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菜豆ENOD40参与共生和非共生器官发生过程:在根瘤和侧根发育过程中的表达

Phaseolus ENOD40 is involved in symbiotic and non-symbiotic organogenetic processes: expression during nodule and lateral root development.

作者信息

Papadopoulou K, Roussis A, Katinakis P

机构信息

Agricultural University of Athens, Department of Agricultural Biology and Biotechnology, Greece.

出版信息

Plant Mol Biol. 1996 Feb;30(3):403-17. doi: 10.1007/BF00049320.

DOI:10.1007/BF00049320
PMID:8605294
Abstract

ENOD40 is an early nodulin gene, recently isolated from legume species forming nodules either after Rhizobium infection or spontaneously. ENOD40 cDNAs from Phaseolus plants were isolated and nucleotide sequence determination revealed 85% and 88.5% homology with the reported soybean cDNA clones. The putative polypeptide deduced coincides with the soybean one but a stop codon, almost in the middle of the respective ORF, renders it much shorter. This polypeptide was overexpressed as a fusion protein in Escherichia coli. Although the spatial expression pattern of the gene in the root pericycle and nodule primordium at early stages of development as well as in the pericycle of the vascular bundles and uninfected cells in mature nodules is comparable to the gene's expression pattern in soybean, differences in developmental regulation are evident. We have shown that ENOD40 transcripts are also detected at very early stages of lateral root development, in the dividing pericycle cells of the root stele that give rise to the lateral root primordia. The presence of Rhizobium causes an enhancement of the gene's expression and also induction of the gene in the vascular tissues of developed lateral roots. Interestingly, a discrimination on the gene's expression level in adventious and acropetal incipient lateral root primordia, emerging in infected and uninfected roots, is observed. This indicates that the gene's product may be involved in the hormonal status of the plant and that ENOD40 may be used as a molecular marker in lateral root initiation.

摘要

ENOD40是一种早期结瘤素基因,最近从豆科植物中分离得到,这些豆科植物在根瘤菌感染后或自发形成根瘤。从菜豆植物中分离出ENOD40 cDNA,核苷酸序列测定显示与已报道的大豆cDNA克隆具有85%和88.5%的同源性。推导的假定多肽与大豆的一致,但一个几乎位于各自开放阅读框中间的终止密码子使其短得多。该多肽在大肠杆菌中作为融合蛋白过表达。尽管该基因在发育早期根中柱鞘和根瘤原基以及成熟根瘤维管束中柱鞘和未感染细胞中的空间表达模式与大豆中该基因的表达模式相当,但发育调控上的差异很明显。我们已经表明,在侧根发育的非常早期阶段,在产生侧根原基的根中柱鞘分裂细胞中也能检测到ENOD40转录本。根瘤菌的存在导致该基因表达增强,并且在发育的侧根维管组织中也诱导该基因表达。有趣的是,观察到在感染和未感染根中出现的不定根和向顶初生侧根原基中该基因表达水平存在差异。这表明该基因的产物可能参与植物的激素状态,并且ENOD40可作为侧根起始的分子标记。

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Plant Mol Biol. 1996 Feb;30(3):403-17. doi: 10.1007/BF00049320.
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Science. 1996 Jul 19;273(5273):370-3. doi: 10.1126/science.273.5273.370.

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The white clover enod40 gene family. Expression patterns of two types of genes indicate a role in vascular function.白三叶草enod40基因家族。两种类型基因的表达模式表明其在维管功能中发挥作用。
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Alteration of enod40 expression modifies medicago truncatula root nodule development induced by sinorhizobium meliloti.结瘤素40(ENOD40)表达的改变会影响由苜蓿中华根瘤菌诱导的蒺藜苜蓿根瘤的发育。
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Characterization of GmENOD40, a gene showing novel patterns of cell-specific expression during soybean nodule development.GmENOD40基因的特征分析,该基因在大豆根瘤发育过程中呈现出细胞特异性表达的新模式。
Plant J. 1993 Apr;3(4):573-85. doi: 10.1046/j.1365-313x.1993.03040573.x.
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A molecular marker for lateral root initiation: the RSI-1 gene of tomato (Lycopersicon esculentum Mill) is activated in early lateral root primordia.一种侧根起始的分子标记:番茄(Lycopersicon esculentum Mill)的RSI-1基因在早期侧根原基中被激活。
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enod40, a gene expressed during nodule organogenesis, codes for a non-translatable RNA involved in plant growth.Enod40是一种在根瘤器官发生过程中表达的基因,编码一种参与植物生长的不可翻译RNA。
EMBO J. 1994 Nov 1;13(21):5099-112. doi: 10.1002/j.1460-2075.1994.tb06839.x.
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Plant hormones and nodulation: what's the connection?
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Comparison of soybean and pea ENOD40 cDNA clones representing genes expressed during both early and late stages of nodule development.大豆和豌豆ENOD40 cDNA克隆的比较,这些克隆代表了在根瘤发育早期和晚期均表达的基因。
Plant Mol Biol. 1994 Oct;26(1):487-93. doi: 10.1007/BF00039559.
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Soybean nodulin-26 gene encoding a channel protein is expressed only in the infected cells of nodules and is regulated differently in roots of homologous and heterologous plants.编码一种通道蛋白的大豆根瘤球蛋白-26基因仅在根瘤的受感染细胞中表达,且在同源和异源植物的根中受到不同的调控。
Plant Cell. 1993 Jul;5(7):781-94. doi: 10.1105/tpc.5.7.781.