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51.
Ryan E. Galt Damian Parr Julia Van Soelen Kim Jessica Beckett Maggie Lickter Heidi Ballard 《Agriculture and Human Values》2013,30(1):129-142
In this paper we use a critically reflective research approach to analyze our efforts at transformative learning in food systems education in a land grant university. As a team of learners across the educational hierarchy, we apply scholarly tools to the teaching process and learning outcomes of student-centered inquiries in a food systems course. The course, an interdisciplinary, lower division undergraduate course at the University of California, Davis is part of a new undergraduate major in Sustainable Agriculture and Food Systems. We provide an overview of the course’s core elements—labs, exams, assignments, and lectures—as they relate to social constructivist learning theory and student-centered inquiries. Then, through qualitative analysis of students’ reflective essays about their learning experiences in the course, we demonstrate important transformative outcomes of student-centered inquiries: (1) most students confronted the commodity fetish and tried to reconcile tensions between what the food system is and ought to be, and (2) students repositioned themselves, their thinking, and social deliberation in relation to the food system. Students’ reflections point to the power of learning that emerges through their inquiry process, including in the field, and from critical self-reflection. We also highlight the importance of reflective essays in both reinforcing experiential learning and in helping instructors to better understand students’ learning vis-à-vis our teaching. 相似文献
52.
David B. Lindenmayer Ross Cunningham Mason Crane Damian Michael Rebecca Montague-Drake 《Landscape Ecology》2007,22(10):1555-1562
Despite increasing revegetation of cleared landscapes around the world, there is limited research on the implications of different
types of plantings for birdlife. We examined the “intersection effect”, whereby species richness is higher at the intersection
of “corridors” or vegetation strips for birds inhabiting replanted areas. We also examined individual species responses. Replicated
sites at the intersections of plantings were compared with “internal controls” (located in the same plantings ∼100 m from
intersections), “external controls”(sites in isolated linear plantings), and block plantings. We surveyed the 39 sites in
our experimental design repeatedly – on different days by different observers and in different seasons. We found no significant
difference in species richness between intersections and block plantings, but intersections had higher species richness than
isolated linear strips and the internal controls. Similar results were found for bird assemblage scores derived by correspondence
analysis. We found evidence of extra-variation at the farm-level for species richness and derived assemblage scores, suggesting
a farm-scale response. This suggests the importance of other (often unmeasured) factors at the farm level (e.g. baiting for
feral animals). Our results suggest that replanting programs aimed at maximizing bird species richness may benefit from consideration
of planting geometry. In particular, linking strip plantings to create intersections and/or establishing block plantings appear
to be superior to isolated strips for aggregate species richness. 相似文献
53.
Managing invasive plants on public conservation forestlands: Application of a bio-economic model 总被引:1,自引:0,他引:1
Public conservation forestlands protect natural resources, provide wildlife habitat, and service a multi-billion dollar recreation industry. Invasive upland plants (IPs) threaten to dramatically reduce the flow of goods and services from these lands. In the late 1990s, a Florida (USA) state program began combating IPs on public conservation lands. By 2007, the program had controlled roughly 1/3 of the 1.5 million IP-infested acres, primarily due to a surge in expenditures that began in 2001 and peaked in 2005. This study evaluates the effectiveness and efficiency of the program by simulating the costs and benefits of IP control through 2016 under five feasible policy alternatives: (I) Do nothing, (II) Maintenance control, (III) 2001–2004 level (of program spending), (IV) 2005 level, and (V) Maximum net present value. To evaluate the policies, we construct a bio-economic model that is parameterized using observations of IP coverage and data from 11 state regions. Given the uncertain nature of IP spread, we simulate the policies' economic impacts under two plausible spread rates. Simulation results indicate that the program's recent efforts are highly effective – generating up to $865.1 million in present value net benefits through 2016 – but less efficient than more costly, front-loaded spending that can generate up to 4.37 times more net benefits. 相似文献
54.
Hamid Khazaei Damian Wach Alicja Pecio Albert Vandenberg Frederick L. Stoddard 《Plant Breeding》2019,138(6):761-769
Increasing productivity through improvement of photosynthesis in faba bean breeding programmes requires understanding of the genetic control of photosynthesis‐related traits. Hence, we investigated the gene action of leaf area, gas exchange traits, canopy temperature, chlorophyll content, chlorophyll fluorescence parameters and biomass. We chose inbred lines derived from cultivars 'Aurora' (Sweden) and 'Mélodie' (France) along with an Andean accession, ILB 938, crossed them (Aurora/2 × Mélodie/2, ILB 938/2 × Aurora/2 and Mélodie/2 × ILB 938/2), and prepared the six standard generations for quantitative analysis (P1, P2, F1, F2, B1, and B2). Gene action was complex for each trait, involving additive and dominance gene actions and interactions. Additive gene action was important for SPAD, photosynthetic rate, stomatal conductance and Fv/Fm. Dominance effect was important for biomass production. It is suggested that breeders selecting for productivity can maximize genetic gain by selecting early generations for canopy temperature, SPAD and Fv/Fm, then later generations for biomass. The information on genetics of various contributing traits of photosynthesis will assist plant breeders in choosing an appropriate breeding strategy for enhancing productivity in faba bean. 相似文献
55.
Frank D Appelqvist I Piyasiri U Delahunty C 《Journal of agricultural and food chemistry》2012,60(9):2264-2273
The presence of fat in food plays an important role in the way aroma is released during consumption and in the creation of the overall sensory impression. Fat acts as a reservoir for lipophilic volatile compounds and modulates the timing and delivery of aroma compounds in a unique manner. Despite considerable research, reproducible in vitro methods for measuring the effect of fat on volatile release are lacking. An open in vitro cell was used to simulate the open human naso-oropharygeal system and was interfaced with a proton transfer reaction mass spectrometer (PTR-MS) to examine some of the fundamental effects of fat on dynamic volatile release in liquid fat emulsions. Lipid emulsions with various fat contents (0-20%) and droplet sizes (0.25, 0.5, and 5.0 μM) were spiked with flavor volatiles representing a range of lipophilicity (K(o/w) = 1-1380). Preloaded syringes of spiked emulsion were injected into the cell, and temporal changes in release were measured under dynamic conditions. Significant differences in release curves were measured according to the lipid content of emulsions, the vapor pressure, and K(o/w) values of the volatile compounds. With increasing addition of fat, the critical volatile release parameters, maximum concentration (I(max)), time to maximum concentration (T(max)), and the integrated area under the concentration curve (AUC), were affected. The in vitro curves were reproducible and in agreement with theory and correlated with the preswallow phase of in vivo release data. An exponential model was used to calculate changes in mass transfer rates with increased fat addition. 相似文献
56.
57.
Juan Damian Marques Fong Tsugiyuki Masunaga Kuniaki Sato 《Paddy and Water Environment》2016,14(1):211-220
The use of water saving (WS) techniques in irrigated rice production is a key factor to increase and sustain rice production in water scarce regions. The purpose of the present study is to evaluate the influence of water management upon phenology, morphology, yield components, and the relationship with soil chemical properties. Pot experiments were carried out in greenhouse, on two different soil types “Typic Fluvaquent (GS) and Typic Paleudult (RS)”. In both soils, five treatments were conducted under continuous flooding “Control” (T1), flooding-drainage at 2, 3, and 4 weeks after heading (T2, T3, and T4) and field capacity (T5). In terms of morphological components or grain yield, GS showed better performance than RS, the high Mn availability in RS was responsible for the poor performance. However, regardless of soil type the establishment of WS period at post-heading did not affect significantly any of the evaluated parameters compared with Control. Shifting from anaerobic to aerobic condition at GS-T2 increased grain yield (8 %), biomass (12 %), and root biomass (16 %) as well as reduced grain sterility by 15 and 14 % for GS and RS, respectively. On soil properties, the WS period showed that, GS-Fe availability as well as RS-Mn availability were reduced by 54 and 22 %, respectively, to more optimal levels in response to changes in redox potential (Eh) and reduction of pH. The results indicated that establishment of WS period at post-heading stage is a suitable strategy not only for reducing water input but also to improve morphological behavior, to reduce sterility as well as to control Fe and Mn availability without negative effects on grain yield. 相似文献
58.
Matos Priscila Silva Cherubin Maurício Roberto Damian Júnior Melo Rocha Fernando Igne Pereira Marcos Gervasio Zonta Everaldo 《Agroforestry Systems》2022,96(5-6):897-908
Agroforestry Systems - The Soil Management Assessment Framework (SMAF) has successfully been tested as an objective tool to quantify land use and management effects on soil health, including under... 相似文献
59.
During courtship flights, males of some hummingbird species produce diverse sounds with tail feathers of varying shapes. We show that these sounds are produced by air flowing past a feather, causing it to aeroelastically flutter and generate flutter-induced sound. Scanning laser doppler vibrometery and high-speed video of individual feathers of different sizes and shapes in a wind tunnel revealed multiple vibratory modes that produce a range of acoustic frequencies and harmonic structures. Neighboring feathers can be aerodynamically coupled and flutter either at the same frequency, resulting in sympathetic vibrations that increase loudness, or at different frequencies, resulting in audible interaction frequencies. Aeroelastic flutter is intrinsic to stiff airfoils such as feathers and thus explains tonal sounds that are common in bird flight. 相似文献
60.
Ekiert DC Friesen RH Bhabha G Kwaks T Jongeneelen M Yu W Ophorst C Cox F Korse HJ Brandenburg B Vogels R Brakenhoff JP Kompier R Koldijk MH Cornelissen LA Poon LL Peiris M Koudstaal W Wilson IA Goudsmit J 《Science (New York, N.Y.)》2011,333(6044):843-850
Current flu vaccines provide only limited coverage against seasonal strains of influenza viruses. The identification of V(H)1-69 antibodies that broadly neutralize almost all influenza A group 1 viruses constituted a breakthrough in the influenza field. Here, we report the isolation and characterization of a human monoclonal antibody CR8020 with broad neutralizing activity against most group 2 viruses, including H3N2 and H7N7, which cause severe human infection. The crystal structure of Fab CR8020 with the 1968 pandemic H3 hemagglutinin (HA) reveals a highly conserved epitope in the HA stalk distinct from the epitope recognized by the V(H)1-69 group 1 antibodies. Thus, a cocktail of two antibodies may be sufficient to neutralize most influenza A subtypes and, hence, enable development of a universal flu vaccine and broad-spectrum antibody therapies. 相似文献