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Overexpression of a Stress-Responsive NAC Transcription Factor Gene ONAC022 Improves Drought and Salt Tolerance in Rice

机译:胁迫响应性NAC转录因子基因ONAC022的过表达提高水稻的耐旱和耐盐性

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摘要

The NAC transcription factors play critical roles in regulating stress responses in plants. However, the functions for many of the NAC family members in rice are yet to be identified. In the present study, a novel stress-responsive rice NAC gene, ONAC022, was identified. Expression of ONAC022 was induced by drought, high salinity, and abscisic acid (ABA). The ONAC022 protein was found to bind specifically to a canonical NAC recognition cis-element sequence and showed transactivation activity at its C-terminus in yeast. The ONAC022 protein was localized to nucleus when transiently expressed in Nicotiana benthamiana. Three independent transgenic rice lines with overexpression of ONAC022 were generated and used to explore the function of ONAC022 in drought and salt stress tolerance. Under drought stress condition in greenhouse, soil-grown ONAC022-overexpressing (N22oe) transgenic rice plants showed an increased drought tolerance, leading to higher survival ratios and better growth than wild-type (WT) plants. When grown hydroponically in Hogland solution supplemented with 150 mM NaCl, the N22oe plants displayed an enhanced salt tolerance and accumulated less Na+ in roots and shoots as compared to WT plants. Under drought stress condition, the N22oe plants exhibited decreased rates of water loss and transpiration, reduced percentage of open stomata and increased contents of proline and soluble sugars. However, the N22oe lines showed increased sensitivity to exogenous ABA at seed germination and seedling growth stages but contained higher level of endogenous ABA. Expression of some ABA biosynthetic genes (OsNCEDs and OsPSY), signaling and regulatory genes (OsPP2C02, OsPP2C49, OsPP2C68, OsbZIP23, OsAP37, OsDREB2a, and OsMYB2), and late stress-responsive genes (OsRAB21, OsLEA3, and OsP5CS1) was upregulated in N22oe plants. Our data demonstrate that ONAC022 functions as a stress-responsive NAC with transcriptional activator activity and plays a positive role in drought and salt stress tolerance through modulating an ABA-mediated pathway.
机译:NAC转录因子在调节植物的胁迫反应中起关键作用。但是,水稻中许多NAC家族成员的功能尚待确定。在本研究中,确定了一个新的胁迫响应水稻NAC基因ONAC022。干旱,高盐度和脱落酸(ABA)诱导了ONAC022的表达。发现ONAC022蛋白与经典的NAC识别顺式元件序列特异性结合,并在酵母的C端显示反式激活活性。在本氏烟草中瞬时表达时,ONAC022蛋白位于核内。产生了三个过表达ONAC022的独立转基因水稻品系,并用于探索ONAC022在干旱和盐胁迫耐受性中的功能。在温室中干旱胁迫条件下,土壤生长的过表达ONAC022(N22oe)的转基因水稻植物显示出更高的耐旱性,与野生型(WT)植物相比,具有更高的存活率和更好的生长。与添加WT的植物相比,当在添加有150 mM NaCl的Hogland溶液中水培生长时,N22oe植物显示出更高的耐盐性,并且在根和芽中积累的Na + 更少。在干旱胁迫条件下,N22oe植物的水分流失和蒸腾速率降低,开放气孔的百分比降低,脯氨酸和可溶性糖含量增加。但是,N22oe品系在种子萌发和幼苗生长阶段对外源ABA的敏感性增强,但内源ABA的含量较高。某些ABA生物合成基因(OsNCEDs和OsPSY),信号和调节基因(OsPP2C02,OsPP2C49,OsPP2C68,OsbZIP23,OsAP37,OsDREB2a和OsMYB2)和晚期应激反应基因( OsRAB21 , N22oe植物中的em> OsLEA3 OsP5CS1 )被上调。我们的数据表明 ONAC022 可以作为具有转录激活因子活性的胁迫响应NAC发挥作用,并通过调节ABA介导的途径在干旱和盐胁迫耐受性中发挥积极作用。

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