Arid
DOI10.1007/s11295-016-0986-y
Transcriptomic profile of leaf tissue from the leguminous tree, Millettia pinnata
Wegrzyn, Jill L.1; Whalen, Jeanne1; Kinlaw, Claire S.2; Harry, David E.2; Puryear, Jeffrey3; Loopstra, Carol A.3; Gonzalez-Ibeas, Daniel1; Vasquez-Gross, Hans A.4; Famula, Randi A.4; Neale, David B.4
通讯作者Neale, David B.
来源期刊TREE GENETICS & GENOMES
ISSN1614-2942
EISSN1614-2950
出版年2016
卷号12期号:3
英文摘要

Millettia pinnata (formerly Pongamia pinnata) is a fast-growing leguminous tree indigenous to the Indian subcontinent, Southeast Asia, and Australia. This species has been introduced to subtropical and arid regions of Africa, India, the Philippines, Malaysia, Australia, and the USA for commercial growth. Exhibiting saline and drought tolerance, as well as nitrogen-fixing properties, M. pinnata has been used extensively for traditional medicine and agriculture and, more recently, for the production of a biofuel feedstock. The large size, high oil content, and fatty acid profile of the seeds are well suited for biofuel production. In this study, we characterized the leaf transcriptome that was assembled de novo from 72 seedlings pooled into eight libraries. Deep paired-end short-read sequencing was performed on individual libraries using the Illumina HiSeq 2000 platform. The Trinity-assembled transcriptome of 25,146 unique genes was annotated with a combination of open-source tools. Functional annotation was facilitated through sequence homology searches, Gene Ontology term assignment, and protein domain identification. A total of 11,873 genes were classified as full-length, and 22,603 sequences were functionally annotated. Predominate Gene Ontology biological process categories included phosphorylation, metabolic processes, and oxidation-reduction processes. Orthologous gene family analysis identified 19,640 families among the 11 sequenced plant species compared. A total of 4280 were conserved across all species, and 103 were unique to the M. pinnata leaf transcriptome. The unique M. pinnata gene families included transcripts with an array of functions including ubiquitin-like modifier proteins and BED zinc finger proteins with membership in pathways related to salt tolerance and disease resistance.


英文关键词Biofuel Leguminous tree Millettia pinnata Transcriptome
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000377392000022
WOS关键词PONGAMIA-PINNATA ; GENES ; EXPRESSION ; RESISTANCE ; PLANTS ; RNA ; L.
WOS类目Forestry ; Genetics & Heredity ; Horticulture
WOS研究方向Forestry ; Genetics & Heredity ; Agriculture
来源机构University of California, Davis
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/196696
作者单位1.Univ Connecticut, Dept Ecol & Evolutionary Biol, Storrs, CT USA;
2.TerViva, Oakland, CA USA;
3.Texas A&M Univ, Dept Ecosyst Sci & Management, College Stn, TX USA;
4.Univ Calif Davis, Dept Plant Sci, Davis, CA 95616 USA
推荐引用方式
GB/T 7714
Wegrzyn, Jill L.,Whalen, Jeanne,Kinlaw, Claire S.,et al. Transcriptomic profile of leaf tissue from the leguminous tree, Millettia pinnata[J]. University of California, Davis,2016,12(3).
APA Wegrzyn, Jill L..,Whalen, Jeanne.,Kinlaw, Claire S..,Harry, David E..,Puryear, Jeffrey.,...&Neale, David B..(2016).Transcriptomic profile of leaf tissue from the leguminous tree, Millettia pinnata.TREE GENETICS & GENOMES,12(3).
MLA Wegrzyn, Jill L.,et al."Transcriptomic profile of leaf tissue from the leguminous tree, Millettia pinnata".TREE GENETICS & GENOMES 12.3(2016).
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