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81.
Environmental monitoring of the biocontrol agent Pantoea agglomerans CPA‐2 applied to citrus fruit at preharvest
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L. Soto‐Muñoz R. Torres J. Usall I. Viñas S. Dashevskaya N. Teixidó 《The Annals of applied biology》2015,167(2):250-261
The aim of this study was to evaluate the environmental fate and behaviour of the biocontrol product based on Pantoea agglomerans CPA‐2 cells after its release into the field. Three different methods, dilution plating, quantitative real‐time PCR (qPCR) and propidium monoazide combined with qPCR (PMA‐qPCR) were used to track the CPA‐2 population. Populations quantified by qPCR were statistically different compared with those by the PMA‐qPCR and dilution plating methods. In addition, the spray dispersion of the CPA‐2 treatment was evaluated using water‐sensitive papers. A lack of dispersion of the CPA‐2 treatment was observed at distances of 2.5 ± 0.5 m. The presence and persistence of CPA‐2 in the environment were monitored in different areas, by dilution plating and confirmed by conventional PCR. The results showed that CPA‐2 can survive but not proliferate on weed and leaves. The persistence on inert surfaces, such as motorised backpack sprayer, gloves and working clothes, was less than 7 days. In conclusion, PMA‐qPCR was a potential tool for fast and specific monitoring of viable populations of CPA‐2 and it gave valuable information on population behaviour. Moreover, the results demonstrate that CPA‐2 would not present a risk for the environment because of its low establishment, survival and dispersion. 相似文献
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Variability in nitrogen stable isotope ratios of macroalgae: consequences for the identification of nitrogen sources
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In our research, we collected and analyzed numerous macroalgal specimens (738) for isotopic analysis sampled over a year at monthly intervals across 20 sites within the Urías lagoon complex, a typical subtropical coastal ecosystem located in the Gulf of California. We quantified and characterized (chemically and isotopically) the N loads received by Urías throughout a year. We studied the spatial‐temporal variation of the chemical forms and isotopic signals of the available N in the water column, and we monitored in situ different environmental variables and other hydrodynamic parameters. Multiple N sources (e.g., atmospheric, sewage, seafood processing, agriculture and aquaculture effluents) and biogeochemical reactions related to the N cycle (e.g., ammonia volatilization, nitrification and denitrification) co‐occurring across the ecosystem, result in a mixture of chemical species and isotopic compositions of available N in the water column. Increased variability was observed in the δ15N values of macroalgae (0.41‰–22.67‰). Based on our results, the variation in δ15N was best explained by spatio‐temporal changes in available N and not necessarily related to the N sources. The variability was also explained by the differences in macroalgal biology among functional groups, species and/or individuals. Although the δ15N‐macroalgae technique was a useful tool to identify N sources, its application in coastal ecosystems receiving multiple N sources, with changing environmental conditions influencing biogeochemical processes, and high diversity of ephemeral macroalgal species, could be less sensitive and have less predictive power. 相似文献
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Microsite determinants of variability in seedling and cutting establishment in tropical forest restoration plantations
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David Douterlungne Bruce G. Ferguson Ilyas Siddique Lorena Soto‐Pinto Guillermo Jímenez‐Ferrer Mayra E. Gavito 《Restoration Ecology》2015,23(6):861-871
Plantations are frequently established on abandoned pasture lands to speed forest recovery. This strategy requires matching a tree species mix with the prevailing microenvironmental conditions. In four degraded pastures of the Mexican Lacandon rainforest, we planted 2,400 trees of 6 species (Guazuma ulmifolia, Inga vera, Ochroma pyramidale, Trichospermum mexicanum, Bursera simaruba, and Spondias mombin) to (1) test survival, initial growth, and establishment costs; (2) evaluate whether vegetative cuttings outperform direct seeding or transplants of nursery‐raised seedlings; (3) determine tree response to herbaceous dominance and soil compaction; and (4) scrutinize the results' consistency across sites and sampling scales of tree–microenvironment interactions (individual tree vs. averaged plot responses). After 2 years, overall survival and growth rates were high for 2 of 3 nursery‐raised species. Contrary to expectations, all seedlings outperformed the cuttings while direct seeding resulted in a cost‐effective option of intermediate efficacy. The impact of soil resistance to root penetration on tree biomass accumulation was species dependent while bulk density was not relevant. Soil‐covering, herbaceous vegetation accelerated growth in 3 of 4 tested species during the dry season. At this initial stage of forest restoration in abandoned pastures, Guazuma and Trichospermum were the most restoration‐effective species. Costs can be reduced by using direct‐seeding Inga and avoiding weeding during the dry season. Finally, our results demonstrate how species selection trials can be misleading due to site variations in tree response and to sampling scales that fail to account for small‐scale environmental heterogeneity. We recommend ways to improve the design of restoration trials. 相似文献
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Maria R. Casta?eda Denise Selivon Vicente Hernández-Ortiz Alberto Soto Nelson A. Canal 《ZooKeys》2015,(540):61-81
The West Indian fruit fly, Anastrepha
obliqua, is one of seven species of quarantine importance of its genus and is one of the most economically important fruit fly pests in Colombia. The taxonomic status of this species is a key issue for further implementation of any pest management program. Several molecular studies have shown enough variability within Anastrepha
obliqua to suggest its taxonomic status could be revised; however, there are no morphological studies supporting this hypothesis. The aim of this work was to describe the morphological variability of Colombian populations of Anastrepha
obliqua, comparing this variability with that of other samples from the Neotropics. Measurements were performed on individuals from 11 populations collected from different geographic Colombian localities and were compared with populations from Mexico (2), Dominica Island (1), Peru (1) and Brazil (2). Linear morphometric analyses were performed using 23 female morphological traits, including seven variables of the aculeus, three of the thorax, and six of the wing; seven ratios among them were also considered. Discriminant function analyses showed significant morphological differentiation among the Colombian populations, separating them into two groups. Furthermore, in the comparisons between Colombian samples with those from other countries, three clusters were observed. The possibility of finding more than one species within the nominal Anastrepha
obliqua population is discussed. 相似文献
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Hahn Ingo Vergara Pablo M. Baumeister Julia Soto Gerardo E. Römer Uwe 《Population Ecology》2015,57(1):143-149
It is a long-standing question how tsunamis can influence wild populations of animals and plants. Here, we assessed short-term changes in the population of the critically endangered Juan Fernández Firecrown (Sephanoides fernandensis) by using abundance data recorded 1 year before and 1 year after the 2010 Chilean tsunami. We tested that the abundance of Firecrowns declined in the areas where the tsunami caused the massive loss of Cabbage Trees, an important seasonal nectar source for Firecrowns. The abundance of Juan Fernández Firecrowns decreased after the tsunami, but also was affected by the habitat type, altitude, and the abundance of Cabbage Trees. Firecrowns tended to be more abundant in settlement areas than in native forest whereas the reduction in Firecrown abundance after the tsunami was more intense in settlement areas than in native forest. As expected, this habitat effect was dependent on the massive loss of Cabbage Trees in settlement areas following the tsunami. In spite of the short-term nature of our data, our results are conclusive in showing that the loss of an important food source causes short-term changes in the distribution and abundance of Firecrowns, which, in turn, could contribute to population decline. 相似文献