Uneven distribution of zinc in the dorsal and ventral sections of rice grain

This study examined the distribution of zinc in dorsal and ventral grain sections of rice varieties with low (RD21), moderate (CNT1 and KDML105), and high (KPK and NR) zinc concentrations. Samples of unhusked rice grain were partitioned longitudinally and analyzed for zinc. The concentration of zinc...

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Main Authors: Jaksomsak P., Sangruan P., Thomson G., Rerkasem B., Dell B., Prom-U-Thai C.
Format: Article
Language:English
Published: American Association of Cereal Chemists 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-84896983712&partnerID=40&md5=171edbf563e64333690e3c85d5a6c564
http://cmuir.cmu.ac.th/handle/6653943832/231
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spelling th-cmuir.6653943832-2312014-08-29T07:31:23Z Uneven distribution of zinc in the dorsal and ventral sections of rice grain Jaksomsak P. Sangruan P. Thomson G. Rerkasem B. Dell B. Prom-U-Thai C. This study examined the distribution of zinc in dorsal and ventral grain sections of rice varieties with low (RD21), moderate (CNT1 and KDML105), and high (KPK and NR) zinc concentrations. Samples of unhusked rice grain were partitioned longitudinally and analyzed for zinc. The concentration of zinc was higher in the dorsal grain section than the ventral section, but to a different extent in different varieties. In unpolished rice, the zinc concentration in the dorsal section exceeded that in the ventral section by 14% in CNT1 to 63% in RD21. The higher zinc concentration in the dorsal section of unpolished rice might be explained by storage in the multiple cell layered aleurone and thicker pericarp. The higher concentration of dorsal zinc, however, was maintained after polishing, irrespective of the removal of grain surface by polishing that varied with variety and polishing time from 11 to 207 μm in depth. Zinc concentration of polished rice, ranging from 14 to 28 mg of zinc/kg, was strongly predicted by the zinc in unpolished rice (P < 0.01). This uneven distribution of zinc in the dorsal and ventral sections of rice grain suggests a specific pattern by which zinc is laid down. Whether the region of endosperm and aleurone proximal to the dorsal vascular bundle may have a greater concentration of zinc transporters and zinc storage structures than in more distal areas is yet to be investigated. Understanding this distribution may aid efforts in zinc biofortification and evaluation of rice varieties for other nutritive characteristics. © 2014 AACC International, Inc. 2014-08-29T07:31:23Z 2014-08-29T07:31:23Z 2014 Article 00090352 10.1094/CCHEM-09-13-0185-R CECHA http://www.scopus.com/inward/record.url?eid=2-s2.0-84896983712&partnerID=40&md5=171edbf563e64333690e3c85d5a6c564 http://cmuir.cmu.ac.th/handle/6653943832/231 English American Association of Cereal Chemists
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description This study examined the distribution of zinc in dorsal and ventral grain sections of rice varieties with low (RD21), moderate (CNT1 and KDML105), and high (KPK and NR) zinc concentrations. Samples of unhusked rice grain were partitioned longitudinally and analyzed for zinc. The concentration of zinc was higher in the dorsal grain section than the ventral section, but to a different extent in different varieties. In unpolished rice, the zinc concentration in the dorsal section exceeded that in the ventral section by 14% in CNT1 to 63% in RD21. The higher zinc concentration in the dorsal section of unpolished rice might be explained by storage in the multiple cell layered aleurone and thicker pericarp. The higher concentration of dorsal zinc, however, was maintained after polishing, irrespective of the removal of grain surface by polishing that varied with variety and polishing time from 11 to 207 μm in depth. Zinc concentration of polished rice, ranging from 14 to 28 mg of zinc/kg, was strongly predicted by the zinc in unpolished rice (P < 0.01). This uneven distribution of zinc in the dorsal and ventral sections of rice grain suggests a specific pattern by which zinc is laid down. Whether the region of endosperm and aleurone proximal to the dorsal vascular bundle may have a greater concentration of zinc transporters and zinc storage structures than in more distal areas is yet to be investigated. Understanding this distribution may aid efforts in zinc biofortification and evaluation of rice varieties for other nutritive characteristics. © 2014 AACC International, Inc.
format Article
author Jaksomsak P.
Sangruan P.
Thomson G.
Rerkasem B.
Dell B.
Prom-U-Thai C.
spellingShingle Jaksomsak P.
Sangruan P.
Thomson G.
Rerkasem B.
Dell B.
Prom-U-Thai C.
Uneven distribution of zinc in the dorsal and ventral sections of rice grain
author_facet Jaksomsak P.
Sangruan P.
Thomson G.
Rerkasem B.
Dell B.
Prom-U-Thai C.
author_sort Jaksomsak P.
title Uneven distribution of zinc in the dorsal and ventral sections of rice grain
title_short Uneven distribution of zinc in the dorsal and ventral sections of rice grain
title_full Uneven distribution of zinc in the dorsal and ventral sections of rice grain
title_fullStr Uneven distribution of zinc in the dorsal and ventral sections of rice grain
title_full_unstemmed Uneven distribution of zinc in the dorsal and ventral sections of rice grain
title_sort uneven distribution of zinc in the dorsal and ventral sections of rice grain
publisher American Association of Cereal Chemists
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-84896983712&partnerID=40&md5=171edbf563e64333690e3c85d5a6c564
http://cmuir.cmu.ac.th/handle/6653943832/231
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