Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress

The low temperature, drought, high salt, and other environments influence crop production and development directly, so the gene cloning method has become an effective biological means. In order to effectively improve the cloning effect, a gene cloning method for Conringia planisiliqua based on mRNA...

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Main Authors: Yanfei Zhu, Yanying Qu, Melkamu Teshome Ayana
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Journal of Healthcare Engineering
Online Access:http://dx.doi.org/10.1155/2021/3517002
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spelling doaj-7cbdd1c8288347159d205896ab0de2492021-06-28T01:51:55ZengHindawi LimitedJournal of Healthcare Engineering2040-23092021-01-01202110.1155/2021/3517002Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought StressYanfei Zhu0Yanying Qu1Melkamu Teshome Ayana2College of AgronomyCollege of AgronomyDepartment of Hydraulic and Water Resources EngineeringThe low temperature, drought, high salt, and other environments influence crop production and development directly, so the gene cloning method has become an effective biological means. In order to effectively improve the cloning effect, a gene cloning method for Conringia planisiliqua based on mRNA differential display technology was proposed. Based on mRNA differential display technology, the gene of Conringia planisiliqua was transcribed. The present study expects gene cloning to be better than the traditional method. This will lay the basis for gene cloning and functional verification of the transcription and disease-resistant proteins in Conringia planisiliqua. According to homologous identification results, the homologous drought-resistant genes were determined and screened. The data of Conringia planisiliqua in the existing biological database were used to extract ESTs data of Conringia planisiliqua. Then, the heating environment was established and the concept of integral function was introduced to express the influence of growth environment of different genomes. The mass, momentum, energy, and turbulent flow situation of stress-resistant gene of Conringia planisiliqua during the growth were satisfied. Finally, the data search was carried out in the NCBI database and gene cloning was achieved by ESTs data sequence. Experimental results show that the proposed method can effectively reduce the gene data fitting and improve the quantity of gene fragments cloned in a cycle, so the overall cloning effect is better.http://dx.doi.org/10.1155/2021/3517002
collection DOAJ
language English
format Article
sources DOAJ
author Yanfei Zhu
Yanying Qu
Melkamu Teshome Ayana
spellingShingle Yanfei Zhu
Yanying Qu
Melkamu Teshome Ayana
Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress
Journal of Healthcare Engineering
author_facet Yanfei Zhu
Yanying Qu
Melkamu Teshome Ayana
author_sort Yanfei Zhu
title Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress
title_short Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress
title_full Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress
title_fullStr Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress
title_full_unstemmed Cloning Method for Stress-Resistant Gene of Conringia planisiliqua under Drought Stress
title_sort cloning method for stress-resistant gene of conringia planisiliqua under drought stress
publisher Hindawi Limited
series Journal of Healthcare Engineering
issn 2040-2309
publishDate 2021-01-01
description The low temperature, drought, high salt, and other environments influence crop production and development directly, so the gene cloning method has become an effective biological means. In order to effectively improve the cloning effect, a gene cloning method for Conringia planisiliqua based on mRNA differential display technology was proposed. Based on mRNA differential display technology, the gene of Conringia planisiliqua was transcribed. The present study expects gene cloning to be better than the traditional method. This will lay the basis for gene cloning and functional verification of the transcription and disease-resistant proteins in Conringia planisiliqua. According to homologous identification results, the homologous drought-resistant genes were determined and screened. The data of Conringia planisiliqua in the existing biological database were used to extract ESTs data of Conringia planisiliqua. Then, the heating environment was established and the concept of integral function was introduced to express the influence of growth environment of different genomes. The mass, momentum, energy, and turbulent flow situation of stress-resistant gene of Conringia planisiliqua during the growth were satisfied. Finally, the data search was carried out in the NCBI database and gene cloning was achieved by ESTs data sequence. Experimental results show that the proposed method can effectively reduce the gene data fitting and improve the quantity of gene fragments cloned in a cycle, so the overall cloning effect is better.
url http://dx.doi.org/10.1155/2021/3517002
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AT melkamuteshomeayana cloningmethodforstressresistantgeneofconringiaplanisiliquaunderdroughtstress
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