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Expression of Pennisetum glaucum Eukaryotic Translational Initiation Factor 4A (PgeIF4A) Confers Improved Drought Salinity and Oxidative Stress Tolerance in Groundnut

机译:青草狼尾草真核翻译起始因子4A(PgeIF4A)的表达赋予花生改善的干旱盐分和氧化胁迫耐受性

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摘要

Eukaryotic translational initiation factor 4A belong to family of helicases, involved in multifunctional activities during stress and non-stress conditions. The eIF4A gene was isolated and cloned from semi-arid cereal crop of Pennisetum glaucum. In present study, the PgeIF4A gene was expressed under the regulation of stress inducible Arabidopsis rd29A promoter in groundnut (cv JL-24) with bar as a selectable marker. The de-embryonated cotyledons were infected with Agrobacterium tumefaciens (LBA4404) carrying rd29A:PgeIF4A construct and generated high frequency of multiple shoots in phosphinothricin medium. Twenty- four T0 plants showed integration of both nos-bar and rd29A-PgeIF4A gene cassettes in genome with expected amplification products of 429 and 654 bps, respectively. Transgene copy number integration was observed in five T0 transgenic plants through Southern blot analysis. Predicted Mendelian ratio of segregation (3:1) was noted in transgenic plants at T1 generation. The T2 homozygous lines (L1-5, L8-2, and L16-2) expressing PgeIF4A gene were exhibited superior growth performance with respect to phenotypic parameters like shoot length, tap root length, and lateral root formation under simulated drought and salinity stresses compared to the wild type. In addition, the chlorophyll retention was found to be higher in these plants compared to the control plants. The quantitative real time—PCR results confirmed higher expression of PgeIF4A gene in L1-5, L8-3, and L16-2 plants imposed with drought/salt stress. Further, the salt stress tolerance was associated with increase in oxidative stress markers, such as superoxide dismutase accumulation, reactive oxygen species scavenging, and membrane stability in transgenic plants. Taken together our results confirmed that the PgeIF4A gene expressing transgenic groundnut plants exhibited better adaptation to stress conditions.
机译:真核翻译起始因子4A属于解旋酶家族,参与应激和非应激条件下的多功能活动。从青草狼尾草的半干旱谷物中分离并克隆了eIF4A基因。在目前的研究中,PgeIF4A基因在花生(cv JL-24)花生中诱导胁迫诱导的拟南芥rd29A启动子的调控下表达,并以bar为选择标记。用携带rd29A:PgeIF4A构建体的根癌农杆菌(LBA4404)感染去胚子叶,并在膦丝菌素培养基中产生高频率的多次芽。 24株T0植物显示nos-bar和rd29A-PgeIF4A基因盒在基因组中的整合,预期扩增产物分别为429和654 bps。通过Southern印迹分析在5个T0转基因植物中观察到转基因拷贝数整合。在T1代转基因植物中记录了预测的孟德尔偏析比(3:1)。在模拟干旱和盐分胁迫下,表达PgeIF4A基因的T2纯合系(L1-5,L8-2和L16-2)在表型参数(如枝条长度,穗根长度和侧根形成)方面表现出优异的生长性能。野生型。另外,与对照植物相比,发现这些植物中的叶绿素保留更高。实时定量PCR结果证实,在受到干旱/盐胁迫的L1-5,L8-3和L16-2植物中PgeIF4A基因的表达更高。此外,盐胁迫耐受性与氧化胁迫标志物的增加相关,例如超氧化物歧化酶积累,活性氧清除和转基因植物中的膜稳定性。综上所述,我们的结果证实了表达PgeIF4A基因的转基因花生植物表现出对胁迫条件的更好适应性。

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