Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves

Leaf senescence is a complex organized developmental stage limiting the yield of crop plants, and alfalfa is an important forage crop worldwide. However, our understanding of the molecular mechanism of leaf senescence and its influence on biomass in alfalfa is still limited. In this study, RNA seque...

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Main Authors: Jianbo Yuan, Xinbo Sun, Tao Guo, Yuehui Chao, Liebao Han
Format: Article
Language:English
Published: PeerJ Inc. 2020-01-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/8426.pdf
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spelling doaj-f438d5064e7b4faab917c3401cf290aa2020-11-25T01:36:31ZengPeerJ Inc.PeerJ2167-83592020-01-018e842610.7717/peerj.8426Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leavesJianbo Yuan0Xinbo Sun1Tao Guo2Yuehui Chao3Liebao Han4College of Grassland Science, Beijing Forestry University, Beijing, ChinaCollege of Agronomy, Hebei Agricultural University, Key Laboratory of Crop Growth Regulation of Hebei Province, ChinaCollege of Grassland Science, Beijing Forestry University, Beijing, ChinaCollege of Grassland Science, Beijing Forestry University, Beijing, ChinaCollege of Grassland Science, Beijing Forestry University, Beijing, ChinaLeaf senescence is a complex organized developmental stage limiting the yield of crop plants, and alfalfa is an important forage crop worldwide. However, our understanding of the molecular mechanism of leaf senescence and its influence on biomass in alfalfa is still limited. In this study, RNA sequencing was utilized to identify differentially expressed genes (DEGs) in young, mature, and senescent leaves, and the functions of key genes related to leaf senescence. A total of 163,511 transcripts and 77,901 unigenes were identified from the transcriptome, and 5,133 unigenes were differentially expressed. KEGG enrichment analyses revealed that ribosome and phenylpropanoid biosynthesis pathways, and starch and sucrose metabolism pathways are involved in leaf development and senescence in alfalfa. GO enrichment analyses exhibited that six clusters of DEGs are involved in leaf morphogenesis, leaf development, leaf formation, regulation of leaf development, leaf senescence and negative regulation of the leaf senescence biological process. The WRKY and NAC families of genes mainly consist of transcription factors that are involved in the leaf senescence process. Our results offer a novel interpretation of the molecular mechanisms of leaf senescence in alfalfa.https://peerj.com/articles/8426.pdfLeaf senescenceAlfalfaDifferentially expressed genesTranscriptome
collection DOAJ
language English
format Article
sources DOAJ
author Jianbo Yuan
Xinbo Sun
Tao Guo
Yuehui Chao
Liebao Han
spellingShingle Jianbo Yuan
Xinbo Sun
Tao Guo
Yuehui Chao
Liebao Han
Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
PeerJ
Leaf senescence
Alfalfa
Differentially expressed genes
Transcriptome
author_facet Jianbo Yuan
Xinbo Sun
Tao Guo
Yuehui Chao
Liebao Han
author_sort Jianbo Yuan
title Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
title_short Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
title_full Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
title_fullStr Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
title_full_unstemmed Global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
title_sort global transcriptome analysis of alfalfa reveals six key biological processes of senescent leaves
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2020-01-01
description Leaf senescence is a complex organized developmental stage limiting the yield of crop plants, and alfalfa is an important forage crop worldwide. However, our understanding of the molecular mechanism of leaf senescence and its influence on biomass in alfalfa is still limited. In this study, RNA sequencing was utilized to identify differentially expressed genes (DEGs) in young, mature, and senescent leaves, and the functions of key genes related to leaf senescence. A total of 163,511 transcripts and 77,901 unigenes were identified from the transcriptome, and 5,133 unigenes were differentially expressed. KEGG enrichment analyses revealed that ribosome and phenylpropanoid biosynthesis pathways, and starch and sucrose metabolism pathways are involved in leaf development and senescence in alfalfa. GO enrichment analyses exhibited that six clusters of DEGs are involved in leaf morphogenesis, leaf development, leaf formation, regulation of leaf development, leaf senescence and negative regulation of the leaf senescence biological process. The WRKY and NAC families of genes mainly consist of transcription factors that are involved in the leaf senescence process. Our results offer a novel interpretation of the molecular mechanisms of leaf senescence in alfalfa.
topic Leaf senescence
Alfalfa
Differentially expressed genes
Transcriptome
url https://peerj.com/articles/8426.pdf
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