A very long chain fatty acid responsive transcription factor, <scp>MYB93</scp> , regulates lateral root development in Arabidopsis
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- Yuta Uemura
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Saori Kimura
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Tomomichi Ohta
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Takamasa Suzuki
- Department of Biological Chemistry College of Bioscience and Biotechnology, Chubu University 1200 Matsumoto‐cho Kasugai Aichi 478‐8501 Japan
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- Kosuke Mase
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Hiroyuki Kato
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Satomi Sakaoka
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Masayoshi Uefune
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Yuki Komine
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Kazuhiro Hotta
- Department of Electrical and Electronic Engineering, Faculty of Science and Technology Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Motoyuki Shimizu
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Atsushi Morikami
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
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- Hironaka Tsukagoshi
- Faculty of Agriculture Meijo University 1‐501 Shiogamaguchi, Tempaku‐ku Nagoya Aichi 468‐8502 Japan
書誌事項
- 公開日
- 2023-06-15
- 資源種別
- journal article
- 権利情報
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- http://onlinelibrary.wiley.com/termsAndConditions#vor
- DOI
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- 10.1111/tpj.16330
- 公開者
- Wiley
この論文をさがす
説明
<jats:title>SUMMARY</jats:title> <jats:p> Lateral roots (LRs) are critical to root system architecture development in plants. Although the molecular mechanisms by which auxin regulates LR development have been extensively studied, several additional regulatory systems are hypothesized to be involved. Recently, the regulatory role of very long chain fatty acids (VLCFAs) has been shown in LR development. Our analysis showed that LTPG1 and LTPG2, transporters of VLCFAs, are specifically expressed in the developing LR primordium (LRP), while the number of LRs is reduced in the <jats:italic>ltpg1</jats:italic> / <jats:italic>ltpg2</jats:italic> double mutant. Moreover, late LRP development was hindered when the VLCFA levels were reduced by the VLCFA synthesis enzyme mutant, <jats:italic>kcs1‐5</jats:italic> . However, the details of the regulatory mechanisms of LR development controlled by VLCFAs remain unknown. In this study, we propose a novel method to analyze the LRP development stages with high temporal resolution using a deep neural network and identify a VLCFA‐responsive transcription factor, MYB93, via transcriptome analysis of <jats:italic>kcs1‐5</jats:italic> . MYB93 showed a carbon chain length‐specific expression response following treatment of VLCFAs. Furthermore, <jats:italic>myb93</jats:italic> transcriptome analysis suggested that <jats:italic>MYB93</jats:italic> regulated the expression of cell wall organization genes. In addition, we also found that LTPG1 and LTPG2 are involved in LR development through the formation of root cap cuticle, which is different from transcriptional regulation by VLCFAs. Our results suggest that VLCFA is a regulator of LRP development through transcription factor‐mediated regulation of gene expression and the transportation of VLCFAs is also involved in LR development through root cap cuticle formation. </jats:p>
収録刊行物
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- The Plant Journal
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The Plant Journal 115 (5), 1408-1427, 2023-06-15
Wiley
