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The elicitor-inducible alfalfa isoflavone reductase promoter confers different patterns of developmental expression in homologous and heterologous transgenic plants.

机译:激发子诱导的苜蓿异黄酮还原酶启动子赋予同源和异源转基因植物不同的发育表达模式。

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摘要

In legumes, the synthesis of infection- and elicitor-inducible antimicrobial phytoalexins occurs via the isoflavonoid branch of the phenylpropanoid pathway. To study transcriptional regulation of isoflavonoid pathway-specific genes, we have isolated the gene encoding isoflavone reductase (IFR), which is the enzyme that catalyzes the penultimate step in the synthesis of the phytoalexin medicarpin in alfalfa. Chimeric gene fusions were constructed between 765- and 436-bp promoter fragments of the IFR gene and the beta-glucuronidase reporter gene and transferred to alfalfa and tobacco by Agrobacterium-mediated transformation. Both promoter fragments conferred elicitor-mediated expression in cell suspension cultures derived from transgenic plants of both species and fungal infection-mediated expression in leaves of transgenic alfalfa. Developmental expression directed by both promoter fragments in transgenic alfalfa was observed only in the root meristem, cortex, and nodules, which is consistent with the accumulation of endogenous IFR transcripts. However, in transgenic tobacco, expression from the 765-bp promoter was observed in vegetative tissues (root meristem and cortex, inner vascular tissue of stems and petioles, leaf tips, and stem peripheries adjacent to petioles) and in reproductive tissues (stigma, placenta, base of the ovary, receptacle, seed, tapetal layer, and pollen grains), whereas the 436-bp promoter was expressed only in fruits, seed, and pollen. These data indicate that infection/elicitor inducibility of the IFR promoter in both species and developmental expression in alfalfa are determined by sequences downstream of position -436, whereas sequences between -436 and -765 confer a complex pattern of strong ectopic developmental expression in the heterologous species that lacks the isoflavonoid pathway.
机译:在豆科植物中,感染和诱发剂诱导的抗细菌植物抗毒素的合成是通过苯丙烷途径的异黄酮分支发生的。为了研究异黄酮途径特异性基因的转录调控,我们分离了编码异黄酮还原酶(IFR)的基因,该酶催化紫花苜蓿中植物抗老肽麦地卡宾的合成中的倒数第二步。在IFR基因的765和436 bp启动子片段与β-葡糖醛酸糖苷酶报道基因之间构建嵌合基因融合体,并通过农杆菌介导的转化转移到苜蓿和烟草中。这两个启动子片段均赋予了在源自该物种的转基因植物的细胞悬浮培养物中诱导物介导的表达以及在转基因苜蓿的叶子中由真菌感染介导的表达。仅在根分生组织,皮层和结节中观察到了两个启动子片段在转基因苜蓿中指导的发育表达,这与内源IFR转录本的积累是一致的。但是,在转基因烟草中,在营养组织(根分生组织和皮层,茎和叶柄的内部血管组织,叶尖和叶柄附近的茎周围)和生殖组织(柱头,胎盘)中观察到765 bp启动子的表达。 (子房,子房,种子,绒毛层和花粉粒的基部),而436-bp启动子仅在水果,种子和花粉中表达。这些数据表明,IFR启动子在苜蓿种中的感染/诱导子诱导性以及在苜蓿中的发育表达是由-436位下游的序列决定的,而-436至-765位之间的序列在异源中赋予了强烈的异位发育表达的复杂模式缺乏异黄酮途径的物种。

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