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Pekka Vanhala Kristiina Karhu Mikko Tuomi Katarina Björklöf Hannu Fritze Jari Liski 《Soil biology & biochemistry》2008,40(7):1758-1764
Much effort has been made to improve understanding of factors controlling the temperature dependence of soil organic matter (SOM) decomposition. The question of how soils formed in different geographical locations and conditions respond to temperature changes is still open. In addition to climate, residence times of soil organic matter are controlled by its decomposability and microbial community. In this work we hypothesized that the decomposition of SOM is adapted to the prevailing SOM quality and climatic conditions. This should result in different temperature vs. decomposition curves for northern and southern soils. We studied short-term temperature dependence of SOM decomposition near the northern and southern borders of the boreal forest zone using a Gaussian model. As carbon mineralization rate is driven by microbial activity, we focused on organic carbon fractions available to microbes and the size, composition and functioning of microbial communities in the soil. Despite differences in microbial community structure and behavior, similar amounts and qualities of the microbially available carbon led to similar temperature dependences of carbon mineralization in the north and south. The overall soil respiration rate level was higher in spruce forest sites than in pine forest sites irrespective of climate conditions. Our results do not mean that there is no risk of carbon losses from northern soils due to warming climate conditions. As temperature sensitivity of the decomposition increases with decreasing temperature regime, the proportional increase in the decomposition rate in northern latitudes might lead to significant carbon losses from the soils. 相似文献
425.
Adhesion of red blood cells (RBCs) to endothelial cells (ECs) is usually insignificant but an enhanced adhesion has been observed in various diseases associated with vascular complications. This abnormal adhesion under pathological conditions such as sickle cell disease has been correlated with increased levels of various plasma proteins but the detailed underlying mechanism(s) remains unclear. Usually it is assumed that the proadhesive effects of plasma proteins originate from ligand interactions cross-linking receptors on adjacent cells, but explicit results detailing binding sites or receptors for some proteins (e.g., fibrinogen) on either RBC or EC surfaces that would support this model are missing. In this study, the authors tested whether there is an alternative mechanism. Their results demonstrate that dextran 2 MDa promotes the adhesion of normal RBCs to thrombin-activated ECs and that this effect becomes more pronounced with increasing thrombin concentration or with prolonged thrombin incubation time. It is concluded that depletion interaction originating from nonadsorbing macromolecules (i.e., dextran) can modulate the adhesion of red blood cells to thrombin-activated EC. This study thereby suggests macromolecular depletion as an alternative mechanism for the adhesion-promoting effects of nonadsorbing plasma proteins. These findings should not only aid in getting a better understanding of diseases associated with vascular complications but should also have many potential applications in biomedical or biotechnological areas that require the control of cell-cell or cell surface interactions. 相似文献
426.
Eva Blixt Åke Olson Björn Lindahl Annika Djurle Jonathan Yuen 《European journal of plant pathology / European Foundation for Plant Pathology》2010,126(3):373-386
The fungal communities on wheat leaves showing symptoms similar to stagonospora nodorum blotch were analysed using terminal
restriction fragment length polymorphism (T-RFLP). Collection of diseased leaves was carried out in eleven winter wheat fields
located in three regions of Sweden during mid-July in 2003–2005. Fourteen different fungal species were found on the leaves
out of which thirteen were identified to the species level and one to the genus level. The majority of the samples had between
one and four species present of which at least one was a pathogen. Among the analysed leaves three major leaf pathogens were
found: Phaeosphaeria nodorum was common during 2003 and 2004, Mycosphaerella graminicola dominated during 2005. Pyrenophora tritici-repentis was present in all fields, but sometimes in just a few samples. Phaeosphaeria nodorum and P. tritici-repentis often co-occurred on the same leaf. In addition, seven species of yeast and three saprophytes frequently occurred on the
leaves every year. The variation in fungal community was largest between the different years while the region of Uppland diverged
from the other two regions in species composition. No significant differences in fungal communities were found within a single
field, indicating a uniform community at the lowest spatial level. 相似文献
427.
Emad Farahat Peng Zhang Björn E. Gunnarson Mauricio Fuentes Petter Stridbeck 《Scandinavian Journal of Forest Research》2018,33(2):114-124
Standing dead trees (snags) play important roles in forest ecology by storing carbon as well as providing habitats for many species. Moreover, snags preserved for hundreds of years can provide useful data to extend tree-ring chronologies used for climatological and ecological studies beyond the lifespans of living trees. Here we examined the growth patterns of Scots pine snags from the central Scandinavian Mountains, in relation to still living trees. Using changes point analyses, we showed that a majority (74%) of the snags displayed significant negative growth changes prior (on average 17 years) to death. Change points around the same years were also seen in living trees, but they recovered their growth. The average growth reduction of snags showing negative growth changes before death was 46%. In most cases the final growth change points coincided with very cold summers, or to a lesser degree to period of cool summers. It was suggested that pines ending up as snags were less resilient than the trees which continued living, and thus not able to recover after cold summer events. Since the snag growth reductions prior to death were partly unrelated to climate, care should be taken when using such data in dendroclimatological studies. 相似文献
428.
Journal of Plant Diseases and Protection - The cereal cyst nematode Heterodera avenae has been reported in wheat fields in Egypt; however no information is available on the hatch of second-stage... 相似文献
429.
Marius Hauglin Endre Hofstad Hansen Erik Næsset Bjørn Even Busterud Jon Glenn Omholt Gjevestad Terje Gobakken 《Scandinavian Journal of Forest Research》2017,32(8):774-781
Accurate positioning of single trees registered automatically during harvesting operations opens up new possibilities for reducing the field sampling effort in forest inventories utilising remotely sensed data. In the present study, we propose to use a harvester to collect single-tree data during regular harvest operations and use these data to substitute or supplement traditional measurements on sample plots. Today’s harvesters are capable of recording single-tree information such as species and diameter at breast height, and a cut-to-length harvester was equipped with an integrated accurate positioning system based on real-time kinematic global satellite positioning, as well as a low-cost global navigation satellite system (GNSS) receiver mounted directly on the harvester head. Positions from 73 trees were evaluated and compared to coordinates obtained using a total station. At the single-tree level, the mean error for the integrated positioning system was 0.94?m. The low-cost GNSS receiver mounted on the harvester head yielded a mean error of 7.00?m. The sub-meter accuracy obtained with the integrated system suggests that data acquired with a harvester using this positioning system may have a great potential as a method for single-tree field data acquisition. 相似文献
430.
Injuries and deformities in fish: their potential impacts upon aquacultural production and welfare 总被引:1,自引:0,他引:1
Noble C Jones HA Damsgård B Flood MJ Midling KØ Roque A Sæther BS Cottee SY 《Fish physiology and biochemistry》2012,38(1):61-83
Fish can be the recipients of numerous injuries that are potentially deleterious to aquacultural production performance and
welfare. This review will employ a systematic approach that classifies injuries in relation to specific anatomical areas of
the fish and will evaluate the effects of injury upon production and welfare. The selected areas include the (1) mouth, (2)
eye, (3) epidermis and (4) fins. These areas cover a large number of external anatomical features that can be injured during
aquacultural procedures and husbandry practices. In particular, these injuries can be diagnosed on live fish, in a farm environment.
For each anatomical feature, this review addresses (a) its structure and function and (b) defines key injuries that can affect
the fish from a production and a welfare perspective. Particular attention is then given to (c) defining known and potential
aquacultural risk factors before (d) identifying and outlining potential short- and long-term farming practices and mitigation
strategies to reduce the incidence and prevalence of these injuries. The review then concludes with an analysis of potential
synergies between risk factors the type of injury, in addition to identifying potential synergies in mitigation strategies.
The paper covers both aquaculture and capture-based aquaculture. 相似文献