TY - JOUR
T1 - A Trip Back Home: Resistance to Herbivores of Native and Non-Native Plant Populations of Datura stramonium
AU - Nunez-Farfan, Juan
AU - Velazquez-Marquez, Sabina
AU - Torres-Garcia, Jesus R.
AU - De-la-Cruz, Ivan M.
AU - Arroyo, Juan
AU - Valverde, Pedro L.
AU - Flores-Ortiz, Cesar M.
AU - Hernandez-Portilla, Luis B.
AU - Lopez-Cobos, Diana E.
AU - Matias, Javier D.
PY - 2024
Y1 - 2024
N2 - When colonizing new ranges, plant populations may benefit from the absence of the checks imposed by the enemies, herbivores, and pathogens that regulated their numbers in their original range. Therefore, rates of plant damage or infestation by natural enemies are expected to be lower in the new range. Exposing both non-native and native plant populations in the native range, where native herbivores are present, can be used to test whether resistance mechanisms have diverged between populations. Datura stramonium is native to the Americas but widely distributed in Spain, where populations show lower herbivore damage than populations in the native range. We established experiments in two localities in the native range (Mexico), exposing two native and two non-native D. stramonium populations to natural herbivores. Plant performance differed between the localities, as did the abundance of the main specialist herbivore, Lema daturaphila. In Teotihuacan, where L. daturaphila is common, native plants had significantly more adult beetles and herbivore damage than non-native plants. The degree of infestation by the specialist seed predator Trichobaris soror differed among populations and between sites, but the native Ticuman population always had the lowest level of infestation. The Ticuman population also had the highest concentration of the alkaloid scopolamine. Scopolamine was negatively related to the number of eggs deposited by L. daturaphila in Teotihuacan. There was among-family variation in herbivore damage (resistance), alkaloid content (scopolamine), and infestation by L. daturaphila and T. soror, indicating genetic variation and potential for further evolution. Although native and non-native D. stramonium populations have not yet diverged in plant resistance/constitutive defense, the differences between ranges (and the two experimental sites) in the type and abundance of herbivores suggest that further research is needed on the role of resource availability and adaptive plasticity, specialized metabolites (induced, constitutive), and the relationship between genealogical origin and plant defense in both ranges.
AB - When colonizing new ranges, plant populations may benefit from the absence of the checks imposed by the enemies, herbivores, and pathogens that regulated their numbers in their original range. Therefore, rates of plant damage or infestation by natural enemies are expected to be lower in the new range. Exposing both non-native and native plant populations in the native range, where native herbivores are present, can be used to test whether resistance mechanisms have diverged between populations. Datura stramonium is native to the Americas but widely distributed in Spain, where populations show lower herbivore damage than populations in the native range. We established experiments in two localities in the native range (Mexico), exposing two native and two non-native D. stramonium populations to natural herbivores. Plant performance differed between the localities, as did the abundance of the main specialist herbivore, Lema daturaphila. In Teotihuacan, where L. daturaphila is common, native plants had significantly more adult beetles and herbivore damage than non-native plants. The degree of infestation by the specialist seed predator Trichobaris soror differed among populations and between sites, but the native Ticuman population always had the lowest level of infestation. The Ticuman population also had the highest concentration of the alkaloid scopolamine. Scopolamine was negatively related to the number of eggs deposited by L. daturaphila in Teotihuacan. There was among-family variation in herbivore damage (resistance), alkaloid content (scopolamine), and infestation by L. daturaphila and T. soror, indicating genetic variation and potential for further evolution. Although native and non-native D. stramonium populations have not yet diverged in plant resistance/constitutive defense, the differences between ranges (and the two experimental sites) in the type and abundance of herbivores suggest that further research is needed on the role of resource availability and adaptive plasticity, specialized metabolites (induced, constitutive), and the relationship between genealogical origin and plant defense in both ranges.
KW - Datura stramonium
KW - native and non-native populations
KW - invasive species
KW - tobacco flea beetle
KW - datura striped beetle
KW - tobacco weevil
KW - enemy release hypothesis
KW - increased competitive ability
KW - tropane alkaloids
KW - jimsonweed
KW - toloache
KW - Datura stramonium
KW - native and non-native populations
KW - invasive species
KW - tobacco flea beetle
KW - datura striped beetle
KW - tobacco weevil
KW - enemy release hypothesis
KW - increased competitive ability
KW - tropane alkaloids
KW - jimsonweed
KW - toloache
UR - https://res.slu.se/id/publ/128173
U2 - 10.3390/plants13010131
DO - 10.3390/plants13010131
M3 - Journal article
C2 - 38202439
SN - 2223-7747
VL - 13
JO - Plants
JF - Plants
IS - 1
M1 - 131
ER -