| Literature DB >> 12854976 |
Abraham Anderson1, Matthew Hudson, Wenqiong Chen, Tong Zhu.
Abstract
BACKGROUND: In order to identify rice genes involved in nutrient partitioning, microarray experiments have been done to quantify genomic scale gene expression. Genes involved in nutrient partitioning, specifically grain filling, will be used to identify other co-regulated genes, and DNA binding proteins. Proper identification of the initial set of bait genes used for further investigation is critical. Hierarchical clustering is useful for grouping genes with similar expression profiles, but decreases in utility as data complexity and systematic noise increases. Also, its rigid classification of genes is not consistent with our belief that some genes exhibit multifaceted, context dependent regulation.Entities:
Mesh:
Year: 2003 PMID: 12854976 PMCID: PMC169189 DOI: 10.1186/1471-2164-4-26
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Figure 1First five singular vectors vs. developmental (lines) and histological samples (bars). Sample abbreviations: p_1–3 (panicle 1–3 cm), ..., p_em (panicle during panicle emergence), g_0 (grain at zero days postanthesis), ..., g_sd (grain, soft dough), g_hd (grain, hard dough), endosp (endosperm), & coat_ms (seed coat, milk stage).
Figure 2Singular values ranked by the relative variance they account for, and entropy of this distribution. Inset focuses on singular values of rank 3 and lower.
Figure 3Expression profiles that have a grain-filling pattern are grouped together in this ordering based on the influence of the second right singular vector. Expression levels in Embryo samples are uncorrelated with this ordering.
List of Probe Set IDs for newly identified genes (Class C) and unresolved genes (Class B)
| a) Class C | Description | b) Class B | Description |
| OS006543_at | YNT1_ANASP Q05067 ANABAENA SP. (STRAIN PCC 7120). HYPOTHETICAL ABC TRANSPORTER ATP-BINDING PROTEIN IN NTCA/BIFA 3 REGION(ORF1) (FRAGMENT). | OS017582.1_r_at | gi|7267708| sucrose-phosphate synthase-like protein [Arabidopsis thaliana] |
| OS004712.1_at | gi|4467848| ADP-glucose pyrophosphorylase large subunit [Hordeum vulgare] | OS019628.1_at | gi|7576210| palmitoyl-protein thioesterase precursor-like [Arabidopsis thaliana] |
| OS007703.1_at | gi|4467144| putative phosphatidylinositol synthase [Arabidopsis thaliana] | OS000739_at | gi|5734442| hexose transporter [Lycopersicon esculentum] |
| OS017116_at | gi|7108597|AF129478_1 K+ transporter HAK5 [Arabidopsis thaliana] | OS012020_i_at | ABCX_PORPU P51241 PORPHYRA PURPUREA. PROBABLE ATP-DEPENDENT TRANSPORTER YCF16. |
| OS000501_at | gi|322850|PC1257 alpha-amylase (EC 3.2.1.1) (clone alphaAmy8-C) – rice (fragment) | OS001622.1_r_at | gi|169767| alpha-amylase |
| OS022287_at | PA2L_VIPAA P17935 VIPERA AMMODYTES AMMODYTES (WESTERN SAND VIPER). PHOSPHOLIPASE A2 HOMOLOG, AMMODYTIN L PRECURSOR. | OS020548.1_at | AMYG_NEUCR P14804 NEUROSPORA CRASSA. GLUCOAMYLASE PRECURSOR |
| OS007631.1_at | PSS_METJA Q58609 METHANOCOCCUS JANNASCHII. CDP-DIACYLGLYCEROL – SERINE O-PHOSPHATIDYLTRANSFERASE (EC 2.7.8.8) (PHOSPHATIDYLSERINE SYNTHASE). | OS006763.1_at | gb|Z95637 acyl-CoA:1-acylglycerol-3-phosphate acyltransferase from Brassica napus. [Arabidopsis thaliana] |
| OS011263_s_at | gi|2129657|S71286 oleosin, 20 K – Arabidopsis thaliana | OS013884.1_i_at | PTSN_ECOLI P31222 ESCHERICHIA COLI. NITROGEN REGULATORY IIA PROTEIN |
| OS016830.1_at | gi|7939571| phospholipase D [Arabidopsis thaliana] | OS006772.1_i_at | gi|2981620| mutated 3-ketoacyl-CoA thiolase [Arabidopsis thaliana] |
| OS018554_at | KDGL_DROME Q01583 DROSOPHILA MELANOGASTER (FRUIT FLY). DIACYLGLYCEROL KINASE (EC 2.7.1.107) (DIGLYCERIDE KINASE) (DGK)(DAG KINASE). | OS005686_at | YDEX_ECOLI P77257 ESCHERICHIA COLI. HYPOTHETICAL ABC TRANSPORTER ATP-BINDING PROTEIN YDEX. |
| OS022506_at | PTFA_MYCGE P47308 MYCOPLASMA GENITALIUM. PTS SYSTEM, FRUCTOSE-SPECIFIC IIABC COMPONENT (EIIABC-FRU) (FRUCTOSE-PERMEASE IIABC COMPONENT) (PHOSPHOTRANSFERASE ENZYME II, ABCCOMPONENT) (EC 2.7.1.69) (EII-FRU / EIII-FRU). | OS008739.1_at | gi|4587543|AC006577_10 Belongs to the PF|00657 Lipase/Acylhydrolase with GDSL-motif family. |
| OS005330_at | GPI2_YEAST P46961 P48014 SACCHAROMYCES CEREVISIAE (BAKER S YEAST). N-ACETYLGLUCOSAMINYL-PHOSPHATIDYLINOSITOL BIOSYNTHETIC PROTEIN GPI2. | OS022874_at | TRPC_AZOBR P26938 AZOSPIRILLUM BRASILENSE. INDOLE-3-GLYCEROL PHOSPHATE SYNTHASE |
| OS013194_at | gi|2285885| sulfate transporter [Arabidopsis thaliana] | OS021397.1_i_at | FCGN_HUMAN P55899 HOMO SAPIENS (HUMAN). IGG RECEPTOR FCRN LARGE SUBUNIT P51 PRECURSOR |
| OS020610_at | AMHX_BACSU P54983 BACILLUS SUBTILIS. AMIDOHYDROLASE AMHX (EC 3.5.1.-) (AMINOACYLASE). | ||
| OS021689.1_at | KICH_YEAST P20485 SACCHAROMYCES CEREVISIAE (BAKER S YEAST). CHOLINE KINASE (EC 2.7.1.32). | ||
| OS019294_at | YKG8_CAEEL P46558 CAENORHABDITIS ELEGANS. HYPOTHETICAL CHOLINE KINASE LIKE B0285.8 IN CHROMOSOME III. | ||
| OS006931.1_at | gi|735880| geranylgeranyl pyrophosphate synthase-related protein | ||
| OS017593.1_at | gi|2129660|S69197 oleoyl-[acyl-carrier-protein] hydrolase (EC 3.1.2.14) (clone TE 1–7) – Arabidopsis thaliana | ||
| OS023388_r_at | YDEZ_ECOLI P77651 ESCHERICHIA COLI. HYPOTHETICAL ABC TRANSPORTER PERMEASE PROTEIN YDEZ. | ||
| OS014177_at | YCKJ_BACSU P42200 BACILLUS SUBTILIS. PROBABLE AMINO-ACID ABC TRANSPORTER PERMEASE PROTEIN. | ||
| OS022558_i_at | R104_SACPA Q92378 SACCHAROMYCES PARADOXUS (YEAST). MEIOTIC RECOMBINATION PROTEIN REC104. | ||
| OS012669.1_at | gi|3044212| acyl-CoA oxidase [Arabidopsis thaliana] | ||
| OS013723_at | GLGC_BACCL P30522 BACILLUS CALDOLYTICUS. GLUCOSE-1-PHOSPHATE ADENYLYLTRANSFERASE (EC 2.7.7.27) (ADP-GLUCOSESYNTHASE) (ADP-GLUCOSE PYROPHOSPHORYLASE) (FRAGMENT). | ||
| OS022194_at | NEPU_THEVU Q08751 THERMOACTINOMYCES VULGARIS. NEOPULLULANASE (EC 3.2.1.135) (ALPHA-AMYLASE II). | ||
| OS009538_at | gi|4490321| nitrate transporter [Arabidopsis thaliana] | ||
| OS014390_at | gi|9294650| lipase/acylhydrolase; myrosinase-associated protein [Arabidopsis thaliana] | ||
| OS003885_at | gi|4115931| contains similarity to Guillardia theta ABC transporter (GB:AF041468) [Arabidopsis thaliana] | ||
| OS009777.1_at | gi|8570057| ESTs AU056822(S20908), C26441(C12328), C28477(C61243) correspond to a region of the predicted gene.~Arabidopsis thaliana putative acyl-coA dehydrogenase (AF049236) [Oryza sativa] |
Figure 4Plots of average, transformed expression levels for genes which both hierarchical clustering and SVD agreed were grain filling (Class A), genes not selected by the SVD method (Class B), and novel genes selected via SVD analysis (Class C). Error bars are shown for one standard deviation.
Figure 5Genes, identified in Zhu et al. as potential grain filling genes, grouped by node from their hierarchical clustering. It shows the cluster with genes up-regulated during the grain filling process. The detailed description of the genes is listed in Table 2 (Additional file 1).
Figure 6Potential grain filling genes grouped by node from their hierarchical clustering. It shows three clusters with genes up-regulated in specific grain samples. The detailed description of the genes is listed in Table 2 (Additional file 1).
Figure 7Average un-normalized gene expression levels for novel grain filling genes (Class C), misclassified genes (Class B), and agreed-upon grain filling genes (Class A). Samples are grouped by tissue type: root, leaf, arial, and stem; developmental series in panicle and grain; general grain phases; and seed organ.
Figure 8Average normalized expression levels during vegetative growth samples for the misclassified set of genes. A dark responsive cis-element is present in most of their promoters. Root and etiolated samples such as stem and leaf senescence are elevated.