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首页> 外文期刊>Plant Biotechnology Journal >Overexpression of a rice heme activator protein gene (OsHAP2E) confers resistance to pathogens, salinity and drought, and increases photosynthesis and tiller number
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Overexpression of a rice heme activator protein gene (OsHAP2E) confers resistance to pathogens, salinity and drought, and increases photosynthesis and tiller number

机译:水稻血红素活化剂蛋白基因(OSHAP2E)的过度表达赋予病原体,盐度和干旱抗性,并增加了光合作用和分蘖数

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摘要

Heme activator protein (HAP), also known as nuclear factor Y or CCAAT binding factor (HAP/NF-Y/CBF), has important functions in regulating plant growth, development and stress responses. The expression of rice HAP gene (OsHAP2E) was induced by probenazole (PBZ), a chemical inducer of disease resistance. To characterize the gene, the chimeric gene (OsHAP2E::GUS) engineered to carry the structural gene encoding -glucuronidase (GUS) driven by the promoter from OsHAP2E was introduced into rice. The transgenic lines of OsHAP2Ein::GUS with the intron showed high GUS activity in the wounds and surrounding tissues. When treated by salicylic acid (SA), isonicotinic acid (INA), abscisic acid (ABA) and hydrogen peroxide (H2O2), the lines showed GUS activity exclusively in vascular tissues and mesophyll cells. This activity was enhanced after inoculation with Magnaporthe oryzae or Xanthomonas oryzae pv. oryzae. The OsHAP2E expression level was also induced after inoculation of rice with M. oryzae and X. oryzae pv. oryzae and after treatment with SA, INA, ABA and H2O2, respectively. We further produced transgenic rice overexpressing OsHAP2E. These lines conferred resistance to M. oryzae or X. oryzae pv. oryzae and to salinity and drought. Furthermore, they showed a higher photosynthetic rate and an increased number of tillers. Microarray analysis showed up-regulation of defence-related genes. These results suggest that this gene could contribute to conferring biotic and abiotic resistances and increasing photosynthesis and tiller numbers.
机译:血红素活化剂蛋白(HAP),也称为核因子Y或CCAAT结合因子(HAP / NF-Y / CBF),具有重要的调节植物生长,发育和应力反应的功能。通过探针(PBZ)诱导水稻HAP基因(OSHAP2E)的表达,抗病抗性化学诱导剂。为了表征基因,将工程化的嵌合基因(OSHAP2E :: GUS)引入从OSHAP2e驱动的促进剂驱动的编码 - 葡糖醛酶(GUS)的结构基因被引入水稻中。 OSHAP2IN :: GUS与内含子的转基因线在伤口和周围组织中显示出高的GUS活性。当由水杨酸(SA)处理时,异烟酸(INA),脱落酸(ABA)和过氧化氢(H 2 O 2),该系列仅在血管组织和培养基细胞中显示出GUS活性。用Magnaporthe Oryzae或Xanthomonas Oryzae PV接种后,该活性增强。 oryzae。用M. Oryzae和X. Oryzae PV接种水稻后也诱导OSHAP2E表达水平。 Oryzae分别与SA,INA,ABA和H2O2处理后。我们进一步制备转基因水稻过表达OSHAP2E。这些线赋予M. Oryzae或X. Oryzae PV的抵抗力。柚子和盐度和干旱。此外,它们显示出更高的光合速率和增加数量的分蘖。微阵列分析显示了与防御相关基因的上调。这些结果表明该基因可以有助于赋予生物和非生物抗性,并增加光合作用和分蘖数。

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