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Hiromu Kameoka

Showing results (1-10 of 22) with videos related to

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Journal of Experimental Botany|January 5, 2018
Spatial regulation of strigolactone functionHiromu Kameoka, Junko Kyozuka
The New Phytologist|March 23, 2026
Status of mycorrhiza research in 2026Alexandra Dallaire, Hiromu Kameoka
Plant & Cell Physiology|July 27, 2022
Functions of Lipids in Development and Reproduction of Arbuscular Mycorrhizal FungiHiromu Kameoka, Caroline Gutjahr
Journal of Genetics and Genomics = Yi Chuan Xue Bao|March 31, 2015
Downregulation of rice DWARF 14 LIKE suppress mesocotyl elongation via a strigolactone independent pathway in the darkHiromu Kameoka, Junko Kyozuka
Plant & Cell Physiology|June 27, 2019
Structure-Specific Regulation of Nutrient Transport and Metabolism in Arbuscular Mycorrhizal FungiHiromu Kameoka, Taro Maeda, Nao Okuma, et al.
Plant & Cell Physiology|October 12, 2012
Recent advances in strigolactone research: chemical and biological aspectsYoshiya Seto, Hiromu Kameoka, Shinjiro Yamaguchi, et al.
Plant & Cell Physiology|January 12, 2018
Strigolactone Biosynthesis Genes of Rice are Required for the Punctual Entry of Arbuscular Mycorrhizal Fungi into the RootsYoshihiro Kobae, Hiromu Kameoka, Yusaku Sugimura, et al.
Frontiers in Plant Science|February 3, 2023
The effects of ERN1 on gene expression during early rhizobial infection in <i>Lotus japonicus</i>Meng Liu, Hiromu Kameoka, Akiko Oda, et al.
BMC Genomics|June 20, 2018
The genome of Rhizophagus clarus HR1 reveals a common genetic basis for auxotrophy among arbuscular mycorrhizal fungiYuuki Kobayashi, Taro Maeda, Katsushi Yamaguchi, et al.
Plant & Cell Physiology|July 26, 2023
Activation of Strigolactone Biosynthesis by the DWARF14-LIKE/KARRIKIN-INSENSITIVE2 Pathway in Mycorrhizal Angiosperms, but Not in Arabidopsis, a Non-mycorrhizal PlantKiyoshi Mashiguchi, Ryo Morita, Kai Tanaka, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Journal of Experimental Botany|January 5, 2018
Spatial regulation of strigolactone functionHiromu Kameoka, Junko Kyozuka
The New Phytologist|March 23, 2026
Status of mycorrhiza research in 2026Alexandra Dallaire, Hiromu Kameoka
Plant & Cell Physiology|July 27, 2022
Functions of Lipids in Development and Reproduction of Arbuscular Mycorrhizal FungiHiromu Kameoka, Caroline Gutjahr
Journal of Genetics and Genomics = Yi Chuan Xue Bao|March 31, 2015
Downregulation of rice DWARF 14 LIKE suppress mesocotyl elongation via a strigolactone independent pathway in the darkHiromu Kameoka, Junko Kyozuka
Plant & Cell Physiology|June 27, 2019
Structure-Specific Regulation of Nutrient Transport and Metabolism in Arbuscular Mycorrhizal FungiHiromu Kameoka, Taro Maeda, Nao Okuma, et al.
Plant & Cell Physiology|October 12, 2012
Recent advances in strigolactone research: chemical and biological aspectsYoshiya Seto, Hiromu Kameoka, Shinjiro Yamaguchi, et al.
Plant & Cell Physiology|January 12, 2018
Strigolactone Biosynthesis Genes of Rice are Required for the Punctual Entry of Arbuscular Mycorrhizal Fungi into the RootsYoshihiro Kobae, Hiromu Kameoka, Yusaku Sugimura, et al.
Frontiers in Plant Science|February 3, 2023
The effects of ERN1 on gene expression during early rhizobial infection in <i>Lotus japonicus</i>Meng Liu, Hiromu Kameoka, Akiko Oda, et al.
BMC Genomics|June 20, 2018
The genome of Rhizophagus clarus HR1 reveals a common genetic basis for auxotrophy among arbuscular mycorrhizal fungiYuuki Kobayashi, Taro Maeda, Katsushi Yamaguchi, et al.
Plant & Cell Physiology|July 26, 2023
Activation of Strigolactone Biosynthesis by the DWARF14-LIKE/KARRIKIN-INSENSITIVE2 Pathway in Mycorrhizal Angiosperms, but Not in Arabidopsis, a Non-mycorrhizal PlantKiyoshi Mashiguchi, Ryo Morita, Kai Tanaka, et al.
Pageof 3