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Dive into the research topics where Shinjiro Yamaguchi is active.

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Featured researches published by Shinjiro Yamaguchi.


The Plant Cell | 1998

Phytochrome regulation and differential expression of gibberellin 3beta-hydroxylase genes in germinating Arabidopsis seeds.

Shinjiro Yamaguchi; Maria W. Smith; Robert G. S. Brown; Yuji Kamiya; Tai-ping Sun

Despite extensive studies on the roles of phytochrome in photostimulated seed germination, the mechanisms downstream of the photoreceptor that promote germination are largely unknown. Previous studies have indicated that light-induced germination of Arabidopsis seeds is mediated by the hormone gibberellin (GA). Using RNA gel blot analyses, we studied the regulation of two Arabidopsis genes, GA4 and GA4H (for GA4 homolog), both of which encode GA 3β-hydroxylases that catalyze the final biosynthetic step to produce bioactive GAs. The newly isolated GA4H gene was expressed predominantly during seed germination. We show that expression of both GA4 and GA4H genes in imbibed seeds was induced within 1 hr after a brief red (R) light treatment. In the phytochrome B–deficient phyB-1 mutant, GA4H expression was not induced by R light, but GA4 expression still was, indicating that R light–induced GA4 and GA4H expression is mediated by different phytochromes. In contrast to the GA4 gene, the GA4H gene was not regulated by the feedback inhibition mechanism in germinating seeds. Our data demonstrate that expression of GA 3β-hydroxylase genes is elevated by R light, which may result in an increase in biosynthesis of active GAs to promote seed germination. Furthermore, our results suggest that each GA 3β-hydroxylase gene plays a unique physiological role during light-induced seed germination.


Plant and Cell Physiology | 2000

Gibberellin biosynthesis: its regulation by endogenous and environmental signals.

Shinjiro Yamaguchi; Yuji Kamiya


Plant Journal | 2002

Distinct cell-specific expression patterns of early and late gibberellin biosynthetic genes during Arabidopsis seed germination.

Shinjiro Yamaguchi; Yuji Kamiya; Tai-ping Sun


Plant Physiology | 1998

The First Step of Gibberellin Biosynthesis in Pumpkin Is Catalyzed by at Least Two Copalyl Diphosphate Synthases Encoded by Differentially Regulated Genes

Maria W. Smith; Shinjiro Yamaguchi; Tahar Ait-Ali; Yuji Kamiya


Archive | 2008

Method for producing steviol synthetase gene and steviol

Shinjiro Yamaguchi; Takahito Nomura; Hiroshi Magome; Yuji Kamiya


Archive | 2010

Plant branching inhibitor, method for producing same, and plant branching inhibitory composition

Shinjiro Yamaguchi; 山口信次郎; Mikihisa Umehara; 梅原三貴久; Kohki Akiyama; 秋山康紀


植物化学調節学会研究発表記録集 | 2015

P040 Identification of carlactonoic acid methyltransferase in Arabidopsis

Yuta Onozuka; Naoki Kitaoka; Takaya Kisugi; Kohki Akiyama; Yoshiya Seto; Shinjiro Yamaguchi


Archive | 2013

Lifting DELLA Repression of Arabidopsis Seed Germination by Nonproteolytic Gibberellin Signaling 1(C)(W)(OPEN)

Tohru Ariizumi; Amber L. Hauvermale; Sven K. Nelson; Atsushi Hanada; Shinjiro Yamaguchi; Camille M. Steber


植物化学調節学会研究発表記録集 | 2011

39. Analysis of the interaction mechanism of the GAF1 complex

Jutarou Fukazawa; Satoru Murakoshi; Hiroshi Teramura; Kei Nasuno; Naotaka Nishida; Michiteru Yoshida; Yuji Kamiya; Yohsuke Takahashi; Shinjiro Yamaguchi


植物化学調節学会研究発表記録集 | 2011

62. Functional analysis of D14 protein in the strigolactone pathway

Yoshiya Seto; Atsushi Hanada; Mikihisa Umehara; Noriko Takeda-Kamiya; Kohki Akiyama; Shinjiro Yamaguchi

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Yuji Kamiya

Chinese Academy of Sciences

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Kohki Akiyama

Osaka Prefecture University

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