| Literature DB >> 19534823 |
Kanako Kawaura1, Keiichi Mochida, Akiko Enju, Yasushi Totoki, Atsushi Toyoda, Yoshiyuki Sakaki, Chikatoshi Kai, Jun Kawai, Yoshihide Hayashizaki, Motoaki Seki, Kazuo Shinozaki, Yasunari Ogihara.
Abstract
BACKGROUND: Wheat is an allopolyploid plant that harbors a huge, complex genome. Therefore, accumulation of expressed sequence tags (ESTs) for wheat is becoming particularly important for functional genomics and molecular breeding. We prepared a comprehensive collection of ESTs from the various tissues that develop during the wheat life cycle and from tissues subjected to stress. We also examined their expression profiles in silico. As full-length cDNAs are indispensable to certify the collected ESTs and annotate the genes in the wheat genome, we performed a systematic survey and sequencing of the full-length cDNA clones. This sequence information is a valuable genetic resource for functional genomics and will enable carrying out comparative genomics in cereals.Entities:
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Year: 2009 PMID: 19534823 PMCID: PMC2703658 DOI: 10.1186/1471-2164-10-271
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Wheat tissues used for construction of the full-length cDNA library
| No. cDNA library | Tissue | Stage or treatment |
| 1 | Young spikelet | Early flowering stage |
| Young spikelet | Late flowering stage | |
| Young spikelet | Booting stage | |
| Whole grains | 5 DPA* | |
| Whole grains | 10 DPA | |
| Whole grains | 15 DPA | |
| Whole grains | 20 DPA | |
| Whole grains | 30 DPA | |
| Whole grains | 50 DPA | |
| Spike | Heading date | |
| Spike | Flowering date | |
| Seedling | Heat shocked** | |
| Seedling | Salt-stressed*** | |
| Seedling | Dehydrated+ | |
| Seedling | - | |
| Seedling | Vernalized++ | |
| Whole plant | Booting stage |
*DPA: Days post-anthesis.
**Wheat seedlings were grown for 14 days after germination. 14-day-old wheat seedlings were incubated at 42°C for 1 h before RNA extraction.
***14-day-old wheat seedlings were treated with 150 mM NaCl solution for 12 h.
+14-day-old wheat seedlings were dehydrated on filter paper for 2 days.
++14-day-old wheat seedlings were grown at 4°C for 16 days.
Figure 1Selection and sequence determination of cDNA clones from full-length cDNA library. A total of 19,968 full-length cDNA clones of common wheat were sequenced from both ends. End sequences were assembled with the Phrap method. The assembled sequences were then clustered with the blastn method. These contigs might correspond to homoeologues. Subsequently, these contigs were grouped into independent gene clusters with the blastn method. Finally, the longest sequences from each gene cluster were selected for complete sequencing.
Figure 2Gene ontology of full-length wheat cDNAs. Functions of the 6,162 full-length wheat cDNAs were estimated using gene ontology [10]. Distribution patterns of genes classified into each category were compared for wheat and rice (A), and for wheat and Arabidopsis (B). FL, full-length.
Wheat tissues and treatments selected to evaluate expression patterns of full-length cDNAs using ESTs homologous to their gene counterparts
| Abbreviation for tissue or treatment | Tissue or treatment with which EST analysis was carried out |
| r | Root at 14 days old |
| dl | Crown of 14-day-old seedling |
| yf | Spikelet at early flowering stage (3–5 mm) |
| yd | Spikelet at late flowering stage (5–10 mm) |
| o | Spike at meiosis (booting stage) |
| pc | Anther at meiosis |
| h | Spike at heading date |
| oh | Pistil at heading date |
| f | Spike at flowering date |
| ok | Developing seed 5 DPA* |
| e | Developing seed 10 DPA |
| dp | Developing seed 20 DPA |
| sl | Developing seed 30 DPA |
| em | Dormant seed after water absorption |
| ec | Dormant seed with cold treatment after water absorption |
| ei | Dormant seed with water absorption after wounding |
| rd | Root of desiccated 14-day-old seedling |
| sd | Shoot of desiccated 14-day-old seedling |
| sc | 14-day-old seedling with 24 h cold treatment at 4°C at day 13 |
| v3n | 14-day-old seedling grown for 3 days at 4°C at day 11 |
| v16n | 14-day-old seedling grown for 16 days at 4°C |
| kv | 14-day-old seedling grown under continuous light after 24 h cold treatment at 4°C |
| kp | 14-day-old seedling grown under continuous light |
| va | 14-day-old seedling treated with abscisic acid |
| vh | 14-day-old seedling treated with heat shock |
| vd | Shoot grown with desiccation |
| vs | Liquid cultured tissue |
| cs | Callus |
*DPA: Days post-anthesis.
Figure 3Expression profiles of the 3,487 full-length wheat cDNA genes in 28 tissues or treatments and their . Relative gene expression is indicated by color intensity, which depends upon the number of EST constituents. The contigs orthologous to the 3,487 full-length cDNAs were selected from the wheat cDNA libraries constructed by the 28 tissues or treatments. Similarities of gene expression patterns among cDNAs and tissues or treatments were estimated using Pearson's correlation coefficient. Hierarchical clustering [25] was applied in order to compare EST expression profiles among the 28 tissues and treatments. Color scale ranges from 0 members to 414 members in EST contstituents. The calculated Ka/Ks values for the wheat and rice homologues are plotted above the expression profile for each gene. For abbreviations of tissues and treatments, see Table 2.
Figure 4Mean . Mean Ka/Ks values were calculated for each of 28 wheat tissues formed during the wheat life cycle (A) or subjected to stress treatment (B). For abbreviations of tissues and treatments, see Table 2. The blue horizontal line indicates the overall average of the mean Ka/Ks values from tissues.
Tissues and genes that showed higher variation as a result of wheat and rice diversification
| Tissue or treatment | No. of genes* | Function controlled by gene |
| Root | 16 (6) | Signal response related to environmental stress (2 genes) |
| Redox in response to stimuli (2 genes) | ||
| Transcription factors regulated by stress (2 genes) | ||
| Spike at booting stage | 12 (4) | Lipid-related proteins modulated in developing seeds (2 genes) |
| Redox in photosynthesis and respiration (2 genes) | ||
| Spike at flowering | 15 (11) | Stress related (4 genes) |
| Nucleic acid binding protein (2 genes) | ||
| Signal transduction (1 gene) | ||
| Epigenetic regulation (1 gene) | ||
| Tissue or stage specific proteins (2 genes) | ||
| Proteinase inhibitor (1 gene) | ||
| Seed at 30 DPA** | 16 (10) | Plant stress defense proteins (6 genes) |
| Stress-response proteins expressed during seed maturation (3 genes) | ||
| Tissue or stage specific protein (1 gene) | ||
| Seedling with cold treatment | 9 (4) | Stress related (2 genes) |
| Polysaccharide-related protein (1 gene) | ||
| Lipid-related protein (1 gene) | ||
| Desiccated seedling | 9 (4) | Chaperon (1 gene) |
| Stress related (1 gene) | ||
| Senescence related (1 gene) | ||
| Photosystem II related (1 gene) | ||
| Ubiquitous*** | 25 (25) | Ubiquitin, tubulin subunits, proteasome subunits, histones, translation-related proteins, signal transduction-related protein ATPase |
*Number of genes showing Ka/Ks ratio higher than 0.5 are listed. In the case of ubiquitous genes, only those with a ratio less than 0.05 are listed. The number of genes annotated are given in parentheses.
**DPA: Days post-anthesis.
*** Ubiquitous genes are also listed for reference.