| Literature DB >> 27465692 |
Monika Rakoczy-Trojanowska1,2, Wacław Orczyk3, Paweł Krajewski4, Jan Bocianowski5, Anna Stochmal6, Mariusz Kowalczyk6.
Abstract
Hydroxamates (HX) are major secondary metabolites synthesized by rye and are responsible for some of the unique properties of this cereal, including good tolerance of biotic and abiotic stresses and allelopathy. Recently, five genes encoding enzymes taking part in HX biosynthesis have been sequenced and characterized, which was the starting point to undertake the present study. Association analysis of the content of six HX-HBOA (2-hydroxy-1,4-benzoxazin-3-one), GDIBOA (2,4-dihydroxy-1,4-benzoxazin-3(4H)-one glucoside), DIBOA (2,4-dihydroxy-1,4-benzoxazin-3(4H)-one), GDIMBOA (2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3(4H)-one glucoside), DIMBOA (2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3(4H)-one) and MBOA (6-methoxy-benzoxazolin-2(3H)-one) in the above-ground parts of plants and roots was performed on a population consisting of 102 and 121 diverse inbred lines, in 2013 and 2014, respectively. Altogether, 48 single nucleotide polymorphisms (SNPs) were found to be associated with the content of at least one HX: 20 SNPs were associated with HX synthesized in the above-ground parts of rye plants (AG-SNP), and 28 were associated with HX synthesized in the roots (R-SNP). The highest number of SNPs was present in genes ScBx1 (9) and ScBx5 (11). The majority of SNPs were affected by environmental factors, except for two: ScBx4_1702 associated with GDIBOA and MBOA contents, and ScBx5_1105 associated with HBOA content in roots.Entities:
Keywords: Candidate gene association mapping; Hydroxamic acids; ScBx genes; Single nucleotide polymorphism
Mesh:
Substances:
Year: 2016 PMID: 27465692 PMCID: PMC5243912 DOI: 10.1007/s13353-016-0356-3
Source DB: PubMed Journal: J Appl Genet ISSN: 1234-1983 Impact factor: 3.240
Parameters of mass spectrometry analysis
| Compound | RT [min] |
|
| Collision energy [eV] | Cone voltage [V] |
|---|---|---|---|---|---|
| HBOA | 2.10 | 164 | 108 | 15 | 30 |
| DIBOA | 2.30 | 180 | 134 | 6 | 20 |
| GDIBOA | 2.80 | 342 | 162 | 15 | 25 |
| DIMBOA | 3.70 | 210 | 149 | 6 | 15 |
| GDIMBOA | 4.60 | 372 | 149 | 15 | 35 |
| MBOA | 5.20 | 164 | 149 | 15 | 20 |
ScBx gene sequences included in SNP identification
| Gene | Total sequence length including 3′-UTR and promoter [bp] | 3′-UTR length [bp] | Promoter length [bp] |
|---|---|---|---|
|
| 4935 | 317 | 3000 |
|
| 2725 | 75 | 999 |
|
| 3358 | 36 | 1495 |
|
| 3066 | 166 | 1041 |
|
| 3269 | 0 | 950 |
Characteristics of the content of HX in AG and R of rye plants
| Plant part | HX | Number of DILs | F-statistic for year | Variance components for random effects (std. error)a) | Mean (std. error) [μg/g d.w.] | |||
|---|---|---|---|---|---|---|---|---|
| 2013 | 2014 | Line | Line x Year | 2013 | 2014 | |||
| AG | HBOA | 102 | 121 | 28.29*** | 0.021 (0.010) | 0.048 (0.010) | 1.01 (0.03) | 1.20 (0.02) |
| GDIBOA | 101 | 121 | 322.01*** | 0.055 (0.014) | 0.049 (0.010) | 1.65 (0.03) | 2.28 (0.03) | |
| DIBOA | 102 | 120 | 6.09* | 0 (-) | 0.030 (0.005) | 2.77 (0.02) | 2.82 (0.01) | |
| GDIMBOA | 102 | 121 | 8.98** | 0.042 (0.020) | 0.109 (0.021) | 0.41 (0.05) | 0.57 (0.03) | |
| DIMBOA | 102 | 121 | 0.71 | 0 (-) | 0.028 (0.005) | 0.05 (0.02) | 0.07 (0.01) | |
| MBOA | 102 | 121 | 60.99*** | 0 (-) | 0.037 (0.006) | 0.01 (0.01) | 0.21 (0.02) | |
| R | HBOA | 102 | 120 | 0.35 | 0.055 (0.031) | 0.183 (0.032) | 0.79 (0.07) | 0.81 (0.02) |
| GDIBOA | 102 | 120 | 12.13*** | 0.082 (0.032) | 0.184 (0.032) | 1.33 (0.06) | 1.57 (0.04) | |
| DIBOA | 102 | 121 | 109.6*** | 0.309 (0.069) | 0.264 (0.050) | 1.80 (0.09) | 1.31 (0.06) | |
| GDIMBOA | 102 | 121 | 1.89 | 0.099 (0.020) | 0.073 (0.014) | 2.49 (0.05) | 2.45 (0.04) | |
| DIMBOA | 102 | 121 | 14.43*** | 0.136 (0.055) | 0.317 (0.055) | 1.46 (0.08) | 1.11 (0.05) | |
| MBOA | 102 | 121 | 4.29* | 0.134 (0.029) | 0.105 (0.020) | 2.02 (0.06) | 1.90 (0.04) | |
AG – above-ground parts; R – roots
a) Values of 0 put in place of negative estimates of variance components
Fig. 1Correlations of HX in above-ground parts (AG) and in roots (R), within years (P – 2013, Q - 2014) and between years (PQ)
Markers common for the content of HX in above-ground parts (AG) and roots (R) associated with the content of one or more HX
| Marker ID | Plant part | Association with HX | 2013 | 2014 | ||
|---|---|---|---|---|---|---|
| S | E | S | E | |||
| ScBx5_70 | AG | DIMBOA | 3.51 | -0.07 | ||
| R | 1.42 | -0.15 | ||||
| ScBx5_219 | AG | DIMBOA | 3.74 | -0.07 | ||
| R | 2.06 | -0.18 | ||||
| ScBx5_270 | AG | DIMBOA | 2.92 | 0.08 | ||
| R | 3.15 | 0.38 | ||||
| ScBx5_359 | AG | DIMBOA | 3.43 | -0.07 | ||
| R | 1.83 | -0.17 | ||||
| ScBx5_661 | AG | GDIBOA | 1.93 | 0.09 | ||
| R | 1.30 | 0.16 | ||||
| ScBx5_755 | AG | DIMBOA | 1.68 | 0.06 | ||
| R | 1.70 | 0.26 | ||||
| ScBx5_1105 | AG | DIMBOA | 1.38 | -0.05 | ||
| R | 1.33 | -0.15 | ||||
S – -log10(P-value) statistics
E – allelic effect
Impact of SNPs in ScBx gene coding sequences on amino acid substitution
| Marker ID | SNP | SNP position | Codone change | AA substitution |
|---|---|---|---|---|
| ScBx1_4515 | T/C | 7th Ex | TGG/CGG | Y/R |
| ScBx2_1780 | A/G | 1st Ex | AAG/AGG | K/R |
| ScBx3_2137 | C/T | 2nd Ex | TGC/TGT | - |
|
| A/G | 2nd Ex | ATG/GTG | M/V |
| ScBx4_1703 | T/C | |||
|
| G/T | 1st Ex | CCG/CCT | - |
Bold fonts – markers associated with HX content independently of an environment
Summary of the association analysis of HX content in rye plants
| No. of SNPs significantly associated with HX content/ markers common for HX content in AG and R (independent of environment) | No. of SNPs significantly associated with HX content in each | No. of SNPs significantly associated with HX content in AG/ unique markers (independent of environment) | No. of SNPs significantly associated with HX content in R/ unique markers (independent of environment) | Markers common for HX content in AG and R (independent of environment) | Markers associated with the content of more than one HX (independent of environment) |
|---|---|---|---|---|---|
| 48/20 (2) |
| 20/6 (0) | 28/14 (2) | 14 (1) | 12 (1) |
AG – above-ground parts
R – roots