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Transcriptome sequencing and comparative analysis reveal long-term flowing mechanisms in Hevea brasiliensis latex.

Authors :
Wei, Fang
Luo, Shiqiao
Zheng, Qiankun
Qiu, Jian
Yang, Wenfeng
Wu, Ming
Xiao, Xianzhou
Source :
Gene. Feb2015, Vol. 556 Issue 2, p153-162. 10p.
Publication Year :
2015

Abstract

Background The rubber tree, Hevea brasiliensis , is a major commercial source of natural rubber. Increasing the rubber yield of rubber trees is a very serious problem since the demands for high quality rubber materials are great. Establishment of a tapping system is based on an estimate of tapping intensity from the rubber tree. Latex flowing time is one of the most critical factors that determine the rubber yield. Long-term flow is a type of phenomenon of the rubber tree latex with longer flowing time than normal latex flow, and is always caused by intensive tapping. Thus, transcriptome and expression profiling data for long-term flowing latex (LFL) are needed as an important resource to identify genes and to better understand the biological mechanisms of latex flow in rubber trees. Results The transcripts were sequenced using the Illumina sequencing platform. After cleaning, quality checks and sequencing, 98,697 transcripts and 38,584 unigenes were assembled with the mean size of 1437.31 bp and 923.86 bp, respectively. In BLAST searches of our database against public databases, 65.17% (25,147) of the unigenes were annotated with gene descriptions, conserved protein domains, or gene ontology terms. Functional categorization further revealed 853 individual unigenes related to long-term flow. According to KEGG classification, the clusters for “cysteine and methionine metabolism”, “energy”, “oxidative phosphorylation”, “terpenoid backbone biosynthesis”, “plant hormone signal transduction” and “copper, potassium transporter” were significantly enriched metabolic pathways. Conclusions We conducted high-resolution transcriptome profiling related to LFL in H. brasiliensis . The research facilitates further studies on gene discovery and on the molecular mechanisms related to the estimation of tapping intensity and prolonging latex flowing time. We concluded that it was necessary to improve energy supplies for intensive tapping and the copper ion content of rubber tree latex could be considered as a standard to estimate tapping intensity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03781119
Volume :
556
Issue :
2
Database :
Academic Search Index
Journal :
Gene
Publication Type :
Academic Journal
Accession number :
100152162
Full Text :
https://doi.org/10.1016/j.gene.2014.11.048