Laboratorio de Biotecnología Vegetal, Instituto de Biotecnología, Universidad del Papaloapan, Tuxtepec, Oaxaca, México.
División de Estudios de Posgrado, Universidad del Papaloapan, Tuxtepec, Oaxaca, México.
Sci Rep. 2016 Jun 10;6:27686. doi: 10.1038/srep27686.
When excessive amounts of water accumulate around roots and aerial parts of plants, submergence stress occurs. To find the integrated mechanisms of tolerance, we used ecotypes of the monocot model plant Brachypodium distachyon to screen for genetic material with contrasting submergence tolerance. For this purpose, we used a set of previously studied drought sensitive/tolerant ecotypes and the knowledge that drought tolerance is positively associated with submergence stress. We decided to contrast aerial tissue transcriptomes of the ecotype Bd21 14-day-old plants as sensitive and ecotype Bd2-3 as tolerant after 2 days of stress under a long-day photoperiod. Gene ontology and the grouping of transcripts indicated that tolerant Bd2-3 differentially down-regulated NITRATE REDUCTASE and ALTERNATIVE OXIDASE under stress and constitutively up-regulated HAEMOGLOBIN, when compared with the sensitive ecotype, Bd21. These results suggested the removal of nitric oxide, a gaseous phytohormone and concomitant reactive oxygen species as a relevant tolerance determinant. Other mechanisms more active in tolerant Bd2-3 were the pathogen response, glyoxylate and tricarboxylic acid cycle integration, and acetate metabolism. This data set could be employed to design further studies on the basic science of plant tolerance to submergence stress and its biotechnological application in the development of submergence-tolerant crops.
当植物的根部和地上部分积累了过多的水分时,就会发生淹水胁迫。为了寻找耐受的综合机制,我们使用单子叶模式植物短柄草的生态型来筛选具有不同耐淹水能力的遗传物质。为此,我们使用了一组先前研究过的耐旱/耐干旱生态型,并且知道耐旱性与耐淹水胁迫呈正相关。我们决定对比 Bd21 生态型的地上组织转录组,该生态型在长日照光周期下 2 天后对 14 天龄的植物进行 2 天的胁迫处理,表现为敏感;而 Bd2-3 生态型表现为耐受。基因本体论和转录本分组表明,与敏感生态型 Bd21 相比,耐受生态型 Bd2-3 在胁迫下差异地下调硝酸盐还原酶和交替氧化酶,而组成地上调血红蛋白。这些结果表明,去除作为相关耐受决定因素的气态植物激素一氧化氮和伴随的活性氧是可行的。在耐受生态型 Bd2-3 中更为活跃的其他机制是病原体反应、乙醛酸和三羧酸循环整合以及乙酸代谢。这个数据集可以用于设计进一步的研究,以了解植物耐受淹水胁迫的基础科学及其在开发耐淹水作物方面的生物技术应用。