Loading…

RNA-seq Analysis of Cold and Drought Responsive Transcriptomes of Zea mays ssp. mexicana L

The annual ssp. L. is a member of teosinte, a wild relative of the spp. L. This subspecies has strong growth and regeneration ability, high tiller numbers, high protein and lysine content as well as resistance to many fungal diseases, and it can be effectively used in maize improvement. In this stud...

Full description

Saved in:
Bibliographic Details
Published in:Frontiers in plant science 2017-02, Vol.8, p.136-136
Main Authors: Lu, Xiang, Zhou, Xuan, Cao, Yu, Zhou, Meixue, McNeil, David, Liang, Shan, Yang, Chengwei
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Items that cite this one
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:The annual ssp. L. is a member of teosinte, a wild relative of the spp. L. This subspecies has strong growth and regeneration ability, high tiller numbers, high protein and lysine content as well as resistance to many fungal diseases, and it can be effectively used in maize improvement. In this study, we reported a ssp. L. transcriptome by merging data from untreated control (CK), cold (4°C) and drought (PEG2000, 20%) treated plant samples. A total of 251,145 transcripts (N50 = 1,269 bp) and 184,280 unigenes (N50 = 923 bp) were predicted, which code for homologs of near 47% of the published maize proteome. Under cold conditions, 2,232 and 817 genes were up-regulated and down-regulated, respectively, while fewer genes were up-regulated (532) and down-regulated (82) under drought stress, indicating that ssp. L. is more sensitive to the applied cold rather than to the applied drought stresses. Functional enrichment analyses identified many common or specific biological processes and gene sets in response to drought and cold stresses. The ABA dependent pathway, trehalose synthetic pathway and the ICE1-CBF pathway were up-regulated by both stresses. GA associated genes have been shown to differentially regulate the responses to cold in close subspecies in . These findings and the identified functional genes can provide useful clues for improving abiotic stress tolerance of maize.
ISSN:1664-462X
1664-462X
DOI:10.3389/fpls.2017.00136