Exploring Candidate Genes for Pericarp Russet Pigmentation of Sand Pear (Pyrus pyrifolia) via RNA-Seq Data in Two Genotypes Contrasting for Pericarp Color

Publication Overview
TitleExploring Candidate Genes for Pericarp Russet Pigmentation of Sand Pear (Pyrus pyrifolia) via RNA-Seq Data in Two Genotypes Contrasting for Pericarp Color
AuthorsWang YZ, Dai MS, Zhang SJ, Shi ZB
TypeJournal Article
Journal NamePloS one
Volume9
Issue1
Year2014
Page(s)e83675
CitationWang YZ, Dai MS, Zhang SJ, Shi ZB. Exploring Candidate Genes for Pericarp Russet Pigmentation of Sand Pear (Pyrus pyrifolia) via RNA-Seq Data in Two Genotypes Contrasting for Pericarp Color. PloS one. 2014; 9(1):e83675.

Abstract

Sand pear (Pyrus pyrifolia) russet pericarp is an important trait affecting both the quality and stress tolerance of fruits. This trait is controlled by a relative complex genetic process, with some fundamental biological questions such as how many and which genes are involved in the process remaining elusive. In this study, we explored differentially expressed genes between the russet- and green-pericarp offspring from the sand pear (Pyrus pyrifolia) cv. 'Qingxiang' × 'Cuiguan' F1 group by RNA-seq-based bulked segregant analysis (BSA). A total of 29,100 unigenes were identified and 206 of which showed significant differences in expression level (log2fold values>1) between the two types of pericarp pools. Gene Ontology (GO) analyses detected 123 unigenes in GO terms related to 'cellular_component' and 'biological_process', suggesting developmental and growth differentiations between the two types. GO categories associated with various aspects of 'lipid metabolic processes', 'transport', 'response to stress', 'oxidation-reduction process' and more were enriched with genes with divergent expressions between the two libraries. Detailed examination of a selected set of these categories revealed repressed expressions of candidate genes for suberin, cutin and wax biosynthesis in the russet pericarps.Genes encoding putative cinnamoyl-CoA reductase (CCR), cinnamyl alcohol dehydrogenase (CAD) and peroxidase (POD) that are involved in the lignin biosynthesis were suggested to be candidates for pigmentation of sand pear russet pericarps. Nine differentially expressed genes were analyzed for their expressions using qRT-PCR and the results were consistent with those obtained from Illumina RNA-sequencing. This study provides a comprehensive molecular biology insight into the sand pear pericarp pigmentation and appearance quality formation.

Features
This publication contains information about 23,157 features:
Feature NameUniquenameType
GALR01003121GALR01003121.1region
GALR01003122GALR01003122.1region
GALR01003123GALR01003123.1region
GALR01003124GALR01003124.1region
GALR01003125GALR01003125.1region
GALR01003126GALR01003126.1region
GALR01003127GALR01003127.1region
GALR01003128GALR01003128.1region
GALR01003129GALR01003129.1region
GALR01003130GALR01003130.1region
GALR01003131GALR01003131.1region
GALR01003132GALR01003132.1region
GALR01003133GALR01003133.1region
GALR01003134GALR01003134.1region
GALR01003135GALR01003135.1region
GALR01003136GALR01003136.1region
GALR01003137GALR01003137.1region
GALR01003138GALR01003138.1region
GALR01003139GALR01003139.1region
GALR01003140GALR01003140.1region
GALR01003141GALR01003141.1region
GALR01003142GALR01003142.1region
GALR01003143GALR01003143.1region
GALR01003144GALR01003144.1region
GALR01003145GALR01003145.1region

Pages