cultivars showed strong positive correlation with these parameters (r >= 0.4). Clearly, there is a need to carry out in-depth analysis to explore the suitability of these contrasting cultivars to search for genetic determinant(s) of salt tolerance among Brassica species. We propose that these contrasting Brassica cultivars can serve as suitable dicot crop models for elucidating stress-relevant genetic determinants in genome-level analysis. (C) 2008 Elsevier GmbH. All rights reserved.
机译:十字花科中存在明显的耐盐性种内差异,可以探索该方法以剖析该家族农作物盐分反应的遗传决定因素。由于明显的原因,在诸如芸苔属的作物物种中对盐分响应的对比品种的可用性是非常有利的。我们的分析表明,在这项工作中,可用的当地种质(二倍体和两性倍体)很有用。在这些品种中使用合适的形态,生理和生化参数进行的评估再次证实了与二倍体物种比二倍体物种“一般”更好的适应性有关的事实。在我们的研究中,与敏感的二倍体物种黑芥(B基因组)相比,耐盐性的二倍体芥菜cv CS52(AB基因组)在盐度响应方面表现出鲜明的对比。差异包括盐度对整体生长,电解质渗漏,脯氨酸积累和K + / Na +比的影响(P <= 0.01)。与这些甘蓝型油菜的相对胁迫耐性很好地相关,我们对盐过度敏感(SOS)途径直向同源物的相对转录本丰度的研究也显示了转录本积累的对比模式。盐分胁迫24h后,不同SOS成员的转录本积累模式与这些参数呈极显着正相关(r> = 0.4)。显然,有必要进行深入分析,以探索这些对比品种在芸苔属物种中寻找耐盐性遗传决定因素的适合性。我们建议这些相反的甘蓝型油菜可以作为合适的双子叶植物模型来阐明基因组水平分析中与胁迫相关的遗传决定因素。 (C)2008 Elsevier GmbH。版权所有。

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