In vitro regeneration of Haloxylon ammodendron

Haloxylon ammodendron (C.A.Mey) Bunge is one of the important species of arid desert vegetation in China, and it is also an ideal material for studying plant stress resistance, which plays an extremely important role in protecting desert ecosystems and preventing land desertification. However, ther...

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Main Authors: Ping WANG, Lingjuan MAN, Li MA, Jiaxin QI, Yanping REN, Zhengpei YAO, Bo WANG, Cong CHENG, Hua ZHANG
Format: Article
Language:English
Published: Society of Land Measurements and Cadastre from Transylvania (SMTCT) 2023-06-01
Series:Notulae Scientia Biologicae
Subjects:
Online Access:https://www.notulaebiologicae.ro/index.php/nsb/article/view/11585
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author Ping WANG
Lingjuan MAN
Li MA
Jiaxin QI
Yanping REN
Zhengpei YAO
Bo WANG
Cong CHENG
Hua ZHANG
author_facet Ping WANG
Lingjuan MAN
Li MA
Jiaxin QI
Yanping REN
Zhengpei YAO
Bo WANG
Cong CHENG
Hua ZHANG
author_sort Ping WANG
collection DOAJ
description Haloxylon ammodendron (C.A.Mey) Bunge is one of the important species of arid desert vegetation in China, and it is also an ideal material for studying plant stress resistance, which plays an extremely important role in protecting desert ecosystems and preventing land desertification. However, there are relatively few studies on the regeneration of the fusiform, and the genetic transformation system has not been successfully reported, which restricts the in-depth study of the molecular mechanism of shuttle propagation and stress resistance. In the present study, the seeds, hypocotyls, cotyledons, cotyledon nodes, terminal buds and fixed buds were used as explants, and a set of tissue culture and plant regeneration system was established by inducing adventitious buds, adventitious bud rooting and transplanting. The results showed that amongst different H. ammodendron explants, i.e., seeds, hypocotyls, cotyledons and cotyledon nodes, the last induced budding effect was better. The optimal medium for inducing clandine buds by cotyledon segment differentiation is 0.5 mg·L-1 NAA+0.5 mg·L-1 6-BA induced budding rate was high, reaching 61.90%, rooting medium was 1/2 MS+1 mg·L-1 NAA +1 mg·L-1 IBA + 1 mg·L-1 IAA with a rooting rate of 50%. The results of this study will provide a theoretical basis for the genetic transformation of H. ammodendron.
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spelling doaj.art-c646df46567b44078400238eb6154f322023-06-29T18:23:20ZengSociety of Land Measurements and Cadastre from Transylvania (SMTCT)Notulae Scientia Biologicae2067-32642023-06-0115210.55779/nsb15211585In vitro regeneration of Haloxylon ammodendronPing WANG0Lingjuan MAN1Li MA2Jiaxin QI3Yanping REN4Zhengpei YAO5Bo WANG6Cong CHENG7Hua ZHANG8Xinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, XinjiangXinjiang Agricultural University, College of Life Sciences, Urumqi, Xinjiang Haloxylon ammodendron (C.A.Mey) Bunge is one of the important species of arid desert vegetation in China, and it is also an ideal material for studying plant stress resistance, which plays an extremely important role in protecting desert ecosystems and preventing land desertification. However, there are relatively few studies on the regeneration of the fusiform, and the genetic transformation system has not been successfully reported, which restricts the in-depth study of the molecular mechanism of shuttle propagation and stress resistance. In the present study, the seeds, hypocotyls, cotyledons, cotyledon nodes, terminal buds and fixed buds were used as explants, and a set of tissue culture and plant regeneration system was established by inducing adventitious buds, adventitious bud rooting and transplanting. The results showed that amongst different H. ammodendron explants, i.e., seeds, hypocotyls, cotyledons and cotyledon nodes, the last induced budding effect was better. The optimal medium for inducing clandine buds by cotyledon segment differentiation is 0.5 mg·L-1 NAA+0.5 mg·L-1 6-BA induced budding rate was high, reaching 61.90%, rooting medium was 1/2 MS+1 mg·L-1 NAA +1 mg·L-1 IBA + 1 mg·L-1 IAA with a rooting rate of 50%. The results of this study will provide a theoretical basis for the genetic transformation of H. ammodendron. https://www.notulaebiologicae.ro/index.php/nsb/article/view/11585adventitious budsroot inductionorganogenesisex vivo regenerationH. ammodendron
spellingShingle Ping WANG
Lingjuan MAN
Li MA
Jiaxin QI
Yanping REN
Zhengpei YAO
Bo WANG
Cong CHENG
Hua ZHANG
In vitro regeneration of Haloxylon ammodendron
Notulae Scientia Biologicae
adventitious buds
root induction
organogenesis
ex vivo regeneration
H. ammodendron
title In vitro regeneration of Haloxylon ammodendron
title_full In vitro regeneration of Haloxylon ammodendron
title_fullStr In vitro regeneration of Haloxylon ammodendron
title_full_unstemmed In vitro regeneration of Haloxylon ammodendron
title_short In vitro regeneration of Haloxylon ammodendron
title_sort in vitro regeneration of haloxylon ammodendron
topic adventitious buds
root induction
organogenesis
ex vivo regeneration
H. ammodendron
url https://www.notulaebiologicae.ro/index.php/nsb/article/view/11585
work_keys_str_mv AT pingwang invitroregenerationofhaloxylonammodendron
AT lingjuanman invitroregenerationofhaloxylonammodendron
AT lima invitroregenerationofhaloxylonammodendron
AT jiaxinqi invitroregenerationofhaloxylonammodendron
AT yanpingren invitroregenerationofhaloxylonammodendron
AT zhengpeiyao invitroregenerationofhaloxylonammodendron
AT bowang invitroregenerationofhaloxylonammodendron
AT congcheng invitroregenerationofhaloxylonammodendron
AT huazhang invitroregenerationofhaloxylonammodendron