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中生根瘤菌-百脉根共生中根毛感染丝起始和伸长过程中的微管阵列形成

Microtubule array formation during root hair infection thread initiation and elongation in the Mesorhizobium-Lotus symbiosis.

作者信息

Perrine-Walker F M, Lartaud M, Kouchi H, Ridge R W

机构信息

Department of Life Science, International Christian University, 3-10-2 Osawa, Mitaka-shi, Tokyo, 181-8585, Japan,

出版信息

Protoplasma. 2014 Sep;251(5):1099-111. doi: 10.1007/s00709-014-0618-z. Epub 2014 Feb 2.

Abstract

Nuclear migration during infection thread (IT) development in root hairs is essential for legume-Rhizobium symbiosis. However, little is known about the relationships between IT formation, nuclear migration, and microtubule dynamics. To this aim, we used transgenic Lotus japonicus expressing a fusion of the green fluorescent protein and tubulin-α6 from Arabidopsis thaliana to visualize in vivo dynamics of cortical microtubules (CMT) and endoplasmic microtubules (EMTs) in root hairs in the presence or absence of Mesorhizobium loti inoculation. We also examined the effect of microtubule-depolymerizing herbicide, cremart, on IT initiation and growth, since cremart is known to inhibit nuclear migration. In live imaging studies of M. loti-treated L. japonicus root hairs, EMTs were found in deformed, curled, and infected root hairs. The continuous reorganization of the EMT array linked to the nucleus appeared to be essential for the reorientation, curling, and IT initiation and the growth of zone II root hairs which are susceptible to rhizobial infection. During IT initiation, the EMTs appeared to be linked to the root hair surface surrounding the M. loti microcolonies. During IT growth, EMTs dissociated from the curled root hair tip, remained linked to the nucleus, and appeared to surround the IT tip. Lack or disorganized EMT arrays that were no longer linked to the nucleus were observed only in infection-aborted root hairs. Cremart affected IT formation and nodulation in a concentration-dependent manner, suggesting that the microtubule (MT) organization and successive nuclear migration are essential for successful nodulation in L. japonicus by M. loti.

摘要

根毛中感染丝(IT)发育过程中的核迁移对于豆科植物与根瘤菌的共生至关重要。然而,关于IT形成、核迁移和微管动力学之间的关系,我们知之甚少。为了实现这一目标,我们使用了表达来自拟南芥的绿色荧光蛋白与微管蛋白-α6融合蛋白的转基因日本百脉根,以可视化在接种或未接种中慢生根瘤菌的情况下根毛中皮层微管(CMT)和内质微管(EMT)的体内动力学。我们还研究了微管解聚除草剂克菌壮对IT起始和生长的影响,因为已知克菌壮会抑制核迁移。在对经中慢生根瘤菌处理的日本百脉根根毛的实时成像研究中,在内质网变形、卷曲和被感染的根毛中发现了内质微管。与细胞核相连的内质微管阵列的持续重组似乎对于易受根瘤菌感染的II区根毛的重新定向、卷曲、IT起始和生长至关重要。在IT起始过程中,内质微管似乎与围绕中慢生根瘤菌微菌落的根毛表面相连。在IT生长过程中,内质微管从卷曲的根毛尖端解离,仍然与细胞核相连,并似乎围绕着IT尖端。仅在感染失败的根毛中观察到缺乏或无序的不再与细胞核相连的内质微管阵列。克菌壮以浓度依赖的方式影响IT形成和结瘤,这表明微管(MT)组织和连续的核迁移对于中慢生根瘤菌在日本百脉根中成功结瘤至关重要。

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