| Literature DB >> 31881921 |
Xiangyu Long1, Heping Li2,3,4, Jianghua Yang2, Lusheng Xin2,3, Yongjun Fang2, Bin He2,3, Debao Huang2,3, Chaorong Tang5,6.
Abstract
BACKGROUND: Sucrose (Suc), as the precursor molecule for rubber biosynthesis in Hevea brasiliensis, is transported via phloem-mediated long-distance transport from leaves to laticifers in trunk bark, where latex (cytoplasm of laticifers) is tapped for rubber. In our previous report, six Suc transporter (SUT) genes have been cloned in Hevea tree, among which HbSUT3 is verified to play an active role in Suc loading to the laticifers. In this study, another latex-abundant SUT isoform, HbSUT5, with expressions only inferior to HbSUT3 was characterized especially for its roles in latex production.Entities:
Keywords: Latex production; Laticifer; Rubber tree; Sucrose transporter; Vacuole
Mesh:
Substances:
Year: 2019 PMID: 31881921 PMCID: PMC6935173 DOI: 10.1186/s12870-019-2209-9
Source DB: PubMed Journal: BMC Plant Biol ISSN: 1471-2229 Impact factor: 4.215
Fig. 1HbSUT5 as a single or low copy vacuolar SUT gene. a. Phylogenetic tree of HbSUT5 and some selected plant sucrose transporters. Full length amino acid sequences of SUTs were exploited to create the phylogenetic tree by MEGA4. The GenBank accession numbers for the peptide sequences of other SUTs are At1g71880 (AtSUC1), At1g22710 (AtSUC2), At2g02860 (AtSUC3), At1g09960 (AtSUC4), At1g71890 (AtSUC5), At5g43610 (AtSUC6), At1g66570 (AtSUC7), At2g14670 (AtSUC8), At5g06170 (AtSUC9), BAA24071 (OsSUT1), BAC67163 (OsSUT2), BAB68368 (OsSUT3), BAC67164 (OsSUT4), BAC67165 (OsSUT5), ADW94615 (PtaSUT1), ADW94616 (PtaSUT3), ADW94617 (PtaSUT4), ADW94618 (PtaSUT5), ADW94619 (PtaSUT6), CAD61275 (LjSUT4), CAB75881 (HvSUT2), ABJ51933 (HbSUT1), ABJ51934 (HbSUT2A), ABJ51932 (HbSUT2B), ABK60190 (HbSUT3), ABK60191(HbSUT4) and ABK60189 (HbSUT5). b-e. Localization of HbSUT5-GFP and OsTIP1;1-RFP in rice protoplasts (Scale bar = 5 μm). b. Bright field image; c. Transient expression of GFP; d. Transient expression of RFP; e. Merged GFP and RFP image. f. DNA gel blot analysis of the HbSUT5 under high stringency. Genomic DNA from Hevea was digested with restriction analysis, resolved on a 0.8% agarose gel (20 μg/lane), and blotted to Hybond N+, and hybridized with a 32P-labled 528-bp-long HbSUT5 cDNA fragment
Fig. 2Characterization of the sucrose transport function of HbSUT5 in baker’s yeast Saccharomyces cerevisiae SEY6210. a. Time course of sucrose uptake; b. Effects of pH on sucrose uptake; c. Concentration-dependent uptake; d. An Eadie-Hofstee plot representing the mean rate of uptake as a function of sucrose concentration
Effect of competing sugars and inhibitors on sucrose uptake by HbSUT5 expressed in SEY6210 yeast
| Treatment | % Activity* |
|---|---|
| Competing sugars | |
| Control | 100 |
| 10 mM Galactose | 101 ± 7.5 |
| 10 mM Frucose | 121 ± 9.5a |
| 10 mM Inositol | 130 ± 15.9a |
| 10 mM Lactose | 132 ± 6.2a |
| 10 mM Sucrose | 42 ± 2.6A |
| 10 mM Maltose | 44 ± 3.4A |
| 10 mM Raffinose | 110 ± 7.0 |
| Inhibitors | |
| Control | 100 |
| 50 μM CCCP | 86 ± 5.5 a |
| 50 μM NEM | 89 ± 6.9 a |
*Analysis of variance (ANOVA) by SAS 6.12, where P < 0.01 was marked by A, and P < 0.05 by a
Fig. 3Expressional characterization of HbSUT5. a, b. Expression of HbSUTs in different Hevea tissues. a. Expression comparison of different HbSUTs in bark was measured by reverse Northern blot analysis; The relative transcript levels were obtained by scanning the intensity of reverse Northern blots. b. Tissue-specific expression patterns of HbSUT5 were measured by QPCR. c, d. Expression of HbSUT5 in response to tapping and wounding treatments by QPCR. Effect of tapping (1st to 8th) (c) and wounding (0 to 24 h) (d) treatments on HbSUT5 expression was conducted in mature virgin rubber trees. (Statistical analysis: significant difference, P < 0.01, marked by different lowercase)
Fig. 4HbSUT5 influences the sucrose content. a. The expression of HbSUT5 was examined in the latex and bark tissues after 1% ethephon bark treatment of regularly tapped rubber trees. b. The sucrose content was measured between cytosol (C-serum) and lutoid (B-serum) at 24 h after 1% ethephon treatment. (Statistical analysis: significant difference, P < 0.01, marked by different lowercase)
Fig. 5Characterization of the HbSUT5 promoter. a. Diagram of the promoter sequences of the HbSUT5. The promoter of HbSUT5 was analyzed for putative cis-acting sequences using the PLACE software (http://www.dna.affrc.go.jp/PLACE/). The putative transcriptional start site was highlighted by “C+ 1”. b. Transient expression analysis of the putative HbSUT5 promoter in tobacco leaf protoplast. Fluorescent microscopy of GFP expression driven by the putative HbSUT5 promoter (pSUT5-GFP) (i to iii) compared with the control GFP expression (pXGFP-P) (iv to vi) in tobacco leaf protoplast