Transcriptome analysis of soybean (Glycine max) root genes differentially expressed in rhizobial, arbuscular mycorrhizal, and dual symbiosis

被引:0
|
作者
Kazunori Sakamoto
Natsuko Ogiwara
Tomomitsu Kaji
Yurie Sugimoto
Mitsuru Ueno
Masatoshi Sonoda
Akihiro Matsui
Junko Ishida
Maho Tanaka
Yasushi Totoki
Kazuo Shinozaki
Motoaki Seki
机构
[1] Chiba University,Graduate School of Horticulture
[2] JA ZEN-NOH Research and Development Center,Division of Cancer Genomics
[3] RIKEN Center for Sustainable Resource Science,Kihara Institute for Biological Research
[4] RIKEN Cluster for Pioneering Research,undefined
[5] National Cancer Center Research Institute,undefined
[6] Yokohama City University,undefined
来源
Journal of Plant Research | 2019年 / 132卷
关键词
Arbuscular mycorrhizal fungi; Dual symbiosis; Rhizobia; Soybean; Transcriptome;
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摘要
Soybean (Glycine max) roots establish associations with nodule-inducing rhizobia and arbuscular mycorrhizal (AM) fungi. Both rhizobia and AM fungi have been shown to affect the activity of and colonization by the other, and their interactions can be detected within host plants. Here, we report the transcription profiles of genes differentially expressed in soybean roots in the presence of rhizobial, AM, or rhizobial–AM dual symbiosis, compared with those in control (uninoculated) roots. Following inoculation, soybean plants were grown in a glasshouse for 6 weeks; thereafter their root transcriptomes were analyzed using an oligo DNA microarray. Among the four treatments, the root nodule number and host plant growth were highest in plants with dual symbiosis. We observed that the expression of 187, 441, and 548 host genes was up-regulated and 119, 1,439, and 1,298 host genes were down-regulated during rhizobial, AM, and dual symbiosis, respectively. The expression of 34 host genes was up-regulated in each of the three symbioses. These 34 genes encoded several membrane transporters, type 1 metallothionein, and transcription factors in the MYB and bHLH families. We identified 56 host genes that were specifically up-regulated during dual symbiosis. These genes encoded several nodulin proteins, phenylpropanoid metabolism-related proteins, and carbonic anhydrase. The nodulin genes up-regulated by the AM fungal colonization probably led to the observed increases in root nodule number and host plant growth. Some other nodulin genes were down-regulated specifically during AM symbiosis. Based on the results above, we suggest that the contribution of AM fungal colonization is crucial to biological N2-fixation and host growth in soybean with rhizobial-AM dual symbiosis.
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页码:541 / 568
页数:27
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