通过表达 hiC6 基因提高转基因烟草叶片的抗冻性。

K Honjoh, H Shimizu, N Nagaishi, H Matsumoto, K Suga, T Miyamoto, M Iio, S Hatano
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引用次数: 23

摘要

在烟草(一种对寒冷敏感的植物)中转基因表达了一种低温保护蛋白--HIC6,并研究了该蛋白在细胞内的定位以及转基因烟草的耐寒性。为了在烟草中组成型表达 HIC6,将其相应的基因亚克隆到 pBI121 中。通过转化 pBI121/hiC6,获得了 15 个转基因烟草品系,其中 12 个品系表达了 HIC6 蛋白。然而,这些转基因烟草品系与对照植株(野生型和用 pBI121 转化的植株)在-1、-3 和-4 摄氏度下的耐冻性均无明显差异,只有在-2 摄氏度下的耐冻性有明显差异。在用 pBE2113/hiC6 转化的 13 个品系中,有 8 个品系表达了该蛋白。用 pBE2113/hiC6 转化的烟草植株的蛋白积累水平明显高于用 pBI121/hiC6 转化的植株。HIC6 蛋白似乎定位于转基因烟草植株的线粒体中。-1-4摄氏度的耐冻试验表明,pBE2113/hiC6植株的电解质渗漏程度明显低于对照植株。对叶片褐变的观察也表明,HIC6 的高积累能显著抑制转基因烟草在零下 3 摄氏度时受到的冻害。
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Improvement of freezing tolerance in transgenic tobacco leaves by expressing the hiC6 gene.

A cryoprotective protein, HIC6, was expressed transgenically in tobacco, a cold-sensitive plant, and the localization of the protein within the cell as well as freezing tolerance of the transgenic tobacco was investigated. For constitutive expression of HIC6 in tobacco, its corresponding gene was subcloned into pBI121. Through the transformation with pBI121/hiC6, fifteen transgenic tobacco lines were acquired, out of which twelve lines expressed the HIC6 protein. None of the transgenic tobacco lines, however, showed significant differences in freezing tolerance from the control plants (wild-type and transformed with pBI121) at -1, -3, and -4 degrees C, with the exception that their freezing temperature was -2 degrees C. In order to increase the accumulation level of HIC6, pBE2113 with a stronger promoter was used. Eight lines expressed the protein out of thirteen lines transformed with pBE2113/hiC6. The accumulation levels of the protein were clearly higher in the tobacco plants transformed with pBE2113/hiC6 than in those with pBI121/hiC6. The HIC6 protein seemed to be localized in mitochondria of the transgenic tobacco plants. Freezing-tolerance tests at -1 - -4 degrees C showed that the degree of electrolyte leakage was significantly lower in the plants with pBE2113/hiC6 than in the control plants. A leaf browning observation also showed that high accumulation of HIC6 significantly suppressed injury caused by freezing to the transgenic tobacco at -3 degrees C.

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