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Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line

A new super-hard rice cultivar, ‘Chikushi-kona 85’, which was derived from a cross between ‘Fukei 2032’ and ‘EM129’, was developed via bulk method breeding. ‘Chikushi-kona 85’ showed a higher content of resistant starch than the normal non-glutinous rice cultivar, ‘Nishihomare’, and a higher grain y...

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Autores principales: Wada, Takuya, Yamaguchi, Osamu, Miyazaki, Masayuki, Miyahara, Katsunori, Ishibashi, Masafumi, Aihara, Takeshi, Shibuta, Takanobu, Inoue, Takashi, Tsubone, Masao, Toyosawa, Yoshiko, Satoh, Hikaru, Akaishi, Ryuuichirou, Yoshii, Youichi, Ohtsubo, Ken’ichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society of Breeding 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5982178/
https://www.ncbi.nlm.nih.gov/pubmed/29875612
http://dx.doi.org/10.1270/jsbbs.17069
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author Wada, Takuya
Yamaguchi, Osamu
Miyazaki, Masayuki
Miyahara, Katsunori
Ishibashi, Masafumi
Aihara, Takeshi
Shibuta, Takanobu
Inoue, Takashi
Tsubone, Masao
Toyosawa, Yoshiko
Satoh, Hikaru
Akaishi, Ryuuichirou
Yoshii, Youichi
Ohtsubo, Ken’ichi
author_facet Wada, Takuya
Yamaguchi, Osamu
Miyazaki, Masayuki
Miyahara, Katsunori
Ishibashi, Masafumi
Aihara, Takeshi
Shibuta, Takanobu
Inoue, Takashi
Tsubone, Masao
Toyosawa, Yoshiko
Satoh, Hikaru
Akaishi, Ryuuichirou
Yoshii, Youichi
Ohtsubo, Ken’ichi
author_sort Wada, Takuya
collection PubMed
description A new super-hard rice cultivar, ‘Chikushi-kona 85’, which was derived from a cross between ‘Fukei 2032’ and ‘EM129’, was developed via bulk method breeding. ‘Chikushi-kona 85’ showed a higher content of resistant starch than the normal non-glutinous rice cultivar, ‘Nishihomare’, and a higher grain yield than the first super-hard rice cultivar, ‘EM10’. The amylopectin chain length of ‘Chikushi-kona 85’ and its progenitor line ‘EM129’ was longer than that of ‘Nishihomare’, and was similar to that of ‘EM10’. This suggests that the starch property of ‘Chikushi-kona 85’ was inherited from ‘EM129’, which is a mutant line deficient in a starch branching enzyme similar to ‘EM10’. Genetic analysis of ‘Chikushi-kona 85’ crossed with ‘Nishihomare’ also showed that the starch property of ‘Chikushi-kona 85’ was regulated by a single recessive gene. Consumption of processed cookies made from ‘Chikushi-kona 85’ flour showed a distinctive effect in controlling blood sugar levels in comparison to the normal non-glutinous rice cultivar ‘Hinohikari’. These results show that ‘Chikushi-kona 85’ is a novel genetic source to develop new products made of rice, which could reduce calorie intake and contribute to additional health benefits.
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spelling pubmed-59821782018-06-06 Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line Wada, Takuya Yamaguchi, Osamu Miyazaki, Masayuki Miyahara, Katsunori Ishibashi, Masafumi Aihara, Takeshi Shibuta, Takanobu Inoue, Takashi Tsubone, Masao Toyosawa, Yoshiko Satoh, Hikaru Akaishi, Ryuuichirou Yoshii, Youichi Ohtsubo, Ken’ichi Breed Sci Note A new super-hard rice cultivar, ‘Chikushi-kona 85’, which was derived from a cross between ‘Fukei 2032’ and ‘EM129’, was developed via bulk method breeding. ‘Chikushi-kona 85’ showed a higher content of resistant starch than the normal non-glutinous rice cultivar, ‘Nishihomare’, and a higher grain yield than the first super-hard rice cultivar, ‘EM10’. The amylopectin chain length of ‘Chikushi-kona 85’ and its progenitor line ‘EM129’ was longer than that of ‘Nishihomare’, and was similar to that of ‘EM10’. This suggests that the starch property of ‘Chikushi-kona 85’ was inherited from ‘EM129’, which is a mutant line deficient in a starch branching enzyme similar to ‘EM10’. Genetic analysis of ‘Chikushi-kona 85’ crossed with ‘Nishihomare’ also showed that the starch property of ‘Chikushi-kona 85’ was regulated by a single recessive gene. Consumption of processed cookies made from ‘Chikushi-kona 85’ flour showed a distinctive effect in controlling blood sugar levels in comparison to the normal non-glutinous rice cultivar ‘Hinohikari’. These results show that ‘Chikushi-kona 85’ is a novel genetic source to develop new products made of rice, which could reduce calorie intake and contribute to additional health benefits. Japanese Society of Breeding 2018-03 2018-04-12 /pmc/articles/PMC5982178/ /pubmed/29875612 http://dx.doi.org/10.1270/jsbbs.17069 Text en Copyright © 2018 by JAPANESE SOCIETY OF BREEDING http://creativecommons.org/licenses/by-nc-nd/3.0 This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Note
Wada, Takuya
Yamaguchi, Osamu
Miyazaki, Masayuki
Miyahara, Katsunori
Ishibashi, Masafumi
Aihara, Takeshi
Shibuta, Takanobu
Inoue, Takashi
Tsubone, Masao
Toyosawa, Yoshiko
Satoh, Hikaru
Akaishi, Ryuuichirou
Yoshii, Youichi
Ohtsubo, Ken’ichi
Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line
title Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line
title_full Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line
title_fullStr Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line
title_full_unstemmed Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line
title_short Development and characterization of a new rice cultivar, ‘Chikushi-kona 85’, derived from a starch-branching enzyme IIb-deficient mutant line
title_sort development and characterization of a new rice cultivar, ‘chikushi-kona 85’, derived from a starch-branching enzyme iib-deficient mutant line
topic Note
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5982178/
https://www.ncbi.nlm.nih.gov/pubmed/29875612
http://dx.doi.org/10.1270/jsbbs.17069
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