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result(s) for
"Università degli studi di Catania = University of Catania (Unict)"
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The geographic scope of host use by the ladybeetle parasitoid Dinocampus coccinellae
by
Brodeur, Jacques
,
Biondi, Antonio
,
Zappalà, Lucia
in
Biodiversity
,
Environmental impact
,
Genetic relationship
2023
Dinocampus coccinellae (Hymenoptera: Braconidae) can parasitize over 50 species of ladybeetles (Coleoptera: Coccinellidae), including the invasive Harmonia axyridis. The biological invasion success of H. axyridis has been in part attributed to weak control by natural enemies (Enemy Release Hypothesis). The main aim of this study was to examine (i) the intraspecific variation in field parasitism of D. coccinellae attacking H. axyridis populations in its native (Asia) and invasive ranges (North and South America and Europe), and (ii) the interspecific variation in field parasitism of D. coccinellae attacking the invasive H. axyridis and native hosts in the US (Coleomegilla maculata), Chile (Eriopis chilensis), and Italy (Coccinella septempunctata). We also characterized the genetic differentiation of D. coccinellae populations (from different host species and geographical areas) to infer its putative origin. Parasitism of D. coccinellae on invasive H. axyridis and native hosts were remarkably similar at 4–7%, suggesting a low level of resistance, not supporting the enemy release hypothesis. However, parasitism of H. axyridis was much lower in its native than in the invaded areas studied, indicating that under certain field conditions, it may contribute to the control of invasive populations of H. axyridis. Genetic relationships showed widespread D. coccinellae haplotypes with no host-associated genetic structure, consistent with a generalist parasitoid. Genetic relationships of the haplotypes also suggest a complex introduction scenario, with multiple introductions into America and an inferred European origin for D. coccinellae.
Journal Article
Non-target effects of neurotoxic insecticides on Ganaspis cf. brasiliensis, a classical biological control agent of the spotted wing Drosophila
by
Biondi, Antonio
,
Gugliuzzo, Antonio
,
Fellin, Lorenzo
in
Adults
,
Agricultural practices
,
Agriculture
2024
Background
The spotted wing drosophila,
Drosophila suzukii
, is an invasive pest causing significant economic losses worldwide. Current pest control strategies mainly rely on insecticides, which negatively impact fruit marketability and the sustainability of integrated pest management (IPM) programs. In addition, pesticides can have dramatic consequences on non-target species when persisting in the environment at low concentrations after field applications. In this context, chemical control can strongly interfere with the releases of the G1 strain of the Asian larval parasitoid
Ganaspis
cf
. brasiliensis
, which is currently the adopted classical biological control agent to manage
D. suzukii
infestations worldwide.
Methods
Probit analysis was used to assess the baseline toxicity of acetamiprid, cyazypyr, lambda-cyhalothrin, phosmet, and spinosad on G1
G.
cf
. brasiliensis
adults through residual contact exposure in the laboratory. Then, adult parasitoids were exposed to insecticide low Lethal Concentrations (LC
5
and LC
30
) and their mortality was checked daily to assess the survival of treated wasps.
Results
Lambda-cyhalothrin showed the highest toxicity on the parasitoid with a LC
50
of 1.38 × 10
–3
g active ingredient (a.i.) /L, while cyazypyr seemed the safer active ingredient with an estimated LC
50
of 0.20 g a.i./L without affecting parasitoids at sublethal doses. Spinosad and phosmet significantly reduced wasp survival at both LC
30
and LC
5
, while lambda-cyhalothrin and acetamiprid affected parasitoid lifespan only at LC
30
. Spinosad, lambda-cyhalothrin and phosmet LC
30
caused the major survival reductions, followed by acetamiprid LC
30
. The least significant reduction in parasitoid survival was 21.6% by spinosad LC
5
.
Conclusions
Overall, this study highlighted the importance of carefully selecting insecticides to minimize adverse effects on non-target organisms. In particular, cyazypyr was the most promising candidate to integrate inoculative biological control with chemical treatments. By contrast, the application of phosmet, spinosad and lambda-cyhalothrin should be avoided alongside parasitoid field releases. Although acetamiprid is less used against
D. suzukii
in the field than the other tested molecules, it should be used with caution due to its sublethal toxicity on the parasitoid. These results provide the first evidence of
G
. cf.
brasiliensis
susceptibility to insecticides in order to promote sustainable and efficient pest management strategies.
Journal Article
Botanical insecticide and natural enemies: a potential combination for pest management against Tuta absoluta
by
Biondi, Antonio
,
Haro, Marcelo
,
Institut Sophia Agrobiotech (ISA) ; Institut National de la Recherche Agronomique (INRA)-Université Nice Sophia Antipolis (1965 - 2019) (UNS)-Centre National de la Recherche Scientifique (CNRS)
in
adults
,
Agriculture
,
Biomedical and Life Sciences
2019
The development of new strategies to control pest insects is required, in combination with conventional pesticides or replacing them. Essential oils produced from botanical extracts used in management programs should be effective against pests and selective to natural enemies. Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae) is one of the most destructive pests of solanaceous crops in the world, and a possible management strategy consists of releases of the predator Nesidiocoris tenuis (Hemiptera: Miridae), along with botanical applications. The objective of this study was to evaluate the effects of Prev-am (R) oil on T. absoluta offspring, either with or without the predator N. tenuis, as well as the oil's effects on N. tenuis predatory behavior and longevity. The oil's effects were compared with distilled water (control) and a synthetic pesticide (lambda-cyhalothrin). The response of populations to lambda-cyhalothrin was similar to that with Prev-am (R), compared to the control, showing that N. tenuis had higher capacity to reduce T. absoluta populations. The survival analysis of predators exposed to Prev-am (R) indicates that none of the concentrations differed significantly from the control. In addition, the canonical variate analysis indicated significant overall differences in the predator behavior submitted to different treatments, suggesting that synthetic pesticide treatment affected predator behavior when compared to control and Prev-am (R). Reduction in predatory voracity of N. tenuis adults exposed to leaves treated with pesticide and biopesticide was significant compared to the control treatment. The results obtained could improve IPM programs against T. absoluta through the Prev-am (R) applications and N. tenuis releases.
Journal Article
Citrus peel essential oil nanoformulations to control the tomato borer, Tuta absoluta: chemical properties and biological activity
2017
The repeated use of conventional synthetic pesticides in crop protection leads to resistance development by pests along with a negative impact on the environment, particularly non-target arthropods. Plant-derived active compounds, such as essential oils (EOs), play a key role in sustainably controlling pests. The lethal and sublethal activity of citrus peel EOs as emulsions and included in polyethylene glycol (PEG) nanoparticles (EO-NPs) was determined against the invasive tomato pest Tuta absoluta. Their effects on the plants were also assessed. The results showed an overall good insecticidal activity of the compounds tested, with a higher mortality through contact on eggs and larvae by EO emulsions and through ingestion on larvae by EO-NPs. The nanoformulation also significantly reduced the visible toxic effects on the plants. The data collected suggest that these natural compounds, especially when nanoformulated, could be successfully used in integrated pest management programs for T. absoluta.
Journal Article
A lactate-dependent shift of glycolysis mediates synaptic and cognitive processes in male mice
by
Bouzier-Sore, Anne-Karine
,
ANR-21-NEU2-0001,CANSHANK,Involvement of the insula in the Autism neurodevelopmental disorder
,
University of Tokyo [Tokyo] = Tōkyō teikoku daigaku (UTokyo)
in
13/106
,
14/10
,
14/33
2024
Astrocytes control brain activity via both metabolic processes and gliotransmission, but the physiological links between these functions are scantly known. Here we show that endogenous activation of astrocyte type-1 cannabinoid (CB1) receptors determines a shift of glycolysis towards the lactate-dependent production of D-serine, thereby gating synaptic and cognitive functions in male mice. Mutant mice lacking the CB1 receptor gene in astrocytes (GFAP-CB1-KO) are impaired in novel object recognition (NOR) memory. This phenotype is rescued by the gliotransmitter D-serine, by its precursor L-serine, and also by lactate and 3,5-DHBA, an agonist of the lactate receptor HCAR1. Such lactate-dependent effect is abolished when the astrocyte-specific phosphorylated-pathway (PP), which diverts glycolysis towards L-serine synthesis, is blocked. Consistently, lactate and 3,5-DHBA promoted the co-agonist binding site occupancy of CA1 post-synaptic NMDA receptors in hippocampal slices in a PP-dependent manner. Thus, a tight cross-talk between astrocytic energy metabolism and gliotransmission determines synaptic and cognitive processes.
Journal Article
Recent advances toward the sustainable management of invasive Xylosandrus ambrosia beetles
by
Meurisse, Nicolas
,
Rassati, Davide
,
New Zealand Forest Research Institute ; Scion [New Zealand]
in
adults
,
Agriculture
,
Asia
2021
We provide an overview of both traditional and innovative control tools for management of three Xylosandrus ambrosia beetles (Coleoptera: Curculionidae: Scolytinae), invasive species with a history of damage in forests, nurseries, orchards and urban areas. Xylosandrus compactus, X. crassiusculus and X. germanus are native to Asia, and currently established in several countries around the globe. Adult females bore galleries into the plant xylem inoculating mutualistic ambrosia fungi that serve as food source for the developing progeny. Tunneling activity results in chewed wood extrusion from entry holes, sap outflow, foliage wilting followed by canopy dieback, and branch and trunk necrosis. Maintaining plant health by reducing physiological stress is the first recommendation for long-term control. Baited traps, ethanol-treated bolts, trap logs and trap trees of selected species can be used to monitor Xylosandrus species. Conventional pest control methods are mostly ineffective against Xylosandrus beetles because of the pests' broad host range and rapid spread. Due to challenges with conventional control, more innovative control approaches are being tested, such as the optimization of the push-pull strategy based on specific attractant and repellent combinations, or the use of insecticide-treated netting. Biological control based on the release of entomopathogenic and mycoparasitic fungi, as well as the use of antagonistic bacteria, has yielded promising results. However, these technologies still require validation in real field conditions. Overall, we suggest that management efforts should primarily focus on reducing plant stress and potentially be combined with a multi-faceted approach for controlling Xylosandrus damage.
Journal Article
Tuta absoluta continues to disperse in Asia: damage, ongoing management and future challenges
by
Bayram, Yunus
,
Institut Sophia Agrobiotech (ISA) ; Institut National de la Recherche Agronomique (INRA)-Université Nice Sophia Antipolis (1965 - 2019) (UNS)-Centre National de la Recherche Scientifique (CNRS)
,
Ismoilov, Khasan
in
Agricultural practices
,
Agriculture
,
Biomedical and Life Sciences
2019
Since its initial detection in Turkey in 2009, the invasive destructive pest South American tomato pinworm Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae) has started its new invasion journey to east and invaded most Asian countries. This pest currently causes extensive damage to tomato production and potentially threatens key production areas such as China. To provide an overview of current status of T. absoluta in Asia, we have briefly reviewed the damage and economic impacts by this pest locally and discussed why this species has spread so rapidly among the countries. Moreover, ongoing integrated pest management options are summarized in newly invaded areas with an emphasis of discussing the potential control failures by chemical insecticides. Future research efforts on developing promising management technologies are recommended. Finally, we suggest building a cross-regional network to enhance the sustainable control of this pest.
Journal Article
Are agroforestry systems more productive than monocultures in Mediterranean countries? A meta-analysis
by
Castaño-Sánchez, Omar
,
Corinzia, Sebastiano Andrea
,
Gresta, Fabio
in
Agricultural management
,
Agricultural practices
,
Agricultural production
2023
AbstractAgroforestry is gaining interest due to its potential in enhancing climate resilience and sustainability of farming systems. In this meta-analysis, the crop yield in agroforestry system compared to the control (sole crop) from thirty-six experimental field trials in Mediterranean countries was assessed. The response variable Wlog(RR) (i.e., the weighted natural logarithm of the response ratio) was analyzed by the 95% confidence intervals of mean and by fitting eight linear mixed models. Fixed effects, namely the tree cover (low, medium, high), the tree species (ash tree, chestnut, cork oak, holm oak, olive, poplar, walnut), and the crop species (alfalfa, barley, durum wheat, faba bean, forage, oat, pasture, pea, winter wheat) were significant (P = 0.030, P = 0.017, and P = 0.014, respectively), while the system type (alley cropping, silvo-arable, silvo-pastoral) was not. Among management practices (variety, pruning, fertilization, irrigation, crop age classes, imposed warming and drought, harvest time), only the fertilization significantly improved the response variable (P = 0.006), while the interaction of pruning × crop species was marginally significant (P = 0.065). Relatively large study heterogeneity was observed (Q = 72.6, I2 = 72%), which is quite common for agronomic meta-analysis. On the contrary, publication bias based on funnel plots and the Trim and Fill method suggested symmetrical distribution of studies. The sensitivity analysis for significant models identified room for improvements. Overall, we observed a negative effect of trees on crop yield that could be ascribed to the competition for light. Nonetheless, facilitation could be expected under extreme climate events, provided that agricultural practices will maximize synergies among tree cover, tree species, crop species, and management. Future works are encouraged to focus on the overall benefit agroforestry can provide at the field and landscape level, along with long-term monitoring to assess the whole lifespan of these systems and other companion planting options and designs in the Mediterranean region.
Journal Article
Oxidative Stress and Assisted Reproduction: A Comprehensive Review of Its Pathophysiological Role and Strategies for Optimizing Embryo Culture Environment
by
Maldonado Rosas, Israel
,
University of Massachusetts Medical School [Worcester] (UMASS) ; University of Massachusetts System (UMASS)
,
Universiti Teknologi MARA [Shah Alam] (UiTM)
in
Antioxidants
,
Apoptosis
,
assisted reproductive technologies
2022
Oxidative stress (OS) due to an imbalance between reactive oxygen species (ROS) and antioxidants has been established as an important factor that can negatively affect the outcomes of assisted reproductive techniques (ARTs). Excess ROS exert their pathological effects through damage to cellular lipids, organelles, and DNA, alteration of enzymatic function, and apoptosis. ROS can be produced intracellularly, from immature sperm, oocytes, and embryos. Additionally, several external factors may induce high ROS production in the ART setup, including atmospheric oxygen, CO2 incubators, consumables, visible light, temperature, humidity, volatile organic compounds, and culture media additives. Pathological amounts of ROS can also be generated during the cryopreservation-thawing process of gametes or embryos. Generally, these factors can act at any stage during ART, from gamete preparation to embryo development, till the blastocyst stage. In this review, we discuss the in vitro conditions and environmental factors responsible for the induction of OS in an ART setting. In addition, we describe the effects of OS on gametes and embryos. Furthermore, we highlight strategies to ameliorate the impact of OS during the whole human embryo culture period, from gametes to blastocyst stage.
Journal Article
Sublethal and hormesis effects of imidacloprid on the soybean aphid Aphis glycines
2015
The soybean aphid, Aphis glycines Matsumura, is a major pest in soybean crop. Current management of this pest relies mainly on insecticides applications, and the neonicotinoid imidacloprid has been proposed as an effective insecticide to control A. glycines in soybean field. Imidacloprid at lethal concentrations not only exerts acute toxicity to A. glycines, but also cause various biological changes when aphids are chronically exposed to lower concentrations. In this study, we assessed the effects of a low-lethal (0.20 mg L-1) and two sublethal (0.05 and 0.10 mg L-1) imidacloprid concentrations on various A. glycines life history traits. Aphid exposure to 0.20 mg L-1 imidacloprid caused slower juvenile development, shorter reproductive period, and reduced adult longevity, fecundity and total lifespan. Stimulatory effects, i.e. hormesis, on reproduction and immature development duration were observed in aphids exposed to the lower sublethal imidacloprid concentrations. Consequently, the net reproduction rate (R-0) was significantly higher than in the control aphids. These findings stress the importance of the actual imidacloprid concentration in its toxicological properties on A. glycines. Therefore, our results would be useful for assessing the overall effects of imidacloprid on A. glycines and for optimizing integrated pest management programs targeting this pest.
Journal Article