Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP
Phosphate (Pi) deficiency in soil can have severe impacts on the growth, development, and production of maize worldwide. In this study, a cDNA-sequence-related amplified polymorphism (cDNA-SRAP) transcript profiling technique was used to evaluate the gene expression in leaves and roots of maize unde...
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Online Access: | http://dx.doi.org/10.1155/2020/8420151 |
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doaj-f19fc7f41d8f4c669d2188931a5a2e802020-11-25T03:15:36ZengHindawi LimitedBioMed Research International2314-61332314-61412020-01-01202010.1155/2020/84201518420151Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAPLei Yan0Liang Su1Rui Li2Hao Li3Jianrong Bai4Fengjie Sun5College of Agriculture, Shanxi Agricultural University, Taiyuan, 030031 Shanxi, ChinaCollege of Agriculture, Shanxi Agricultural University, Taiyuan, 030031 Shanxi, ChinaCollege of Agriculture, Shanxi Agricultural University, Taiyuan, 030031 Shanxi, ChinaCollee of Food Engineering, Jilin Engineering Normal University, Changchun, 130052 Jilin, ChinaCollege of Agriculture, Shanxi Agricultural University, Taiyuan, 030031 Shanxi, ChinaSchool of Science and Technology, Georgia Gwinnett College, Lawrenceville, GA 30043, USAPhosphate (Pi) deficiency in soil can have severe impacts on the growth, development, and production of maize worldwide. In this study, a cDNA-sequence-related amplified polymorphism (cDNA-SRAP) transcript profiling technique was used to evaluate the gene expression in leaves and roots of maize under Pi stress for seven days. A total of 2494 differentially expressed fragments (DEFs) were identified in response to Pi starvation with 1202 and 1292 DEFs in leaves and roots, respectively, using a total of 60 primer pairs in the cDNA-SRAP analysis. These DEFs were categorized into 13 differential gene expression patterns. Results of sequencing and functional analysis showed that 63 DEFs (33 in leaves and 30 in roots) were annotated to a total of 54 genes involved in diverse groups of biological pathways, including metabolism, photosynthesis, signal transduction, transcription, transport, cellular processes, genetic information, and organismal system. This study demonstrated that (1) the cDNA-SRAP transcriptomic profiling technique is a powerful method to analyze differential gene expression in maize showing advantageous features among several transcriptomic methods; (2) maize undergoes a complex adaptive process in response to low Pi stress; and (3) a total of seven differentially expressed genes were identified in response to low Pi stress in leaves or roots of maize and could be used in the genetic modification of maize.http://dx.doi.org/10.1155/2020/8420151 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lei Yan Liang Su Rui Li Hao Li Jianrong Bai Fengjie Sun |
spellingShingle |
Lei Yan Liang Su Rui Li Hao Li Jianrong Bai Fengjie Sun Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP BioMed Research International |
author_facet |
Lei Yan Liang Su Rui Li Hao Li Jianrong Bai Fengjie Sun |
author_sort |
Lei Yan |
title |
Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP |
title_short |
Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP |
title_full |
Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP |
title_fullStr |
Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP |
title_full_unstemmed |
Differential Gene Expression Responding to Low Phosphate Stress in Leaves and Roots of Maize by cDNA-SRAP |
title_sort |
differential gene expression responding to low phosphate stress in leaves and roots of maize by cdna-srap |
publisher |
Hindawi Limited |
series |
BioMed Research International |
issn |
2314-6133 2314-6141 |
publishDate |
2020-01-01 |
description |
Phosphate (Pi) deficiency in soil can have severe impacts on the growth, development, and production of maize worldwide. In this study, a cDNA-sequence-related amplified polymorphism (cDNA-SRAP) transcript profiling technique was used to evaluate the gene expression in leaves and roots of maize under Pi stress for seven days. A total of 2494 differentially expressed fragments (DEFs) were identified in response to Pi starvation with 1202 and 1292 DEFs in leaves and roots, respectively, using a total of 60 primer pairs in the cDNA-SRAP analysis. These DEFs were categorized into 13 differential gene expression patterns. Results of sequencing and functional analysis showed that 63 DEFs (33 in leaves and 30 in roots) were annotated to a total of 54 genes involved in diverse groups of biological pathways, including metabolism, photosynthesis, signal transduction, transcription, transport, cellular processes, genetic information, and organismal system. This study demonstrated that (1) the cDNA-SRAP transcriptomic profiling technique is a powerful method to analyze differential gene expression in maize showing advantageous features among several transcriptomic methods; (2) maize undergoes a complex adaptive process in response to low Pi stress; and (3) a total of seven differentially expressed genes were identified in response to low Pi stress in leaves or roots of maize and could be used in the genetic modification of maize. |
url |
http://dx.doi.org/10.1155/2020/8420151 |
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