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Heat treatment results in a loss of transgene-encoded activities in several tobacco lines.

机译:热处理导致几种烟草品系丧失转基因编码的活性。

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摘要

Heat treatment (37 degrees C) of transgenic tobacco (Nicotiana tabacum) plants led to a reversible reduction or complete loss of transgene-encoded activities in about 40% of 10 independent transformants carrying the luciferase-coding region fused to the 355 cauliflower mosaic virus or the soybean small subunit promoter and the nopaline synthase promoter driving the neomycin phosphotransferase gene, whereas the other lines had temperature-tolerant activities. Temperature sensitivity or tolerance of transgene-encoded activities was heritable. In some of the lines, temperature sensitivity of the transgene-encoded activities depended on the stage of development, occurring in either seedlings (40% luciferase and 50% neomycin phosphotransferase) or adult plants (both 40%). The phenomenon did not correlate with copy numbers or the homo- or hemizygous state of the transgenes. In lines harboring a temperature-sensitive luciferase activity, reduction of bioluminescence was observed after 2 to 3 h at 37 degrees C. Activity was regained after 2 h of subsequent cultivation at 25 degrees C. Irrespective of the reaction to the heat treatment, the level of luciferase RNA was slightly increased at 37 degrees C. Only in lines showing temperature sensitivity of transgene-encoded activities was the amount of luciferase and neomycin phosphotransferase strongly reduced. In sterile culture, heat treatment for 15 d did not cause visible damage or changes in plant morphology. In all plants tested a slight induction of the heat-shock response was observed at 37 degrees C.
机译:对转基因烟草(Nicotiana tabacum)植物进行的热处理(37°C)导致可逆降低或完全丧失了10个独立转化子中40%的转基因编码活性,这些转化子带有与355花椰菜花叶病毒融合的荧光素酶编码区或大豆小亚基启动子和胭脂碱合酶启动子驱动新霉素磷酸转移酶基因,而其他品系具有耐温活性。温度敏感性或转基因编码活动的耐受性是可遗传的。在某些品系中,转基因编码活性的温度敏感性取决于发育阶段,发生在幼苗(40%荧光素酶和50%新霉素磷酸转移酶)或成年植物(均为40%)中。该现象与拷贝数或转基因的纯合或半合状态无关。在具有温度敏感性萤光素酶活性的品系中,在37摄氏度下2至3小时后观察到生物发光的减少。在随后于25摄氏度下培养2小时后,活性得以恢复。不管热处理的反应如何,其水平37℃下荧光素酶RNA的量略有增加。仅在显示对转基因编码的活性具有温度敏感性的品系中,荧光素酶和新霉素磷酸转移酶的量强烈减少。在无菌培养中,热处理15天没有引起可见的损害或植物形态的变化。在所有测试的植物中,在37摄氏度下观察到轻微的热激反应诱导。

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