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Potato granule-bound starch synthase promoter-controlled GUS expression: regulation of expression after transient and stable transformation

机译:马铃薯颗粒结合淀粉合酶启动子控制的GUS表达:瞬时稳定转化后的表达调控

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Chimaeric genes of promoter sequences from the potato gene encoding granule-bound starch synthase (GBSS) and the β-glucuronidase (GUS) reporter gene were used to study GBSS expression and regulation. Analysis of stable transformants revealed that a GBSS promoter sequence of 0.4 kb was sufficient to result in tissue-dependent GUS expression: levels in stably transformed microtubers exceeded levels in corresponding leaves by orders of magnitude. GBSS-GUS constructs could be transiently expressed in leaf protoplasts from wild-type and amylose-free potato lines, etuberosumSolanum brevidens, Nicotiana tabacumandArabidopsis thaliana. Transient expression levels in potato leaf protoplasts were clearly lower than in corresponding suspension cell protoplasts. This lower expression in leaf protoplasts could not be elevated by increasing DNA concentrations during transfection. Light incubation of electroporated suspension cell protoplasts reduced transient GBSS-GUS expression, whereas incubation of transfected protoplasts in media with different sucrose concentrations did not affect transient expression levels. However, electroporated protoplasts, isolated from suspensions, which had been grown on media with increasing amounts of sucrose showed a sucrose concentration-dependent transient expression profile. This indicates that studying GBSS regulation by transient expression experiments needs pre-treatment of the protoplast source. Sequence data of the GBSS promoter were compared to those of two other potato alleles
机译:采用马铃薯颗粒结合淀粉合酶(GBSS)和β-葡萄糖醛酸酶(GUS)报告基因启动子序列嵌合基因研究GBSS的表达和调控。对稳定转化体的分析表明,0.4 kb的GBSS启动子序列足以导致组织依赖性GUS表达:稳定转化的微块茎中的水平超过相应叶片中的水平几个数量级。GBSS-GUS构建体可以在野生型和无直链淀粉马铃薯品系的叶原生质体中瞬时表达,etuberosumSolanum brevidens,烟草和拟南芥。马铃薯叶原生质体中的瞬时表达水平明显低于相应的悬浮细胞原生质体。叶原生质体中这种较低的表达不能通过转染过程中增加 DNA 浓度来升高。电穿孔悬浮细胞原生质体的光孵育降低了瞬时GBSS-GUS表达,而转染原生质体在不同蔗糖浓度的培养基中孵育不影响瞬时表达水平。然而,从悬浮液中分离出来的电穿孔原生质体,在蔗糖含量增加的培养基上生长,显示出蔗糖浓度依赖性的瞬时表达谱。这表明通过瞬时表达实验研究GBSS调控需要对原生质体源进行预处理。将GBSS启动子的序列数据与其他两个马铃薯等位基因的序列数据进行比较

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