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首页> 外文期刊>Russian Journal of Plant Physiology >Cytokinin regulates differentially expression of P (AHK) -GUS constructs in transgenic Arabidopsis thaliana plants
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Cytokinin regulates differentially expression of P (AHK) -GUS constructs in transgenic Arabidopsis thaliana plants

机译:细胞分裂素调节转基因拟南芥植物中P(AHK)-GUS构建体的差异表达

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摘要

The expression regulation by cytokinin of genetic constructs P (AHK2) -GUS, P (AHK3) -GUS, and P (AHK4) -GUS in transgenic Arabidopsis thaliana (L.) Heynh plants bearing the gene encoding beta-glucuronidase (GUS) under the control of the promoter of one of three genes encoding histidine protein kinases, which are membrane receptors of cytokinin was studied. In 4-5-day-old etiolated A. thaliana seedlings, treatment with cytokinin resulted in the strongest expression activation of the constructs P (AHK2) -GUS and P (AHK3) -GUS. The same constructs were activated by cytokinin also at the seedling transit from scoto- to photomorphogenesis. Long-term seedling growing in darkness on medium containing cytokinin resulted in the substantial promoter activation of the gene encoding the histidine kinase AHK2. In the leaves of three-week-old plants with actively functioning chloroplasts, treatment with cytokinin mainly stimulated expression of the construct P (AHK3) -GUS. In detached senescing leaves, treatment with cytokinin retarded the loss of chlorophyll but did not affect significantly GUS activity under both light and darkness conditions in either of tested lines containing GUS gene under the control of promoters of histidine kinase genes. At the same time, cytokinin activated the promoter of the gene of primary response to cytokinin in the construct P (ARR5) -GUS. Thus, in the studied test-system, treatment with cytokinin of A. thaliana plant grown in darkness or in the light affected differently the expression of histidine kinase genes in dependence of plant age, conditions of plant cultivation, and plant physiological state.
机译:细胞分裂素对转基因拟南芥(L.)Heynh植物中遗传构建体P(AHK2)-GUS,P(AHK3)-GUS和P(AHK4)-GUS的表达调控,该植物带有编码β-葡糖醛酸糖苷酶(GUS)的基因。研究了编码组氨酸蛋白激酶的三个基因之一的启动子的控制,所述组氨酸蛋白激酶是细胞分裂素的膜受体。在4-5天大的黄化拟南芥幼苗中,用细胞分裂素处理导致构建体P(AHK2)-GUS和P(AHK3)-GUS最强的表达激活。相同的构建体在幼苗从scoto-向光形态发生转变的过程中也被细胞分裂素激活。在含有细胞分裂素的培养基上在黑暗中长期生长的幼苗导致编码组氨酸激酶AHK2的基因大量启动子激活。在具有活跃叶绿体功能的三周龄植物的叶子中,用细胞分裂素处理主要刺激了构建体P(AHK3)-GUS的表达。在离体的衰老叶片中,在组氨酸激酶基因的启动子的控制下,在任何一个含有GUS基因的受试品系中,细胞分裂素的处理均能抑制叶绿素的损失,但在明暗条件下都不会显着影响GUS活性。同时,细胞分裂素激活了构建体P(ARR5-)-GUS中对细胞分裂素的主要应答基因的启动子。因此,在所研究的测试系统中,在黑暗或光线下生长的拟南芥植物细胞分裂素的处理取决于植物年龄,植物栽培条件和植物生理状态而不同地影响组氨酸激酶基因的表达。

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