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1.
Proc Natl Acad Sci U S A ; 118(34)2021 08 24.
Artículo en Inglés | MEDLINE | ID: mdl-34400497

RESUMEN

Dormancy has repeatedly evolved in plants, animals, and microbes and is hypothesized to facilitate persistence in the face of environmental change. Yet previous experiments have not tracked demography and trait evolution spanning a full successional cycle to ask whether early bouts of natural selection are later reinforced or erased during periods of population dormancy. In addition, it is unclear how well short-term measures of fitness predict long-term genotypic success for species with dormancy. Here, we address these issues using experimental field populations of the plant Oenothera biennis, which evolved over five generations in plots exposed to or protected from insect herbivory. While populations existed above ground, there was rapid evolution of defensive and life-history traits, but populations lost genetic diversity and crashed as succession proceeded. After >5 y of seed dormancy, we triggered germination from the seedbank and genotyped >3,000 colonizers. Resurrected populations showed restored genetic diversity that reduced earlier responses to selection and pushed population phenotypes toward the starting conditions of a decade earlier. Nonetheless, four defense and life-history traits remained differentiated in populations with insect suppression compared with controls. These findings capture key missing elements of evolution during ecological cycles and demonstrate the impact of dormancy on future evolutionary responses to environmental change.


Asunto(s)
Evolución Biológica , Oenothera biennis/genética , Oenothera biennis/fisiología , Latencia en las Plantas/fisiología , Semillas/fisiología , Cambio Climático , Factores de Tiempo
2.
Plant Cell ; 33(8): 2583-2601, 2021 08 31.
Artículo en Inglés | MEDLINE | ID: mdl-34048579

RESUMEN

Genetic incompatibility between the cytoplasm and the nucleus is thought to be a major factor in species formation, but mechanistic understanding of this process is poor. In evening primroses (Oenothera spp.), a model plant for organelle genetics and population biology, hybrid offspring regularly display chloroplast-nuclear incompatibility. This usually manifests in bleached plants, more rarely in hybrid sterility or embryonic lethality. Hence, most of these incompatibilities affect photosynthetic capability, a trait that is under selection in changing environments. Here we show that light-dependent misregulation of the plastid psbB operon, which encodes core subunits of photosystem II and the cytochrome b6f complex, can lead to hybrid incompatibility, and this ultimately drives speciation. This misregulation causes an impaired light acclimation response in incompatible plants. Moreover, as a result of their different chloroplast genotypes, the parental lines differ in photosynthesis performance upon exposure to different light conditions. Significantly, the incompatible chloroplast genome is naturally found in xeric habitats with high light intensities, whereas the compatible one is limited to mesic habitats. Consequently, our data raise the possibility that the hybridization barrier evolved as a result of adaptation to specific climatic conditions.


Asunto(s)
Especiación Genética , Genoma del Cloroplasto , Oenothera biennis/genética , Operón , Fotosíntesis/genética , Aclimatación/genética , Complejo de Citocromo b6f/genética , Luz , Oenothera biennis/fisiología , Complejo de Proteína del Fotosistema II/genética , Proteínas de Plantas/genética , Plastidios/genética , Regiones Promotoras Genéticas , Edición de ARN
3.
Proc Natl Acad Sci U S A ; 116(12): 5665-5674, 2019 03 19.
Artículo en Inglés | MEDLINE | ID: mdl-30833407

RESUMEN

In most eukaryotes, organellar genomes are transmitted preferentially by the mother, but molecular mechanisms and evolutionary forces underlying this fundamental biological principle are far from understood. It is believed that biparental inheritance promotes competition between the cytoplasmic organelles and allows the spread of so-called selfish cytoplasmic elements. Those can be, for example, fast-replicating or aggressive chloroplasts (plastids) that are incompatible with the hybrid nuclear genome and therefore maladaptive. Here we show that the ability of plastids to compete against each other is a metabolic phenotype determined by extremely rapidly evolving genes in the plastid genome of the evening primrose Oenothera Repeats in the regulatory region of accD (the plastid-encoded subunit of the acetyl-CoA carboxylase, which catalyzes the first and rate-limiting step of lipid biosynthesis), as well as in ycf2 (a giant reading frame of still unknown function), are responsible for the differences in competitive behavior of plastid genotypes. Polymorphisms in these genes influence lipid synthesis and most likely profiles of the plastid envelope membrane. These in turn determine plastid division and/or turnover rates and hence competitiveness. This work uncovers cytoplasmic drive loci controlling the outcome of biparental chloroplast transmission. Here, they define the mode of chloroplast inheritance, as plastid competitiveness can result in uniparental inheritance (through elimination of the "weak" plastid) or biparental inheritance (when two similarly "strong" plastids are transmitted).


Asunto(s)
Cloroplastos/genética , Cloroplastos/fisiología , Oenothera biennis/metabolismo , Acetil-CoA Carboxilasa/genética , Evolución Biológica , Núcleo Celular/genética , Citoplasma/genética , Eucariontes/genética , Genoma , Genoma de Plastidios/genética , Genotipo , Lípidos/biosíntesis , Oenothera biennis/fisiología , Proteínas de Plantas/genética , Plastidios/genética
4.
J Chem Ecol ; 45(1): 86-94, 2019 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-30511298

RESUMEN

Phenolics have a role in defenses against herbivores, but the defensive functions of specific groups of phenolics are still poorly understood. For example, ellagitannins (a type of hydrolyzable tannin) are predicted to decrease insect herbivore performance, but the effect of different types of ellagitannins on generalist and specialist herbivores has rarely been assessed. Here, we test the effects of the dominant oligomeric ellagitannins of Oenothera biennis and other Onagraceae on herbivore performance. We fed artificial diets containing between 1 and 100 mg/g of polyphenol fractions comprised of varying amounts and compositions of dimeric oenothein B, the trimeric oenothein A and larger oligomers, to one generalist (Spodoptera exigua) and one specialist (Schinia florida) insect herbivore species. We compared the effects of these ellagitannin fractions on herbivore performance to the effects of artificial diet containing total phenolic extracts from O. biennis, which contained these ellagitannins as well as many additional phenolic metabolites including flavonoid glycosides and caffeic acid derivatives. Both the ellagitannin fractions and O. biennis phenolic extracts had strong negative effects on S. exigua and S. florida performance, with stronger effects on the generalist herbivore. Differences between the effects of the various ellagitannin fractions were small and depended on insect life stage. The defensive effects of these ellagitannins were large, with lethal concentrations as low as 0.1% of the diet. These results highlight the important defensive function of ellagitannins against specialist and generalist herbivores and the need to characterize the effects of these understudied phenolics.


Asunto(s)
Herbivoria , Taninos Hidrolizables/metabolismo , Mariposas Nocturnas/fisiología , Onagraceae/fisiología , Animales , Taninos Hidrolizables/análisis , Oenothera biennis/química , Oenothera biennis/fisiología , Onagraceae/química , Spodoptera/fisiología
5.
J Chem Ecol ; 42(8): 772-781, 2016 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-27501815

RESUMEN

Plants are hypothesized to evolve increased defense against herbivores at lower latitudes, but an increasing number of studies report evidence that contradicts this hypothesis. Few studies have examined the evolution of constitutive and induced resistance along latitudinal gradients. When induction is not considered, underlying patterns of latitudinal clines in resistance can be obscured because plant resistance represents a combination of induced and constitutive resistance, which may show contrasting patterns with latitude. Here, we asked if there are latitudinal gradients in constitutive versus induced resistance by using genotypes of Oenothera biennis (Onagraceae) sampled along an 18° latitudinal gradient. We conducted two bioassay experiments to compare the resistance of plant genotypes against one generalist (Spodoptera exigua) and one specialist (Acanthoscelidius acephalus) herbivore. These insects were assayed on: i) undamaged control plants, ii) plants that had been induced with jasmonic acid, and iii) plants induced with herbivore damage. Additionally, we examined latitudinal gradients of constitutive and induced chemical resistance by measuring the concentrations of total phenolics, the concentration of oxidized phenolics, and the percentage of phenolics that were oxidized. Spodoptera exigua showed lower performance on plants from lower latitudes, whereas A. acephalus showed no latitudinal pattern. Constitutive total phenolics were greater in plants from lower latitudes, but induced plants showed higher total phenolics at higher latitudes. Oxidative activity was greatest at higher latitudes regardless of induction. Overall, both latitude and induction have an impact on different metrics of plant resistance to herbivory. Further studies should consider the effect of induction and herbivore specialization more explicitly, which may help to resolve the controversy in latitudinal gradients in herbivory and defense.


Asunto(s)
Geografía , Herbivoria , Oenothera biennis/fisiología , Spodoptera , Gorgojos , Animales , Evolución Molecular , Genotipo , Oenothera biennis/genética , Oenothera biennis/metabolismo , Fenol/metabolismo , Hojas de la Planta/metabolismo
6.
J Evol Biol ; 29(1): 86-97, 2016 01.
Artículo en Inglés | MEDLINE | ID: mdl-26395768

RESUMEN

The evolution of plant defence in response to herbivory will depend on the fitness effects of damage, availability of genetic variation and potential ecological and genetic constraints on defence. Here, we examine the potential for evolution of tolerance to deer herbivory in Oenothera biennis while simultaneously considering resistance to natural insect herbivores. We examined (i) the effects of deer damage on fitness, (ii) the presence of genetic variation in tolerance and resistance, (iii) selection on tolerance, (iv) genetic correlations with resistance that could constrain evolution of tolerance and (v) plant traits that might predict defence. In a field experiment, we simulated deer damage occurring early and late in the season, recorded arthropod abundances, flowering phenology and measured growth rate and lifetime reproduction. Our study showed that deer herbivory has a negative effect on fitness, with effects being more pronounced for late-season damage. Selection acted to increase tolerance to deer damage, yet there was low and nonsignificant genetic variation in this trait. In contrast, there was substantial genetic variation in resistance to insect herbivores. Resistance was genetically uncorrelated with tolerance, whereas positive genetic correlations in resistance to insect herbivores suggest there exists diffuse selection on resistance traits. In addition, growth rate and flowering time did not predict variation in tolerance, but flowering phenology was genetically correlated with resistance. Our results suggest that deer damage has the potential to exert selection because browsing reduces plant fitness, but limited standing genetic variation in tolerance is expected to constrain adaptive evolution in O. biennis.


Asunto(s)
Evolución Biológica , Variación Genética , Herbivoria , Oenothera biennis/fisiología , Animales , Artrópodos , Ciervos , Insectos , North Carolina , Oenothera biennis/genética , Fenotipo , Hojas de la Planta/fisiología , Selección Genética
7.
Ecol Lett ; 18(12): 1376-86, 2015 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-26482702

RESUMEN

Greater plant defence is predicted to evolve at lower latitudes in response to increased herbivore pressure. However, recent studies question the generality of this pattern. In this study, we tested for genetically based latitudinal clines in resistance to herbivores and underlying defence traits of Oenothera biennis. We grew plants from 137 populations from across the entire native range of O. biennis. Populations from lower latitudes showed greater resistance to multiple specialist and generalist herbivores. These patterns were associated with an increase in total phenolics at lower latitudes. A significant proportion of the phenolics were driven by the concentrations of two major ellagitannins, which exhibited opposing latitudinal clines. Our analyses suggest that these findings are unlikely to be explained by local adaptation of herbivore populations or genetic variation in phenology. Rather greater herbivory at high latitudes can be explained by latitudinal clines in the evolution of plant defences.


Asunto(s)
Variación Genética , Herbivoria , Oenothera biennis/fisiología , Fenoles/metabolismo , Evolución Biológica , Canadá , Oenothera biennis/genética , Fenotipo , Estados Unidos
8.
Am J Bot ; 101(11): 1906-14, 2014 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-25366856

RESUMEN

PREMISE OF THE STUDY: It has long been predicted that a loss of sexual reproduction leads to decreased heritable variation within populations and increased differentiation between populations. Despite an abundance of theory, there are few empirical tests of how sex affects genetic variation in phenotypic traits, especially for plants. Here we test whether repeated losses of two critical components of sex (recombination and segregation) in the evening primroses (Oenothera L., Onagraceae) affect quantitative genetic variation within and between populations. METHODS: We sampled multiple genetic families from 3-5 populations from each of eight Oenothera species, which represented four independent transitions between sexual reproduction and a functionally asexual genetic system called "permanent translocation heterozygosity." We used quantitative genetics methods to partition genetic variation within and between populations for eight plant traits related to growth, leaf physiology, flowering, and resistance to herbivores. KEY RESULTS: Heritability was, on average, 74% higher in sexual Oenothera populations than in functionally asexual populations, with plant growth rate, specific leaf area, and the percentage of leaf water content showing the strongest differences. By contrast, genetic differentiation among populations was 2.8× higher in functionally asexual vs. sexual Oenothera species. This difference was particularly strong for specific leaf area. Sexual populations tended to exhibit higher genetic correlations among traits, but this difference was weakly supported. CONCLUSIONS: These results support the prediction that sexual reproduction maintains higher genetic variation within populations, which may facilitate adaptive evolution. We also found partial support for the prediction that a loss of sex leads to greater population differentiation, which may elevate speciation rates.


Asunto(s)
Variación Genética , Oenothera biennis/genética , Animales , Apomixis , Evolución Biológica , Herbivoria , Heterocigoto , Oenothera biennis/fisiología , Partenogénesis , Fenotipo , Reproducción Asexuada
9.
Sci Rep ; 4: 4389, 2014 Mar 17.
Artículo en Inglés | MEDLINE | ID: mdl-24633128

RESUMEN

Midday depression of photosynthesis has important consequences for ecosystem carbon exchange. Recent studies of forest trees have demonstrated that latent reduction of photosynthetic capacity can begin in the early morning, preceding the midday depression. We investigated whether such early morning reduction also occurs in an herbaceous species, Oenothera biennis. Diurnal changes of the photosynthetic light response curve (measured using a light-emitting diode) and incident sunlight intensity were measured under field conditions. The following results were obtained: (1) the light-saturated photosynthetic rate decreased beginning at sunrise; (2) the incident sunlight intensity on the leaves increased from sunrise; and (3) combining (1) and (2), the net photosynthetic rate under natural sunlight intensity increased from sunrise, reached a maximum at mid-morning, and then showed midday depression. Our results demonstrate that the latent morning reduction of photosynthetic capacity begins at sunrise, preceding the apparent midday depression, in agreement with previous studies of forest trees.


Asunto(s)
Ritmo Circadiano/fisiología , Oenothera biennis/fisiología , Fotosíntesis/fisiología , Hojas de la Planta/fisiología , Dióxido de Carbono/metabolismo , Ecosistema , Oenothera biennis/efectos de la radiación , Fotosíntesis/efectos de la radiación , Hojas de la Planta/efectos de la radiación , Estaciones del Año , Luz Solar
11.
Science ; 338(6103): 113-6, 2012 Oct 05.
Artículo en Inglés | MEDLINE | ID: mdl-23042894

RESUMEN

Insect herbivores are hypothesized to be major factors affecting the ecology and evolution of plants. We tested this prediction by suppressing insects in replicated field populations of a native plant, Oenothera biennis, which reduced seed predation, altered interspecific competitive dynamics, and resulted in rapid evolutionary divergence. Comparative genotyping and phenotyping of nearly 12,000 O. biennis individuals revealed that in plots protected from insects, resistance to herbivores declined through time owing to changes in flowering time and lower defensive ellagitannins in fruits, whereas plant competitive ability increased. This independent real-time evolution of plant resistance and competitive ability in the field resulted from the relaxation of direct selective effects of insects on plant defense and through indirect effects due to reduced herbivory on plant competitors.


Asunto(s)
Evolución Biológica , Ecología , Herbivoria/fisiología , Mariposas Nocturnas/fisiología , Oenothera biennis/fisiología , Animales , Frutas/genética , Frutas/parasitología , Frutas/fisiología , Oenothera biennis/genética , Oenothera biennis/parasitología , Población , Semillas/genética , Semillas/parasitología , Semillas/fisiología , Selección Genética
12.
New Phytol ; 191(2): 555-563, 2011 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-21449951

RESUMEN

Competing evolutionary forces shape plant breeding systems (e.g. inbreeding depression, reproductive assurance). Which of these forces prevails in a given population or species is predicted to depend upon such factors as life history, ecological conditions, and geographical context. Here, we examined two such predictions: that self-compatibility should be associated with the annual life history or extreme climatic conditions. We analyzed data from a clade of plants remarkable for variation in breeding system, life history and climatic conditions (Oenothera, sections Anogra and Kleinia, Onagraceae). We used a phylogenetic comparative approach and Bayesian or hybrid Bayesian tests to account for phylogenetic uncertainty. Geographic information system (GIS)-based climate data and ecological niche modeling allowed us to quantify climatic conditions. Breeding system and reproductive life span are not correlated in Anogra and Kleinia. Instead, self-compatibility is associated with the extremes of temperature in the coldest part of the year and precipitation in the driest part of the year. In the 60 yr since this pattern was anticipated, this is the first demonstration of a relationship between the evolution of self-compatibility and climatic extremes. We discuss possible explanations for this pattern and possible implications with respect to anthropogenic climate change.


Asunto(s)
Adaptación Biológica/fisiología , Oenothera biennis/fisiología , Adaptación Biológica/genética , Teorema de Bayes , Biodiversidad , Evolución Biológica , Clima , Ecosistema , Geografía , Endogamia , Oenothera biennis/genética , Filogenia , Reproducción/genética
13.
J Cardiovasc Pharmacol ; 58(1): 72-9, 2011 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-21499116

RESUMEN

Experimental data raised the specter of increased cardiovascular risk with selective cyclooxygenase-2 inhibitors. The study aimed to investigate the cardiovascular risk caused by celecoxib by studying its effect on blood pressure (BP) and thrombogenesis in rats. We tested the possible protective effects of evening primrose oil (EPO) or ω-3 polyunsaturated fatty acids (n-3 PUFAs). Male Wistar rats were assigned to the following groups: vehicle, celecoxib, celecoxib/n-3 PUFAs, celecoxib/EPO, n-3 PUFAs, and EPO. The rats were treated with celecoxib (20 mg·kg(-1)·d(-1)) by gastric gavage for 6 weeks. The mean BP was recorded, and blood samples were collected for testing prothrombin time and activated partial thromboplastin time. Platelet aggregation assay and collagen-induced platelet consumption test were used as models of thrombogenesis. Celecoxib increased the BP without affecting coagulation parameters and accelerated thrombogenesis by increasing platelet aggregation and collagen-induced thrombocytopenia. EPO and n-3 PUFAs decreased the celecoxib-induced elevation in BP. Although EPO significantly decreased platelet aggregation and collagen-induced thrombocytopenia, n-3 PUFAs did not. Celecoxib elevated BP and increased the risk of thrombogenesis in rats. A combination of celecoxib and the selected natural supplements is suggested as a novel approach to minimize cardiovascular risk caused by celecoxib.


Asunto(s)
Enfermedades Cardiovasculares/prevención & control , Grasas Insaturadas en la Dieta/uso terapéutico , Ácidos Grasos Omega-3/uso terapéutico , Ácidos Linoleicos/uso terapéutico , Oenothera biennis/fisiología , Aceites de Plantas/uso terapéutico , Pirazoles/toxicidad , Sulfonamidas/toxicidad , Ácido gammalinolénico/uso terapéutico , Animales , Presión Sanguínea/efectos de los fármacos , Presión Sanguínea/fisiología , Enfermedades Cardiovasculares/inducido químicamente , Enfermedades Cardiovasculares/fisiopatología , Celecoxib , Grasas Insaturadas en la Dieta/farmacología , Ácidos Grasos Omega-3/farmacología , Ácidos Linoleicos/farmacología , Masculino , Aceites de Plantas/farmacología , Distribución Aleatoria , Ratas , Ratas Wistar , Factores de Riesgo , Trombosis/inducido químicamente , Trombosis/fisiopatología , Trombosis/prevención & control , Resultado del Tratamiento , Ácido gammalinolénico/farmacología
14.
J Evol Biol ; 22(6): 1295-307, 2009 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-19490388

RESUMEN

This study explored genetic variation and co-variation in multiple functional plant traits. Our goal was to characterize selection, heritabilities and genetic correlations among different types of traits to gain insight into the evolutionary ecology of plant populations and their interactions with insect herbivores. In a field experiment, we detected significant heritable variation for each of 24 traits of Oenothera biennis and extensive genetic covariance among traits. Traits with diverse functions formed several distinct groups that exhibited positive genetic covariation with each other. Genetic variation in life-history traits and secondary chemistry together explained a large proportion of variation in herbivory (r(2) = 0.73). At the same time, selection acted on lifetime biomass, life-history traits and two secondary compounds of O. biennis, explaining over 95% of the variation in relative fitness among genotypes. The combination of genetic covariances and directional selection acting on multiple traits suggests that adaptive evolution of particular traits is constrained, and that correlated evolution of groups of traits will occur, which is expected to drive the evolution of increased herbivore susceptibility. As a whole, our study indicates that an examination of genetic variation and covariation among many different types of traits can provide greater insight into the evolutionary ecology of plant populations and plant-herbivore interactions.


Asunto(s)
Variación Genética , Herencia Multifactorial , Oenothera biennis/fisiología , Carácter Cuantitativo Heredable , Selección Genética , Cadena Alimentaria , Oenothera biennis/anatomía & histología , Oenothera biennis/genética , Fenoles/metabolismo
15.
Ann Bot ; 101(2): 267-76, 2008 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-17981881

RESUMEN

BACKGROUND AND AIMS: The plants that have remained in the contaminated areas around Chernobyl since 1986 encapsulate the effects of radiation. Such plants are chronically exposed to radionuclides that they have accumulated internally as well as to alpha-, beta- and gamma-emitting radionuclides from external sources and from the soil. This radiation leads to genetic damage that can be countered by DNA repair systems. The objective of this study is to follow DNA repair and adaptation in haploid cells (birch pollen) and diploid cells (seed embryos of the evening primrose) from plants that have been growing in situ in different radionuclide fall-out sites in monitored regions surrounding the Chernobyl explosion of 1986. METHODS: Radionuclide levels in soil were detected using gamma-spectroscopy and radiochemistry. DNA repair assays included measurement of unscheduled DNA synthesis, electrophoretic determination of single-strand DNA breaks and image analysis of rDNA repeats after repair intervals. Nucleosome levels were established using an ELISA kit. KEY RESULTS: Birch pollen collected in 1987 failed to perform unscheduled DNA synthesis, but pollen at gamma/beta-emitter sites has now recovered this ability. At a site with high levels of combined alpha- and gamma/beta-emitters, pollen still exhibits hidden damage, as shown by reduced unscheduled DNA synthesis and failure to repair lesions in rDNA repeats properly. Evening primrose seed embryos generated on plants at the same gamma/beta-emitter sites now show an improved DNA repair capacity and ability to germinate under abiotic stresses (salinity and accelerated ageing). Again those from combined alpha- and gamma/beta-contaminated site do not show this improvement. CONCLUSIONS: Chronic irradiation at gamma/beta-emitter sites has provided opportunities for plant cells (both pollen and embryo cells) to adapt to ionizing irradiation and other environmental stresses. This may be explained by facilitation of DNA repair function.


Asunto(s)
Adaptación Fisiológica/efectos de la radiación , Betula/efectos de la radiación , Accidente Nuclear de Chernóbil , Reparación del ADN/efectos de la radiación , Oenothera biennis/efectos de la radiación , Polen/efectos de la radiación , Radioisótopos/farmacología , Semillas/efectos de la radiación , Adaptación Fisiológica/efectos de los fármacos , Betula/efectos de los fármacos , Betula/genética , Betula/fisiología , Roturas del ADN de Cadena Simple/efectos de los fármacos , Roturas del ADN de Cadena Simple/efectos de la radiación , Reparación del ADN/efectos de los fármacos , Enzimas de Restricción del ADN/metabolismo , ADN de Plantas/biosíntesis , Relación Dosis-Respuesta en la Radiación , Germinación/efectos de los fármacos , Germinación/efectos de la radiación , Nucleosomas/efectos de los fármacos , Nucleosomas/efectos de la radiación , Oenothera biennis/genética , Oenothera biennis/fisiología , Presión Osmótica/efectos de los fármacos , Presión Osmótica/efectos de la radiación , Polen/efectos de los fármacos , Polen/genética , Plantones/efectos de los fármacos , Plantones/efectos de la radiación , Semillas/efectos de los fármacos , Semillas/genética , Cloruro de Sodio/farmacología , Factores de Tiempo
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