| Literature DB >> 28209137 |
Teresa Donze-Reiner1, Nathan A Palmer2, Erin D Scully2,3, Travis J Prochaska4,5, Kyle G Koch4, Tiffany Heng-Moss4, Jeffrey D Bradshaw4, Paul Twigg6, Keenan Amundsen7, Scott E Sattler2, Gautam Sarath8.
Abstract
BACKGROUND: Aphid infestation ofEntities:
Keywords: Aphids; Chlorogenic acid; GB; Metabolites; Network; Pipecolic acid; Plant defense; RNA-Seq; ROS; Switchgrass
Mesh:
Substances:
Year: 2017 PMID: 28209137 PMCID: PMC5314684 DOI: 10.1186/s12870-017-0998-2
Source DB: PubMed Journal: BMC Plant Biol ISSN: 1471-2229 Impact factor: 4.215
Aphid numbers, damage ratings and leaf stage of samples collected throughout the time course. (n = 4 samples per treatment)
| Sample | Total Aphid Number | Damage Rating | Leaf Stage |
|---|---|---|---|
| Day 5 Infested | 25 ± 16.8a | 1.4 ± 0.4 | L3 |
| Day 5 Control | 0 | 1 | L3 |
| Day 10 Infested | 33.8 ± 13.8a | 1.9 ± 0.2a | L4 |
| Day 10 Control | 0 | 1 | L4 |
| Day 15 Infested | 57 ± 27.1a | 2.4 ± 0.2a | L4 |
| Day 15 Control | 0 | 1 | L4 |
Means and standard errors are shown; samples with letter “a” are statistically different (p-value ≤ 0.05) from the control sample at that specific time point
Fig. 1Overview of transcriptomic data. a PCA of transcriptomic data, Blue symbols, controls; Orange symbols, GB-infested plants; squares 5-DAI; circles, 10-DAI; and triangles, 15-DAI harvest dates. b Heatmap of global changes in differentially expressed genes based on z-scores where cyan is low expression and magenta is high expression. Left panel controls, and right panel GB-infested plants. c Venn diagram of genes induced by infestation relative to control of same time point. d Venn diagram of genes suppressed by GB infestation relative to control of same time point. Numbers within each region indicate common and unique genes within each sector
Fig. 7Real-time qPCR validation of gene expression. Expression levels of select genes up/down regulated in the RNA-Seq datasets were analyzed by real-time qPCR. The input RNA used for RNA-Seq studies were used as the source material for qPCR analyses. Gene annotation is provided in the first column and separated by functional classes: metabolism, redox, defense and transcription factors (TFs). The second column lists the correlation coefficients for individual gene expression between RNA-Seq and qPCR analyses. The Log2-fold change (infested/control) for genes on 5 (cyan), 10 (yellow), and 15 DAI (magenta) respectively are shown. Gene ids, primers, and amplicon sizes are provided in Additional file 2: Table S2
Fig. 2Genes differentially expressed in control and GB-infested (infested) plants associated with primary plant metabolism. Blue bars denote genes upregulated in control plants and orange bars denote genes upregulated in infested plants. In all cases, differential expression of genes is based on z-scores where cyan is low expression and magenta is high expression (a) Chlorophyll biosynthesis and degradation. b Photosynthesis. c Calvin Cycle. d Sucrose metabolism. e Starch metabolism. f Nitrogen metabolism. Gene abbreviations, identities, and normalized transcript counts are provided in Additional file 4: Data S2
Fig. 3Genes differentially expressed in control and GB-infested (infested) plants associated with plant redox metabolism. a RBOHs, Catalases, and SODs. b Ascorbate peroxidases, and class III secreted peroxidases. c Laccases. d GSTs. Other details as described for Fig. 2
Fig. 4Genes differentially expressed in control and GB-infested (infested) plants associated with three phytohormone metabolic pathways. a Salicylic acid metabolism. b Jasmonic acid metabolism. c Ethylene metabolism. Other details as described for Fig. 2
Fig. 5Genes differentially expressed in control and GB-infested (infested) plants associated with plant defense. a PR genes. b Chitin-related genes. c Protease Inhibitors. d NB-LRRs. Other details as described for Fig. 2
Fig. 6Defense-related metabolite levels and transcript abundances for associated biosynthetic pathways in control and GB-infested (infested) plants. a Differential metabolite levels in four biological replicates (Rep1-4) from control and infested switchgrass plants 10-DAI analyzed by GCMS. b Specific metabolite levels of pipecolic acid, trehalose and chlorogenic acid in control and GB-infested plants at 10-DAI, validated using authentic standards. c Metabolic pathway for biosynthesis of pipecolic acid (ΔpipC), adapted from Zeier, 2013, left panel, and transcript abundances (right panel). d Transcript abundances of genes associated with trehalose metabolism (left panel) and chlorogenic acid (right panel). Other details as described for Fig. 2
Fig. 8Gene co-expression networks and module assignment for a combined flag leaf development [34], and current RNA-Seq datasets. a 23 modules were detected between 17,637 genes (nodes). The top half of the network (yellow circle) consists of genes primarily expressed in flag leaves (early development on the right, senescence onset on the left) white arrow. Bottom white circle of the network consists of genes primarily expressed in seedlings used in the current study (GB-induced host genes in the lower-left; magenta circle). Module 2 (M2, orange dots) contained the network of co-expressed genes associated with GB infestation. Module 7, (M7, yellow dots) contained genes co-expressed in GB-infested plants and during senescence of flag leaves. Module 18 (M18, green dots) consisted of genes co-expressed in expanding flag leaves and during the latter stages of GB-infestation. Module profiles within this network are shown in supporting Additional file 6: Figure S2. b SAGs associated with different modules; dots color coded as in Panel a. c WRKY transcription factors; dots color coded as in Panel a. d MYB transcription factors; dots color coded as in Panel a. Gene abbreviations, identities, and normalized transcript counts are provided in Additional file 4: Data S2
Fig. 9Upland tetraploid switchgrass responses to GBs are robust and include a plethora of pathways. Left panel, GBs feeding on switchgrass leaves. Center panel summarizes transcriptional and some metabolite evidence for predicted changes occurring in GB-infested plants within the time course of the experiment. Light blue bar and box, changes occurring within 5-DAI; Light ochre bar and boxes, changes occurring within 10-DAI; Yellow box highlights some of the key transcription families that are part of the DEGs. Light green bar and box, changes in transcriptomes that support recovery from GB-induced stress and recovery occurring by 15-DAI. Right panel, heatmap of DEGs associated with each harvest date. Colors of bars are as described for center panel. Other details as described for Fig. 2