Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla

The present study is aimed to isolate and characterize the hypervariable (HVRII) region in cellulose synthase gene from the developing xylem tissues of a tropical timber tree species, Neolamarckia macrophylla. N. macrophylla is locally known as red kelampayan and it has been selected as one of the i...

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Main Authors: Chang, C.N, Ho, W.S, Pang, S.L
Format: Article
Language:English
Published: IJSTR 2014
Subjects:
Online Access:http://ir.unimas.my/id/eprint/4429/1/Isolation.pdf
http://ir.unimas.my/id/eprint/4429/
http://www.ijstr.org/final-print/july2014/Isolation-And-Characterization-Of-Hypervariable-Region-hvr-Ii-From-Cellulose-Synthase-Gene-In-Neolamarckia-Macrophylla.pdf
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spelling my.unimas.ir.44292022-01-25T08:44:17Z http://ir.unimas.my/id/eprint/4429/ Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla Chang, C.N Ho, W.S Pang, S.L S Agriculture (General) SB Plant culture The present study is aimed to isolate and characterize the hypervariable (HVRII) region in cellulose synthase gene from the developing xylem tissues of a tropical timber tree species, Neolamarckia macrophylla. N. macrophylla is locally known as red kelampayan and it has been selected as one of the important reforestation tree species in Malaysia. RT-PCR was carried out by using the degenerate primers and one of the three amplified DNA bands was successfully sequenced and characterized. The sequence was named as NmCesA1HVRII and it was clustered in a distinct clade that is associated with secondary cell wall development. This study has generated a useful genomic resource for a better understanding about the HVRII region of CesA gene in N. macrophylla and its function which is important in future applications, genetic improvement of N. macrophylla. This also facilitates the future selection of trees with optimal cellulose content required for certain specific industries as well as synthesizing of artificial cellulose, hence increasing the economic development and growth in the country. IJSTR 2014 Article PeerReviewed text en http://ir.unimas.my/id/eprint/4429/1/Isolation.pdf Chang, C.N and Ho, W.S and Pang, S.L (2014) Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla. International Journal Of Scientific & Technology Research, 3 (7). ISSN 2277-8616 http://www.ijstr.org/final-print/july2014/Isolation-And-Characterization-Of-Hypervariable-Region-hvr-Ii-From-Cellulose-Synthase-Gene-In-Neolamarckia-Macrophylla.pdf
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic S Agriculture (General)
SB Plant culture
spellingShingle S Agriculture (General)
SB Plant culture
Chang, C.N
Ho, W.S
Pang, S.L
Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla
description The present study is aimed to isolate and characterize the hypervariable (HVRII) region in cellulose synthase gene from the developing xylem tissues of a tropical timber tree species, Neolamarckia macrophylla. N. macrophylla is locally known as red kelampayan and it has been selected as one of the important reforestation tree species in Malaysia. RT-PCR was carried out by using the degenerate primers and one of the three amplified DNA bands was successfully sequenced and characterized. The sequence was named as NmCesA1HVRII and it was clustered in a distinct clade that is associated with secondary cell wall development. This study has generated a useful genomic resource for a better understanding about the HVRII region of CesA gene in N. macrophylla and its function which is important in future applications, genetic improvement of N. macrophylla. This also facilitates the future selection of trees with optimal cellulose content required for certain specific industries as well as synthesizing of artificial cellulose, hence increasing the economic development and growth in the country.
format Article
author Chang, C.N
Ho, W.S
Pang, S.L
author_facet Chang, C.N
Ho, W.S
Pang, S.L
author_sort Chang, C.N
title Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla
title_short Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla
title_full Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla
title_fullStr Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla
title_full_unstemmed Isolation And Characterization Of Hypervariable Region (HVR II) From Cellulose Synthase Gene In Neolamarckia Macrophylla
title_sort isolation and characterization of hypervariable region (hvr ii) from cellulose synthase gene in neolamarckia macrophylla
publisher IJSTR
publishDate 2014
url http://ir.unimas.my/id/eprint/4429/1/Isolation.pdf
http://ir.unimas.my/id/eprint/4429/
http://www.ijstr.org/final-print/july2014/Isolation-And-Characterization-Of-Hypervariable-Region-hvr-Ii-From-Cellulose-Synthase-Gene-In-Neolamarckia-Macrophylla.pdf
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score 13.214268