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早期结瘤素基因MtN6是苜蓿中华根瘤菌感染蒺藜苜蓿根之前发生的事件的一个新标记。

The early nodulin gene MtN6 is a novel marker for events preceding infection of Medicago truncatula roots by Sinorhizobium meliloti.

作者信息

Mathis R, Grosjean C, de Billy F, Huguet T, Gamas P

机构信息

Laboratoire de Biologie Moléculaire des Relations Plantes-Microorganismes, CNRS-INRA, Castanet-Tolosan, France.

出版信息

Mol Plant Microbe Interact. 1999 Jun;12(6):544-55. doi: 10.1094/MPMI.1999.12.6.544.

Abstract

MtN6 belongs to a series of cDNA clones representing Medicago truncatula genes transcriptionally activated during nodulation by Sinorhizobium meliloti (P. Gamas, F. de Carvalho Niebel, N. Lescure, and J. V. Cullimore, Mol. Plant-Microbe Interact. 9:233-242, 1996). We show here by in situ hybridization that MtN6 transcripts specifically accumulate first at very localized regions in the outer root cell layers, corresponding to outer cortical cells containing preinfection threads. At later stages, MtN6 expression is observed ahead of growing infection threads, including in the infection zone of mature root nodules. Interestingly, regulation of MtN6 is clearly distinct from that of other early nodulins expressed in the same region of the nodule, in terms of response to bacterial symbiotic mutants and to purified Nod factors. We thus suggest that MtN6 represents the first specific marker of a pathway involved in preparation to infection, which is at least partly controlled by Nod factors. Finally, we discuss the intriguing sequence homology shown by MtN6 to a protein from Emericella (Aspergillus) nidulans, FluG, that plays a key role in controlling the organogenesis of conidiophores (B. N. Lee and T. H. Adams, Genes Dev. 8:641-651, 1994).

摘要

MtN6属于一系列cDNA克隆,这些克隆代表了在苜蓿中华根瘤菌结瘤过程中转录激活的蒺藜苜蓿基因(P. 加马斯、F. 德卡瓦略·尼贝尔、N. 勒叙尔和J. V. 卡利莫尔,《分子植物 - 微生物相互作用》9:233 - 242,1996年)。我们在此通过原位杂交表明,MtN6转录本首先在根外细胞层的非常局部化的区域特异性积累,对应于含有感染前菌丝的外皮层细胞。在后期阶段,在生长的感染菌丝前方观察到MtN6表达,包括在成熟根瘤的感染区。有趣的是,就对细菌共生突变体和纯化的结瘤因子的反应而言,MtN6的调控与在根瘤同一区域表达的其他早期结瘤素明显不同。因此,我们认为MtN6代表了参与感染准备途径的第一个特异性标记,该途径至少部分受结瘤因子控制。最后,我们讨论了MtN6与构巢曲霉(烟曲霉)的一种蛋白质FluG显示出的有趣序列同源性,FluG在控制分生孢子梗的器官发生中起关键作用(B. N. 李和T. H. 亚当斯,《基因与发育》8:641 - 651,1994年)。

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