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Mana Kano

Showing results (1-10 of 12) with videos related to

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Plants (Basel, Switzerland)|March 10, 2022
Waterlogged Conditions Influence the Nitrogen, Phosphorus, Potassium, and Sugar Distribution in Sago Palm (<i>Metroxylon sagu</i> Rottb.) at Seedling StagesAidil Azhar, Koki Asano, Daisuke Sugiura, et al.
Journal of Natural Medicines|October 7, 2016
Lignans from guaiac resin decrease nitric oxide production in interleukin 1β-treated hepatocytesYuki Nakano, Masaaki Nasu, Mana Kano, et al.
Scientific Reports|March 14, 2018
Plasticity in nodal root elongation through the hardpan triggered by rewatering during soil moisture fluctuation stress in riceRoel Rodriguez Suralta, Jonathan Manito Niones, Mana Kano-Nakata, et al.
BMC Plant Biology|November 4, 2020
Tissue-specific expression analysis of Na<sup>+</sup> and Cl<sup>-</sup> transporter genes associated with salt removal ability in rice leaf sheathSarin Neang, Itsuki Goto, Nicola Stephanie Skoulding, et al.
Aob PLANTS|October 22, 2019
Evaluation of rice grain yield and yield components of Nona Bokra chromosome segment substitution lines with the genetic background of Koshihikari, in a saline paddy fieldShiro Mitsuya, Norifumi Murakami, Tadashi Sato, et al.
Plant Science : an International Journal of Experimental Plant Biology|November 21, 2020
The promoted lateral root 1 (plr1) mutation is involved in reduced basal shoot starch accumulation and increased root sugars for enhanced lateral root growth in riceNonawin Lucob-Agustin, Daisuke Sugiura, Mana Kano-Nakata, et al.
Breeding Science|March 25, 2021
Morpho-physiological and molecular mechanisms of phenotypic root plasticity for rice adaptation to water stress conditionsNonawin Lucob-Agustin, Tsubasa Kawai, Mana Kano-Nakata, et al.
Functional Plant Biology : FPB|May 4, 2019
Fundamental parenchyma cells are involved in Na<sup>+</sup> and Cl<sup>-</sup> removal ability in rice leaf sheathSarin Neang, Marjorie de Ocampo, James A Egdane, et al.
Physiologia Plantarum|January 12, 2020
WEG1, which encodes a cell wall hydroxyproline-rich glycoprotein, is essential for parental root elongation controlling lateral root formation in riceNonawin Lucob-Agustin, Tsubasa Kawai, Misuzu Takahashi-Nosaka, et al.
Annals of Botany|October 3, 2020
A GWAS approach to find SNPs associated with salt removal in rice leaf sheathSarin Neang, Marjorie de Ocampo, James A Egdane, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Plants (Basel, Switzerland)|March 10, 2022
Waterlogged Conditions Influence the Nitrogen, Phosphorus, Potassium, and Sugar Distribution in Sago Palm (<i>Metroxylon sagu</i> Rottb.) at Seedling StagesAidil Azhar, Koki Asano, Daisuke Sugiura, et al.
Journal of Natural Medicines|October 7, 2016
Lignans from guaiac resin decrease nitric oxide production in interleukin 1β-treated hepatocytesYuki Nakano, Masaaki Nasu, Mana Kano, et al.
Scientific Reports|March 14, 2018
Plasticity in nodal root elongation through the hardpan triggered by rewatering during soil moisture fluctuation stress in riceRoel Rodriguez Suralta, Jonathan Manito Niones, Mana Kano-Nakata, et al.
BMC Plant Biology|November 4, 2020
Tissue-specific expression analysis of Na<sup>+</sup> and Cl<sup>-</sup> transporter genes associated with salt removal ability in rice leaf sheathSarin Neang, Itsuki Goto, Nicola Stephanie Skoulding, et al.
Aob PLANTS|October 22, 2019
Evaluation of rice grain yield and yield components of Nona Bokra chromosome segment substitution lines with the genetic background of Koshihikari, in a saline paddy fieldShiro Mitsuya, Norifumi Murakami, Tadashi Sato, et al.
Plant Science : an International Journal of Experimental Plant Biology|November 21, 2020
The promoted lateral root 1 (plr1) mutation is involved in reduced basal shoot starch accumulation and increased root sugars for enhanced lateral root growth in riceNonawin Lucob-Agustin, Daisuke Sugiura, Mana Kano-Nakata, et al.
Breeding Science|March 25, 2021
Morpho-physiological and molecular mechanisms of phenotypic root plasticity for rice adaptation to water stress conditionsNonawin Lucob-Agustin, Tsubasa Kawai, Mana Kano-Nakata, et al.
Functional Plant Biology : FPB|May 4, 2019
Fundamental parenchyma cells are involved in Na<sup>+</sup> and Cl<sup>-</sup> removal ability in rice leaf sheathSarin Neang, Marjorie de Ocampo, James A Egdane, et al.
Physiologia Plantarum|January 12, 2020
WEG1, which encodes a cell wall hydroxyproline-rich glycoprotein, is essential for parental root elongation controlling lateral root formation in riceNonawin Lucob-Agustin, Tsubasa Kawai, Misuzu Takahashi-Nosaka, et al.
Annals of Botany|October 3, 2020
A GWAS approach to find SNPs associated with salt removal in rice leaf sheathSarin Neang, Marjorie de Ocampo, James A Egdane, et al.
Pageof 2