Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice

To respond to the global warming challenge to local agriculture, we applied a low-energy heavy ion beam as novel biotechnology to improve crop drought tolerance. Dehulled seeds of Thai Jasmine rice, Khao Dawk Mali 105 (KDML105), a popular Thai rice variety, were bombarded by a nitrogen ion beam with...

Full description

Saved in:
Bibliographic Details
Main Authors: B. Khitka, B. Phanchaisri, A. Sutipatanasomboon, W. Nuangmek, L. D. Yu, J. Techarang
Other Authors: University of Phayao
Format: Article
Published: 2022
Subjects:
Online Access:https://repository.li.mahidol.ac.th/handle/123456789/79003
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Mahidol University
id th-mahidol.79003
record_format dspace
spelling th-mahidol.790032022-08-04T18:27:41Z Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice B. Khitka B. Phanchaisri A. Sutipatanasomboon W. Nuangmek L. D. Yu J. Techarang University of Phayao Mahidol University Ministry of Higher Education, Science, Research and Innovation Chiang Mai University Physics and Astronomy To respond to the global warming challenge to local agriculture, we applied a low-energy heavy ion beam as novel biotechnology to improve crop drought tolerance. Dehulled seeds of Thai Jasmine rice, Khao Dawk Mali 105 (KDML105), a popular Thai rice variety, were bombarded by a nitrogen ion beam with energy of tens-keV and fluences in an order of 1016 ions/cm2. The resulting mutagenized rice was obtained, selected, and further advanced until phenotypically stable. Mutagenized lines were screened for drought tolerance in the seedling and reproductive stages under an artificially created drought condition in comparison with KDML105 and the drought-tolerant reference variety, CT9993, using both subjective and quantitative parameters. We advanced the mutants up to M8 generation for stabilization and found a mutant line named HyKOS22, which displayed higher tolerance to the drought condition than KDML105 and CT9993 and produced a higher crop yield than KDML105. Genetic changes in HyKOS22 were confirmed by molecular biology analysis. 2022-08-04T11:27:41Z 2022-08-04T11:27:41Z 2021-04-01 Article Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms. Vol.492, (2021), 34-42 10.1016/j.nimb.2021.02.003 0168583X 2-s2.0-85100883510 https://repository.li.mahidol.ac.th/handle/123456789/79003 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85100883510&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Physics and Astronomy
spellingShingle Physics and Astronomy
B. Khitka
B. Phanchaisri
A. Sutipatanasomboon
W. Nuangmek
L. D. Yu
J. Techarang
Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice
description To respond to the global warming challenge to local agriculture, we applied a low-energy heavy ion beam as novel biotechnology to improve crop drought tolerance. Dehulled seeds of Thai Jasmine rice, Khao Dawk Mali 105 (KDML105), a popular Thai rice variety, were bombarded by a nitrogen ion beam with energy of tens-keV and fluences in an order of 1016 ions/cm2. The resulting mutagenized rice was obtained, selected, and further advanced until phenotypically stable. Mutagenized lines were screened for drought tolerance in the seedling and reproductive stages under an artificially created drought condition in comparison with KDML105 and the drought-tolerant reference variety, CT9993, using both subjective and quantitative parameters. We advanced the mutants up to M8 generation for stabilization and found a mutant line named HyKOS22, which displayed higher tolerance to the drought condition than KDML105 and CT9993 and produced a higher crop yield than KDML105. Genetic changes in HyKOS22 were confirmed by molecular biology analysis.
author2 University of Phayao
author_facet University of Phayao
B. Khitka
B. Phanchaisri
A. Sutipatanasomboon
W. Nuangmek
L. D. Yu
J. Techarang
format Article
author B. Khitka
B. Phanchaisri
A. Sutipatanasomboon
W. Nuangmek
L. D. Yu
J. Techarang
author_sort B. Khitka
title Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice
title_short Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice
title_full Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice
title_fullStr Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice
title_full_unstemmed Low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant Thai Jasmine rice
title_sort low-energy heavy-ion-beam-induced mutation of novel high-yielding drought-tolerant thai jasmine rice
publishDate 2022
url https://repository.li.mahidol.ac.th/handle/123456789/79003
_version_ 1763492280710201344