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Dive into the research topics where Ken Takahata is active.

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Featured researches published by Ken Takahata.


Euphytica | 2016

Quantitative trait loci (QTL) controlling plant architecture traits in a Solanum lycopersicum × S. pimpinellifolium cross

Hajime Nakano; K. Sasaki; Yoko Mine; Ken Takahata; O. Lee; Nobuo Sugiyama

Plant architecture is an important determinant of tomato yield because it affects light distribution within a crop canopy. One hundred and eleven lines of a BC1F8 population developed from Solanum lycopersicum ‘M570018’ and its wild relative Solanum pimpinellifolium (PI124039) were grown in a glasshouse in spring and autumn, and plant architecture traits evaluated at two leaf positions: the last leaf before floral initiation (F leaf) and the largest leaf (L leaf). QTL analysis was performed using QTLNetwork 2.1; 23 additive QTLs and seven epistatic QTLs were detected for 13 of 16 traits measured in this study. On chromosomes 2 and 12, QTLs for the leaf drooping angle (DRAN) of the F leaf (fdran2 and fdran12) co-located with QTLs for canopy size (CAN) at each leaf position of the F and L leaves (fcan2 and lcan2, fcan12 and lcan12). On chromosome 3, QTLs for leaf length (LL) of the F and L leaves (fll3 and lll3) co-located with the epistatic QTL for CAN at the L leaf (lcan3). QTLs for plant height (PH) were detected on chromosome 2, 3, 4, and 6; all of these QTLs (ph2, ph3, ph4, and ph6) decreased PH in the presence of Solanum lycopersicum (SL) alleles. QTLs for total leaf number and internode length were detected on chromosomes 3 and 4; tln3 and int4 mapped in the vicinity of ph3 and ph4, respectively. The co-localization of QTLs associated with CAN, DRAN, and LL suggests canopy size is determined by both leaf length and leaf drooping angle in tomato.


Indonesian Journal of Agronomy | 2016

NPK Fertilizers for Elephant Foot Yam (Amorphophallus paeoniifolius (Dennst.) Nicolson) Intercropped with Coffee Trees

Edi Santosa; Anas D. Susila; Adolf Pieter Lontoh; Arisa Noguchi; Ken Takahata; Nobuo Sugiyama


Horttechnology | 2014

Increasing the Sugar Concentration in Tomato Fruit Juice by Coiling Wire Around Plant Stems

Ken Takahata; Hiroyuki Miura


The Horticulture Journal | 2017

Effects of Stem Constriction Using Steel Washer Rings on the Soluble Solids Content of Pepino (Solanum muricatum Ait.) Fruit

Ken Takahata


Scientia Horticulturae | 2016

Quantitative trait loci analysis of the time of floral initiation in tomato

Hajime Nakano; Nobuhiro Kobayashi; Ken Takahata; Yoko Mine; Nobuo Sugiyama


Buletin Kebun Raya | 2014

INVASIVE WEEDS IN BOGOR BOTANIC GARDENS, INDONESIA AND ITS IMPLICATION ON SURROUNDING LANDSCAPES

Edi Santosa; Gunar Widiyanto; Adolf Pieter Lontoh; Elly Kristiati Agustin; Ken Takahata; Yoko Mine; Nobuo Sugiyama


Tropical agriculture and development | 2011

Optimum Emergence Temperature for Okra Seeds

Ken Takahata; Yoko Mine; Hiroyuki Miura


Journal of The Japanese Society for Horticultural Science | 2008

Differences in Inhibition of Emergence by High Temperature between Lettuce Cultivars

Ken Takahata; Yoko Mine; Atsukiyo Karimata; Hiroyuki Miura


Horttechnology | 2008

An Effective Post-sown Priming Method to Improve Emergence from Lettuce Seeds at High Temperature

Ken Takahata; Yoko Mine; Atsukiyo Karimata; Hiroyuki Miura


Biotropia: The Southeast Asian Journal of Tropical Biology | 2018

ISOLATING MICROSATELLITE FROM Amorphophallus variabilis AND ITS APPLICATION FOR POPULATION STUDY IN DRAMAGA CONSERVATION FOREST, INDONESIA

Edi Santosa; Chun Lan Lian; Yoko Mine; Ken Takahata; Nobuo Sugiyama

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Yoko Mine

Tokyo University of Agriculture

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Hiroyuki Miura

Tokyo University of Agriculture

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Nobuo Sugiyama

Tokyo University of Agriculture

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Edi Santosa

Bogor Agricultural University

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Atsukiyo Karimata

Tokyo University of Agriculture

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Hajime Nakano

Tokyo University of Agriculture

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Adolf Pieter Lontoh

Bogor Agricultural University

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Arisa Noguchi

Tokyo University of Agriculture

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K. Sasaki

Tokyo University of Agriculture

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