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Effect of Root/Leaf Temperature Differentials on Root/Shoot Ratios in Some Pasture Grasses and Clover 总被引:17,自引:1,他引:16
Twelve pasture species were grown in the same aerial environment,but with five constant soil temperatures ranging from 5 to 35°C, to determine the influence of root temperature on theweight of roots per unit weight of foliage (R/S ratio). Thisratio varied by a factor of 2 to 8 within species. Using maximum yield of foliage to indicate the optimum soiltemperature for each species, it was found that the R/S ratiowas lowest at the optimum soil temperature, and was progressivelyhigher at soil temperatures above and below the optimum withonly slight exceptions. This experimental manipulation of R/Sratios suggests that the partitioning of photosynthate is controlledby the relative rates of photosynthesis and root absorption,by inverse proportion: Root mass x rate(abeorption) 相似文献
104.
Rapid indexing of the sunblotch disease of avocados using a complementary DNA probe to avocado sunblotch viroid 总被引:1,自引:0,他引:1
PETER PALUKAITIS ‡ REW G. RAKOWSKI DONALD McE. ALEXANDER† ROBERT H. SYMONS 《The Annals of applied biology》1981,98(3):439-449
A routine procedure has been established for the sensitive and specific detection of avocado sunblotch viroid in partially purified nucleic acid extracts of avocado leaves by hybridisation analysis with 32P-complementary DNA prepared against the purified viroid. Avocado sunblotch viroid was shown to be present in 12 avocado trees that had indexed positive in a biological test for sunblotch disease but was absent from 10 trees that indexed negative. The complete correlation between sunblotch disease and the presence of viroid indicates that the complementary DNA hybridisation assay procedure can be used for the indexing of sunblotch disease. The overall procedure of leaf extraction and hybridisation analysis can be completed in 5 days and is to be compared with up to 2 yr required for indexing by biological methods. The level of avocado sunblotch viroid in partially purified nucleic acid extracts of a number of different sources of sunblotch infected avocado leaves was found to vary 10 000-fold from 0.2% to 2 × 10-5% by weight. The lower limit of detectability of the viroid by the hybridisation assay is considered to be about 10-5% by weight; this is at least 103 times more sensitive than the detection of the viroid by polyacrylamide gel electrophoresis of the leaf nucleic acid extracts followed by staining. 相似文献
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ALEXANDRE M. ANESIO REW J. HODSON† REAS FRITZ‡ ROLAND PSENNER‡ BIRGIT SATTLER‡ 《Global Change Biology》2009,15(4):955-960
Cryoconite holes, which can cover 0.1–10% of the surface area of glaciers, are small, water-filled depressions (typically <1 m in diameter and usually <0.5 m deep) that form on the surface of glaciers when solar-heated inorganic and organic debris melts into the ice. Recent studies show that cryoconites are colonized by a diverse range of microorganisms, including viruses, bacteria and algae. Whether microbial communities on the surface of glaciers are actively influencing biogeochemical cycles or are just present in a dormant state has been a matter of debate for long time. Here, we report primary production and community respiration of cryoconite holes upon glaciers in Svalbard, Greenland and the European Alps. Microbial activity in cryoconite holes is high despite maximum temperatures seldom exceeding 0.1 °C. In situ primary production and respiration in cryoconites during the summer is often comparable with that found in soils in warmer and nutrient richer regions. Considering only glacier areas outside Antarctica and a conservative average cryoconite distribution on glacial surfaces, we found that on a global basis cryoconite holes have the potential to fix as much as 64 Gg of carbon per year (i.e. 98 Gg of photosynthesis minus 34 Gg of community respiration). Most lakes and rivers are generally considered as heterotrophic systems, but our results suggest that glaciers, which contain 75% of the freshwater of the planet, are largely autotrophic systems. 相似文献
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MARY BETH REW M. ZACHARIAH PEERY STEVEN R. BEISSINGER MARTINE BRUB JEFFREY D. LOZIER EMILY M. RUBIDGE PER J. PALSB
LL 《Molecular ecology resources》2006,6(1):241-244
We developed 31 novel, polymorphic microsatellite loci in the marbled murrelet (Brachyramphus marmoratus), a critically endangered seabird. Variability was tested on 15 individuals from the Santa Cruz, California population, with each locus characterized by two to 12 alleles. Observed levels of heterozygosity ranged from 0.13 to 0.93. These loci provide a valuable means of assessing the population structure and demographic parameters of this species, which may be critical to its conservation across a fragmented habitat. 相似文献
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Defoliation alters the relative contributions of recent and non-recent assimilate to root exudation from Festuca rubra 总被引:2,自引:0,他引:2
ERIC PATERSON BARRY THORNTON REW J. MIDWOOD & ALLAN SIM 《Plant, cell & environment》2005,28(12):1525-1533
The deposition of organic compounds from plant roots is a key determinant of rhizosphere microbial activity and community structure. Consequently, C-flow from roots to soil is an important process in coupling plant and microbial productivity, via impacts on microbial nutrient cycling in soil. Experimentally, isotopic tracers (13C or 14C) are used to track C inputs to soil and microbial communities. However, in many such studies the relationship between labelled C-flows and total C-flows are not established, limiting the interpretative value of the results. In this study, we applied steady-state near natural abundance 13CO2 labelling to determine the impact of partial defoliation of Festuca rubra on root exudation. This approach in axenic culture facilitated determination of the contribution of pre- and post-defoliation assimilates both to root C-flow and plant tissues. The results demonstrated that total root exudation was increased in the two days following defoliation. This was concurrent with reduced net CO2 assimilation and reduced allocation of post-defoliation assimilates below-ground and to active root meristems. Through determination of the δ13C of root exudates, it was established that the source of the increased root exudation was pre-defoliation assimilate. However, this response was transient, with reduced deposition of pre- and post-defoliation assimilates from roots during the period 2–4 d following defoliation. The results highlight the limitations of pulse-labelling approaches as a means of quantifying impacts of treatments on root exudation, particularly where the treatment is likely to affect plant C-partitioning or the balance between deposition to, and re-mobilization from, C-storage pools. 相似文献