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Featured researches published by Kazuhide Rikiishi.


PLOS ONE | 2014

Seed maturation regulators are related to the control of seed dormancy in wheat (Triticum aestivum L.).

Kazuhide Rikiishi; Masahiko Maekawa

In Arabidopsis, the regulation network of the seed maturation program controls the induction of seed dormancy. Wheat EST sequences showing homology with the master regulators of seed maturation, LEAFY COTYLEDON1 (LEC1), LEC2 and FUSCA3 (FUS3), were searched from databases and designated respectively as TaL1L (LEC1-LIKE), TaL2L (LEC2-LIKE), and TaFUS3. TaL1LA, TaL2LA and TaFUS3 mainly expressed in seeds or embryos, with the expression limited to the early stages of seed development. Results show that tissue-specific and developmental-stage-dependent expressions are similar to those of seed maturation regulators in Arabidopsis. In wheat cultivars, the expression level of TaL1LA is correlated significantly with the germination index (GI) of whole seeds at 40 days after pollination (DAP) (r = –0.83**). Expression levels of TaFUS3 and TaL2LA are significantly correlated respectively with GIs at 40 DAP and 50 DAP, except for dormant cultivars. No correlation was found between the expression level of TaVP1, orthologue of ABA INSENSITIVE3 (ABI3), and seed dormancy. DELAY OF GERMINATION1 (DOG1) was identified as a quantitative trait locus (QTL) for the regulation of seed dormancy in Arabidopsis. Its promoter has RY motif, which is a target sequence of LEC2. Significant correlation was found between the expression of TaDOG1 and seed dormancy except for dormant cultivars. These results indicate that TaL1LA, TaL2LA, and TaFUS3 are wheat orthologues of seed maturation regulators. The expressions of these genes affect the level of seed dormancy. Furthermore, the pathways, which involve seed maturation regulators and TaDOG1, are important for regulating seed dormancy in wheat.


PLOS ONE | 2015

Light Inhibition of Shoot Regeneration Is Regulated by Endogenous Abscisic Acid Level in Calli Derived from Immature Barley Embryos

Kazuhide Rikiishi; Takakazu Matsuura; Yoko Ikeda; Masahiko Maekawa

Shoot regeneration in calli derived from immature barley embryos is regulated by light conditions during the callus-induction period. Barley cultivars Kanto Nijo-5 (KN5) and K-3 (K3) showed lower efficiency of shoot regeneration in a 16-h photoperiod during callus-induction than those in continuous darkness, whereas shoot regeneration was enhanced in cultures under a 16-h photoperiod in Golden Promise (GP) and Lenins (LN). These cultivars were classified as photo-inhibition type (KN5 and K3) or photo-induction type (GP and LN) according to their response to light. Contents of endogenous plant hormones were determined in calli cultured under a 16-h photoperiod and continuous darkness. In photo-inhibition type, higher accumulation of abscisic acid (ABA) was detected in calli cultured under a 16-h photoperiod, whereas calli showed lower levels of endogenous ABA in continuous darkness. However, cultivars of photo-induction type showed lower levels of ABA in calli cultured under both light conditions, similarly to photo-inhibition type in continuous darkness. Exogenous ABA inhibited the callus growth and shoot regeneration independent of light conditions in all cultivars. In photo-inhibition type, lower levels of endogenous ABA induced by ABA biosynthesis inhibitor, fluridone, reduced the photo-inhibition of shoot regeneration. Expression of ABA biosynthesis gene, HvNCED1, in calli was regulated by the light conditions. Higher expression was observed in calli cultured under a 16-h photoperiod. These results indicate that ABA biosynthesis could be activated through the higher expression of HvNCED1 in a 16-h photoperiod and that the higher accumulations of ABA inhibit shoot regeneration in the photo-inhibition type cultivars.


Journal of Cereal Science | 2010

Characterization of a novel wheat (Triticum aestivum L.) mutant with reduced seed dormancy

Kazuhide Rikiishi; Masahiko Maekawa


Breeding Science | 2003

Transient Expression of Anthocyanin in Developing Wheat Coleoptile by Maize C1 and B-peru Regulatory Genes for Anthocyanin Synthesis

Nisar Ahmed; Masahiko Maekawa; Shigeko Utsugi; Eiko Himi; Hador Ablet; Kazuhide Rikiishi; Kazuhiko Noda


Archive | 1998

A method of producing transformed cells of barley

Kazuhide Rikiishi; Kazuhiko Noda; Makoto Kihara


Plant Breeding | 2003

Barley lines showing prominent high green shoot regeneration in cultures derived from immature embryos

Kazuhide Rikiishi; Takakazu Matsuura; Masahiko Maekawa; Kazuhiko Noda; Kazuyoshi Takeda


Breeding Science | 2003

Characteristics of α-Amylase Induced in Distal Half-grains of Wheat

Ablet Hader; Kazuhide Rikiishi; Ahmed Nisar; Kazuhiko Noda


Breeding Science | 2008

Light control of shoot regeneration in callus cultures derived from barley (Hordeum vulgare L.) immature embryos

Kazuhide Rikiishi; Takakazu Matsuura; Masahiko Maekawa; Kazuyoshi Takeda


Breeding Science | 2008

Uzu, a barley semi-dwarf gene, suppresses plant regeneration in calli derived from immature embryos

Kazuhide Rikiishi; Daisuke Saisho; Kazuyoshi Takeda


Plant Breeding | 2003

Genetic analysis of tissue culture traits in barley cv. 'Lenins'

Kazuhide Rikiishi; Takakazu Matsuura; Masahiko Maekawa; Kazuhiko Noda; Kazuyoshi Takeda

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