Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition

Rice (Oryza sativa L.) is important staple crop in Indonesia. Food demand that continues to rise while inadequate land could be managed by assembling superior cultivar using CRISPR-Cas9 system method. Editing the genome by mutating the GA20ox-2 gene could improve both crop yield and ability to thriv...

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Main Authors: Husni Mubarok, Panjisakti Basunanda, Tri Joko Santoso
Format: Article
Language:English
Published: Universitas Gadjah Mada 2019-11-01
Series:Ilmu Pertanian (Agricultural Science)
Subjects:
Online Access:https://jurnal.ugm.ac.id/jip/article/view/37032
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spelling doaj-32281e57f0c64a7eb97d42e02a45e0aa2020-11-25T01:13:55ZengUniversitas Gadjah MadaIlmu Pertanian (Agricultural Science)0126-42142527-71622019-11-014312313010.22146/ipas.3703224343Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought ConditionHusni Mubarok0Panjisakti Basunanda1Tri Joko Santoso2Faculty of Agriculture Universitas Gadjah Mada, YogyakartaFaculty of Agriculture Universitas Gadjah Mada, YogyakartaResearch and Development Center for Biotechnology and Genetic Resources (BB BIOGEN)Rice (Oryza sativa L.) is important staple crop in Indonesia. Food demand that continues to rise while inadequate land could be managed by assembling superior cultivar using CRISPR-Cas9 system method. Editing the genome by mutating the GA20ox-2 gene could improve both crop yield and ability to thrive in marginal land (drought). This experiment aims to obtain non-transgenic mutant plants (non Cas9 and hpt genes), gain information on GA20ox-2 gene expression levels, and study the tolerance levels of the CRISPR /Cas9-OsGA20ox-2 mutant lines 'Kitaake' T2 generation against drought conditions. Planting material using a mutant gene GA20ox 2 ‘Kitaake’ (K23.1, K15, K29.1, K19.1) and wild-type comparison. From 20 plants, respectively the K23.1, K15, K29.1, and K19.1 lines have 50%, 50%, 0%, and 45% of non-transgenic plants. DNA mutations in the form of deletion 44 bases (K23.1, K29.1, K19.1) and insertion of two bases (K15) are transcribed into RNA. The transcription results in a number of lower amino acids compare to its wild type (389 amino acids). The lines K23.1, K29.1, K19.1 have 373 amino acids and the K15 line has 300 amino acids (frameshift). Differences in the number of amino acids result in different phenotypic expressions. K15 mutant line has lower plant height and leaf length than the other mutant lines and wild type. The decrease does not decrease the potential of the crop. Mutations in the K15 line did not indicate better tolerant response to drought stress than other mutant lines and wild type in both vegetative and generative phase.https://jurnal.ugm.ac.id/jip/article/view/37032genome editingnon-transgenicinsersidelesiekspressionframeshift
collection DOAJ
language English
format Article
sources DOAJ
author Husni Mubarok
Panjisakti Basunanda
Tri Joko Santoso
spellingShingle Husni Mubarok
Panjisakti Basunanda
Tri Joko Santoso
Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition
Ilmu Pertanian (Agricultural Science)
genome editing
non-transgenic
insersi
delesi
ekspression
frameshift
author_facet Husni Mubarok
Panjisakti Basunanda
Tri Joko Santoso
author_sort Husni Mubarok
title Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition
title_short Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition
title_full Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition
title_fullStr Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition
title_full_unstemmed Tolerance of T2 Generation ‘Kitaake’ Rice (Oryza sativa L.) CRISPR/Cas9-OsGA20ox-2 Mutant Strains to Drought Condition
title_sort tolerance of t2 generation ‘kitaake’ rice (oryza sativa l.) crispr/cas9-osga20ox-2 mutant strains to drought condition
publisher Universitas Gadjah Mada
series Ilmu Pertanian (Agricultural Science)
issn 0126-4214
2527-7162
publishDate 2019-11-01
description Rice (Oryza sativa L.) is important staple crop in Indonesia. Food demand that continues to rise while inadequate land could be managed by assembling superior cultivar using CRISPR-Cas9 system method. Editing the genome by mutating the GA20ox-2 gene could improve both crop yield and ability to thrive in marginal land (drought). This experiment aims to obtain non-transgenic mutant plants (non Cas9 and hpt genes), gain information on GA20ox-2 gene expression levels, and study the tolerance levels of the CRISPR /Cas9-OsGA20ox-2 mutant lines 'Kitaake' T2 generation against drought conditions. Planting material using a mutant gene GA20ox 2 ‘Kitaake’ (K23.1, K15, K29.1, K19.1) and wild-type comparison. From 20 plants, respectively the K23.1, K15, K29.1, and K19.1 lines have 50%, 50%, 0%, and 45% of non-transgenic plants. DNA mutations in the form of deletion 44 bases (K23.1, K29.1, K19.1) and insertion of two bases (K15) are transcribed into RNA. The transcription results in a number of lower amino acids compare to its wild type (389 amino acids). The lines K23.1, K29.1, K19.1 have 373 amino acids and the K15 line has 300 amino acids (frameshift). Differences in the number of amino acids result in different phenotypic expressions. K15 mutant line has lower plant height and leaf length than the other mutant lines and wild type. The decrease does not decrease the potential of the crop. Mutations in the K15 line did not indicate better tolerant response to drought stress than other mutant lines and wild type in both vegetative and generative phase.
topic genome editing
non-transgenic
insersi
delesi
ekspression
frameshift
url https://jurnal.ugm.ac.id/jip/article/view/37032
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AT trijokosantoso toleranceoft2generationkitaakericeoryzasativalcrisprcas9osga20ox2mutantstrainstodroughtcondition
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