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首页> 外文期刊>Agronomy >Growth, Physiological, Biochemical, and Transcriptional Responses to Drought Stress in Seedlings of Medicago sativa L., Medicago arborea L. and Their Hybrid (Alborea)
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Growth, Physiological, Biochemical, and Transcriptional Responses to Drought Stress in Seedlings of Medicago sativa L., Medicago arborea L. and Their Hybrid (Alborea)

机译:紫花苜蓿,紫花苜蓿及其杂种(Alborea)幼苗对干旱胁迫的生长,生理,生化和转录响应

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Medicago sativa L. is a tetraploid perennial forage legume of great agronomical interest. The increasing need for its use under water-deficit conditions as well as low-input systems demands further improvement of its drought tolerance. On the other hand, Medicagoarborea L. is a perennial leguminous shrub, which is knownas a drought-tolerant species. In the present study, drought stress responses of the aforementioned medicago species, along with their hybrid, named Alborea, were comparatively assayed at the morphological, physiological, biochemical, and transcriptional levels. In particular, transcript abundance of representative genes that: (a) control ion transport, intracellular Na + /H + antiporters ( NHX1 ) and rare cold inducible2A ( RCI2A ); (b) have an osmotic function Δ1-pyrroline-5-carboxylate synthetase 1 ( P5CS1 ); and (c) participate in signaling pathways and control cell growth and leaf function stress-induced mitogen-activated protein kinases kinases ( SIMKK ), Zinc Finger ( ZFN ), apetala2/ethylene-responsive element binding ( AP2/EREB ), basic leucine zipper ( bzip ) and Medicago sativa Helicase 1 ( MH1 ) were evaluated. Under well-watered conditions, the studied population of Alborea showed the highest stem elongation rate and photosynthetic rate that were dramatically reduced under drought conditions compared to M. sativa and M. arborea . Under drought conditions, the studied population of M. arborea showed less reduction of relative water content, all gas-exchange parameters, less lipid peroxidation, and more antioxidant capacity. Moreover, transcriptional analysis demonstrated that the population of M. arborea exhibited significantly higher transcript levels of drought-responsive genes in both leaves and roots under drought stress conditions. M. sativa has better antioxidant capacity than Alborea and had a higher induction of stress-related genes, thus it performs better than Alborea under drought conditions. Among the studied genes, it seems that AP2/EREB play a critical role in the response of the studied population to drought stress.
机译:紫花苜蓿是具有极大农学意义的四倍体多年生牧草豆科植物。在缺水条件下以及低投入系统中使用它的需求不断增加,要求进一步提高其耐旱性。另一方面,Medicagoarborea L.是多年生的豆科灌木,被称为耐旱种。在本研究中,在形态,生理,生化和转录水平上比较分析了上述药用植物及其杂种Alborea的干旱胁迫响应。特别是,代表基因的转录本丰富度:(a)控制离子转运,细胞内Na + / H +反转运蛋白(NHX1)和罕见的冷诱导型2A(RCI2A); (b)具有渗透功能的Δ1-吡咯啉-5-羧酸合成酶1(P5CS1); (c)参与信号传导途径并控制细胞生长和叶片功能胁迫诱导的丝裂原活化蛋白激酶激酶(SIMKK),锌指(ZFN),花瓣2 /乙烯反应元件结合(AP2 / EREB),基本亮氨酸拉链(bzip)和紫花苜蓿解旋酶1(MH1)进行了评估。在水分充足的条件下,与干旱苜蓿和苜蓿苜蓿相比,在干旱条件下,所研究的苜蓿种群显示出最高的茎伸长率和光合速率,其显着降低。在干旱条件下,所研究的M. arborea种群显示相对含水量减少较少,所有气体交换参数减少,脂质过氧化作用减少,抗氧化能力增加。此外,转录分析表明,在干旱胁迫条件下,M。arborea种群在叶片和根部均表现出明显更高的干旱反应基因转录水平。紫花苜蓿的抗氧化能力比白花苜蓿更好,对胁迫相关基因的诱导也更高,因此在干旱条件下其表现要好于白花苜蓿。在所研究的基因中,似乎AP2 / EREB在所研究种群对干旱胁迫的响应中起着关键作用。

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