| Literature DB >> 20309618 |
Heather Kirk1, Klaas Vrieling, Eddy Van Der Meijden, Peter G L Klinkhamer.
Abstract
We examined the effects of water and nutrient availability on the expression of the defense pyrrolizidine alkaloids (PAs) in Senecio jacobaea and S. aquaticus. Senecio jacobaea, and S. aquaticus are adapted to different natural habitats, characterized by differing abiotic conditions and different selection pressures from natural enemies. We tested if PA concentration and diversity are plastic over a range of water and nutrient treatments, and also whether such plasticity is dependent on plant species. We also tested the hypothesis that hybridization may contribute to PA diversity within plants, by comparing PA expression in parental species to that in artificially generated F(1) hybrids, and also in later generation natural hybrids between S. jacobaea and S. aquaticus. We showed that total PA concentration in roots and shoots is not dependent on species, but that species determines the pattern of PA diversification. Pyrrolizidine alkaloid diversity and concentration are both dependent on environmental factors. Hybrids produce a putatively novel PA, and this PA is conserved in natural hybrids, that are backcrossed to S. jacobaea. Natural hybrids that are backcrossed several times to S. jacobaea are with regard to PA diversity significantly different from S. jacobaea but not from S. aquaticus, while F(1) hybrids are in all cases more similar to S. jacobaea. These results collectively suggest that PA diversity is under the influence of natural selection.Entities:
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Year: 2010 PMID: 20309618 PMCID: PMC2850523 DOI: 10.1007/s10886-010-9772-8
Source DB: PubMed Journal: J Chem Ecol ISSN: 0098-0331 Impact factor: 2.626
Mean concentration (mg/g) ± se of 11 pyrrolizidine alkaloids in the roots, and shoots of senecio jacobaea, senecio aquaticus, natural hybrid, and f1 hybrid genotypes. data shown is pooled over all treatments
| RT1 | Alkaloid | S. jacobaea |
| Natural Hybrid | F1 Hybrid | |
|---|---|---|---|---|---|---|
| 3.97 | PA1 | Shoots | 3.43 × 10−3 ± 2.39 × 10−3 | 1.61 × 10−1 ± 1.85 × 10−2 | 1.07 × 10−1 ± 2.60 × 10−2 | 6.39 × 10−2 ± 1.36 × 10−2 |
| Roots | 4.20 × 10−3 ± 4.21 × 10−3 | 2.29 × 10−2 ± 2.03 × 10−2 | 1.73 × 10−3 ± 1.73 × 10−3 | 4.65 × 10−3 ± 4.65 × 10−3 | ||
| 7.07 | Senecivernine | Shoots | 0 | 0 | 2.40 × 10−3 ± 1.77 × 10−3 | 4.20 × 10−4 ± 4.20 × 10−4 |
| Roots | 3.70 × 10−4 ± 2.64 × 10−4 | 1.06 × 10−3 ± 6.3 × 10−4 | 0 | 1.35 × 10−3 ± 9.9 × 10−4 | ||
| 8.015 | Senecionine | Shoots | 1.85 × 10−1 ± 4.12 × 10−2 | 1.85 × 10−1 ± 3.71 × 10−2 | 1.56 × 10−1 ± 4.20 × 10−2 | 1.22 × 10−1 ± 2.35 × 10−2 |
| Roots | 7.21 × 10−1 ± 1.53 × 10−1 | 2.06 × 10−1 ± 3.54 × 10−2 | 3.07 × 10−1 ± 6.02 × 10−2 | 3.76 × 10−1 ± 4.36 × 10−2 | ||
| 8.257 | Seneciphylline | Shoots | 2.61 × 10−1 ± 6.39 × 10−2 | 3.26 × 10−1 ± 6.55 × 10−2 | 3.49 × 10−1 ± 7.82 × 10−2 | 3.32 × 10−1 ± 5.58 × 10−2 |
| Roots | 1.95 × 10−1 ± 3.76 × 10−2 | 3.35 × 10−1 ± 9.08 × 10−2 | 2.48 × 10−1 ± 5.50 × 10−2 | 3.41 × 10−1 ± 4.17 × 10−2 | ||
| 8.874 | Integerrimine | Shoots | 3.46 × 10−2 ± 9.14 × 10−3 | 3.49 × 10−2 ± 9.93 × 10−3 | 3.07 × 10−2 ± 1.08 × 10−2 | 2.62 × 10−2 ± 6.02 × 10−3 |
| Roots | 9.76 × 10−2 ± 1.83 × 10−2 | 4.65 × 10−2 ± 1.61 × 10−2 | 6.06 × 10−2 ± 1.20 × 10−2 | 7.74 × 10−2 ± 1.06 × 10−2 | ||
| 10.386 | Jacobine | Shoots | 3.06 × 10−1 ± 6.63 × 10−2 | 3.91 × 10−3 ± 3.63 × 10−3 | 1.87 × 10−1 ± 5.98 × 10−2 | 2.36 × 10−1 ± 4.80 × 10−2 |
| Roots | 8.96 × 10−2 ±−3.10 × 10−2 | 0 | 5.32 × 10−2 ± 2.80 × 10−2 | 1.09 × 10−1 ± 2.47 × 10−2 | ||
| 10.852 | Jacoline | Shoots | 7.19 × 10−3 ± 4.41 × 10−3 | 1.06 × 10−2 ± 7.05 × 10−3 | 5.33 × 10−2 ± 1.92 × 10−2 | 2.23 × 10−2 ± 7.14 × 10−3 |
| Roots | 6.74 × 10−2 ± 1.87 × 10−2 | 1.47 × 10−1 ± 4.97 × 10−2 | 8.70 × 10−2 ± 2.11 × 10−2 | 9.44 × 10−2 ± 1.70 × 10−2 | ||
| 11.30 | PA2 | Shoots | 7.10 × 10−4 ± 4.11 × 10−4 | 4.00 × 10−4 ± 2.81 × 10−4 | 2.70 × 10−4 ± 1.85 × 10−4 | 1.29 × 10−2 ± 1.05 × 10−2 |
| Roots | 1.12 × 10−4 ± 1.12 × 10−4 | 4.55 × 10−3 ± 2.69 × 10−3 | 3.30 × 10−4 ± 2.30 × 10−4 | 2.19 × 10−3 ± 1.48 × 10−3 | ||
| 12.01 | Erucifoline | Shoots | 2.45 × 10−2 ± 1.21 × 10−2 | 2.91 × 10−2 ± 1.21 × 10−2 | 2.33 × 10−2 ± 1.10 × 10−2 | 4.80 × 10−2 ± 1.47 × 10−2 |
| Roots | 9.39 × 10−3 ± 6.27 × 10−3 | 1.28 × 10−2 ± 8.06 × 10−3 | 3.99 × 10−3 ± 3.81 × 10−3 | 2.01 × 10−2 ± 6.91 × 10−3 | ||
| 12.50 | Otosenine | Shoots | 0 | 0 | 0 | 0 |
| Roots | 0 | 6.40 × 10−4 ± 3.54 × 10−4 | 1.77 × 10−4 ± 1.77 × 10−4 | 1.98 × 10−3 ± 1.71 × 10−3 | ||
| 14.31 | Florosenine | Shoots | 0 | 0 | 1.42 × 10−4 ± 1.42 × 10−4 | 1.37 × 10−2 ± 9.10 × 10−3 |
| Roots | 1.50 × 10−4 ± 1.50 × 10−4 | 0 | 0 | 6.07 × 10−3 ± 3.88 × 10−3 |
1Indicates retention time of GC-NPD peaks
Fig. 1Chemical structures of otosenine and florosenine
Effect of nutrient and water treatment, and plant taxa (fixed factors) on pyrrolizidine alkaloid concentration in the roots and shoots of senecio jacobaea, senecio aquaticus, natural hybrids, and f1 hybrids. shoot to root ratio (sr ratio) of the plant was used as a covariate
| Source | Type III Sum of Squares |
| Mean Square |
|
|
|---|---|---|---|---|---|
| Shoots | |||||
| Covariate SR ratio | .640 | 1 | .640 | 1.528 | .219 |
| Taxa | .726 | 3 | .242 | .578 | .631 |
| Nutrient | 1.465 | 1 | 1.465 | 3.497 | .063 |
| Water | 6.632 | 2 | 3.316 | 7.917 | .001 |
| Taxa * nutrient | .408 | 3 | .136 | .325 | .807 |
| Taxa * water | 4.152 | 6 | .692 | 1.652 | .140 |
| Nutrient * water | 10.123 | 2 | 5.062 | 12.085 | <.001 |
| Taxa * nutrient * water | 2.846 | 6 | .474 | 1.132 | .348 |
| Error | 46.490 | 111 | .419 | ||
| Roots | |||||
| Covariate SR ratio | .794 | 1 | .794 | 1.292 | .258 |
| Taxa | 4.059 | 3 | 1.353 | 2.202 | .092 |
| Nutrient | 6.884 | 1 | 6.884 | 11.204 | .001 |
| Water | 6.549 | 2 | 3.275 | 5.329 | .006 |
| Taxa * nutrient | 1.900 | 3 | .633 | 1.031 | .382 |
| Taxa * water | 1.507 | 6 | .251 | .409 | .872 |
| Nutrient * water | .639 | 2 | .320 | .520 | .596 |
| Taxa * nutrient * water | 7.858 | 6 | 1.310 | 2.132 | .055 |
| Error | 68.203 | 111 | .614 | ||
Fig. 2Pyrrolizidine alkaloid (PA) concentration in the shoots and roots of Senecio jacobaea (black), Senecio aquaticus (white), natural hybrids (dark grey), and F1 hybrids (light grey) in a factorial design with two nutrient levels and three water levels. Vertical bars represent standard error
Effect of nutrient and water treatment, and plant taxa (fixed factors) on pyrrolizidine alkaloid richness in the roots and shoots of senecio jacobaea, senecio aquaticus, natural hybrids, and f1 hybrids. shoot to root ratio (sr ratio) of the plant was used as a covariate
| Source | Type III Sum of Squares |
| Mean Square |
|
|
|---|---|---|---|---|---|
| Shoot | |||||
| Covariate SR ratio | 1.758 | 1 | 1.758 | .577 | .449 |
| Taxa | 30.530 | 3 | 10.177 | 3.339 | .022 |
| Nutrient | .439 | 1 | .439 | .144 | .705 |
| Water | 5.421 | 2 | 2.711 | .889 | .414 |
| Taxa * nutrient | 31.988 | 3 | 10.663 | 3.499 | .018 |
| Taxa * water | 24.382 | 6 | 4.064 | 1.333 | .248 |
| Nutrient * water | 67.319 | 2 | 33.660 | 11.044 | <.001 |
| Taxa * nutrient * water | 8.652 | 6 | 1.442 | .473 | .827 |
| Error | 338.292 | 111 | 3.048 | ||
| Root | |||||
| Covariate SR ratio | 2.364 | 1 | 2.364 | .806 | .371 |
| Taxa | 28.433 | 3 | 9.478 | 3.233 | .025 |
| Nutrient | 1.727 | 1 | 1.727 | .589 | .444 |
| Water | 42.868 | 2 | 21.434 | 7.312 | .001 |
| Taxa * nutrient | 22.180 | 3 | 7.393 | 2.522 | .061 |
| Taxa * water | 21.237 | 6 | 3.539 | 1.207 | .308 |
| Nutrient * water | 1.975 | 2 | .988 | .337 | .715 |
| Taxa * nutrient * water | 7.419 | 6 | 1.236 | .422 | .863 |
| Error | 325.386 | 111 | 2.931 | ||
Fig. 3Pyrrolizidine Alkaloid (PA) richness, defined as the number of PAs detected within each sample, in the shoots and roots of Senecio jacobaea (black), Senecio aquaticus (white), natural hybrids (dark grey), and F1 hybrids (light grey) in a factorial design with two nutrient levels and three water levels. Vertical bars represent standard error
Effects of nutrient treatment, water treatment, and plant taxa on principal components (pcs) that are correlated with pyrrolizidine alkaloids (pas) expression in roots and shoots of senecio
| Principal Component | % variation1 | Correlated PAs2 | Significant Factors3 ( | |
|---|---|---|---|---|
| Shoots | 1 | 53.0 | (+)Senecionine | Nutrient |
| (+)Seneciphylline | Water | |||
| (+)Integerrimine | Water*Nutrient | |||
| (+)Jacobine | ||||
| (+)Jacoline | ||||
| (+)Erucifoline | ||||
| 2 | 32.6 | (−)PA1 | Taxa | |
| (−)Senecionine | Nutrient | |||
| (+)Jacobine | ||||
| (+)Florosenine | ||||
| Roots | 1 | 64.7 | (+)Senecionine | Taxa |
| (+)Seneciphylline | Water | |||
| (+)Integerrimine | Nutrient | |||
| (+)Jacoline | ||||
| (+)Erucifoline | ||||
| 2 | 24.2 | (−)Senecionine | Taxa | |
| (+)Seneciphylline | Nutrient | |||
| (+)Integerrimine | Water*Nutrient | |||
| (+)Jacoline | ||||
| (+)PA2 | ||||
| (+)Erucifoline |
1Indicates percent of total PA variation explained by each PC
2Indicates PAs that are significantly correlated with each PC (P < 0.05)
3Significant factors represent single factors and/or interactions that had significant effects on PC values in ANOVA analyses