The Experts below are selected from a list of 82716 Experts worldwide ranked by ideXlab platform
Kaya S. - One of the best experts on this subject based on the ideXlab platform.
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The first isolation of Cryptococcus neoformans from Eucalyptus trees in South Aegean and Mediterranean Regions of Anatolia in Turkey despite Taurus Mountains alkalinity
'Springer Science and Business Media LLC', 2004Co-Authors: Ergin C., Lkit M., Hilmiolu S., G̈lbaba A.g., Demirci M., Kaya S.Abstract:Eucalyptus trees are widespread in subtropical parts of Turkey that have alkaline environments due to the Soil structure of Taurus Mountains. In this study, the existence of Cryptococcus neoformans in eucalyptus trees in the South Aegean and Mediterranean Regions of Anatolia, Turkey, was screened between March 1998 and September 2002. Only one strain of Cryptococcus neoformans var. grubii (Serotype A) was isolated from 1175 eucalyptus samples including debris and flowers in culture by Guizotia abyssinica agar. The environmental niche of the isolate was Eucalyptus camaldulensis Dehn in the Gokova Region, in the western part of the Taurus Mountains. In this study, the existence of Cryptococcus neoformans was shown in the eucalyptus flora of Turkey despite the alkaline Soil Condition
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Taurus Mountains alkalinity
'Springer Science and Business Media LLC', 2004Co-Authors: Ergin C., Ilkit M, Demirci M., Hilmioglu S, Ag Gulbaba, Kaya S.Abstract:Eucalyptus trees are widespread in subtropical parts of Turkey that have alkaline environments due to the Soil structure of Taurus Mountains. In this study, the existence of Cryptococcus neoformans in eucalyptus trees in the South Aegean and Mediterranean Regions of Anatolia, Turkey, was screened between March 1998 and September 2002. Only one strain of Cryptococcus neoformans var. grubii (Serotype A) was isolated from 1175 eucalyptus samples including debris and flowers in culture by Guizotia abyssinica agar. The environmental niche of the isolate was Eucalyptus camaldulensis Dehn in the Gokova Region, in the western part of the Taurus Mountains. In this study, the existence of Cryptococcus neoformans was shown in the eucalyptus flora of Turkey despite the alkaline Soil Condition
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The first isolation of Cryptococcus neoformans from Eucalyptus trees in South Aegean and Mediterranean Regions of Anatolia in Turkey despite Taurus Mountains alkalinity
'Springer Science and Business Media LLC', 2004Co-Authors: Ergin C., Lkit M., Hilmiolu S., Demirci M., G¨lbaba A.g., Kaya S.Abstract:PubMedID: 15487319Eucalyptus trees are widespread in subtropical parts of Turkey that have alkaline environments due to the Soil structure of Taurus Mountains. In this study, the existence of Cryptococcus neoformans in eucalyptus trees in the South Aegean and Mediterranean Regions of Anatolia, Turkey, was screened between March 1998 and September 2002. Only one strain of Cryptococcus neoformans var. grubii (Serotype A) was isolated from 1175 eucalyptus samples including debris and flowers in culture by Guizotia abyssinica agar. The environmental niche of the isolate was Eucalyptus camaldulensis Dehn in the Gokova Region, in the western part of the Taurus Mountains. In this study, the existence of Cryptococcus neoformans was shown in the eucalyptus flora of Turkey despite the alkaline Soil Condition
Yongming Luo - One of the best experts on this subject based on the ideXlab platform.
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cu isotopic compositions in elsholtzia splendens influence of Soil Condition and growth period on cu isotopic fractionation in plant tissue
Chemical Geology, 2016Co-Authors: Xiangkun Zhu, Yongming LuoAbstract:This study investigates the magnitude and direction of Cu isotopic fractionation in the Cu-tolerant, strategy I plant, Elsholtzia splendens, considering the effect of Soil Condition and plant growth cycle. Uptake of Cu by E. splendens from Soil was found to favor light Cu isotopic enrichment (δ65Cu < 0‰) due to reduction at the Soil–root interface. The magnitude of fractionation between Soil and plant was found to be dependent on free Cu ion species in Soil solution correlated with pH value of Soil other than the phytoavailable component of Soil or total Soil for the same parent Soil. Cu isotopic fractionation occurs in plant, the fractionation direction and magnitude would vary between different plant organs (i.e., root and stem) as well as different plant tissues (i.e., xylem and phloem). Remobilization of Cu associated with plant senescence was found to have a considerable effect on Cu isotopic fractionation within the plant, and the fractionation factor was found to change with the degree of remobilization. Overall, the results show that the Cu isotopic composition is useful as a tracer for probing the mechanisms of Cu translocation and retranslocation between Soil and plants, and within plants.
James W. Rumsey - One of the best experts on this subject based on the ideXlab platform.
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Prediction of agricultural implement draft using an instrumented analog tillage tool
Soil & Tillage Research, 1996Co-Authors: James L. Glancey, William J. Chancellor, Shrini K. Upadhyaya, James W. RumseyAbstract:Abstract A new approach to predict draft requirements of agricultural implements using a standard tillage tool was developed. The standard tillage tool acts as an analog device and characterizes the dynamic Soil Conditions. This approach was verified using three different implements (subSoiler, moldboard plow and chisel plow) and two different instrumented analog tillage tools. The prediction procedure requires several Soil Conditions (at least four or more) spanning a range of Soil Conditions where both the implement and the analog tool must be tested. Draft requirements of the implement can then be predicted in any desired Soil Condition based on the standard tillage tool draft obtained in that Soil Condition. This methodology eliminates the need to test every implement in every Soil type and/or Condition to estimate its draft requirements. Only the reference tillage tool needs to be tested at the desired location.
Ergin C. - One of the best experts on this subject based on the ideXlab platform.
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The first isolation of Cryptococcus neoformans from Eucalyptus trees in South Aegean and Mediterranean Regions of Anatolia in Turkey despite Taurus Mountains alkalinity
'Springer Science and Business Media LLC', 2004Co-Authors: Ergin C., Lkit M., Hilmiolu S., G̈lbaba A.g., Demirci M., Kaya S.Abstract:Eucalyptus trees are widespread in subtropical parts of Turkey that have alkaline environments due to the Soil structure of Taurus Mountains. In this study, the existence of Cryptococcus neoformans in eucalyptus trees in the South Aegean and Mediterranean Regions of Anatolia, Turkey, was screened between March 1998 and September 2002. Only one strain of Cryptococcus neoformans var. grubii (Serotype A) was isolated from 1175 eucalyptus samples including debris and flowers in culture by Guizotia abyssinica agar. The environmental niche of the isolate was Eucalyptus camaldulensis Dehn in the Gokova Region, in the western part of the Taurus Mountains. In this study, the existence of Cryptococcus neoformans was shown in the eucalyptus flora of Turkey despite the alkaline Soil Condition
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Taurus Mountains alkalinity
'Springer Science and Business Media LLC', 2004Co-Authors: Ergin C., Ilkit M, Demirci M., Hilmioglu S, Ag Gulbaba, Kaya S.Abstract:Eucalyptus trees are widespread in subtropical parts of Turkey that have alkaline environments due to the Soil structure of Taurus Mountains. In this study, the existence of Cryptococcus neoformans in eucalyptus trees in the South Aegean and Mediterranean Regions of Anatolia, Turkey, was screened between March 1998 and September 2002. Only one strain of Cryptococcus neoformans var. grubii (Serotype A) was isolated from 1175 eucalyptus samples including debris and flowers in culture by Guizotia abyssinica agar. The environmental niche of the isolate was Eucalyptus camaldulensis Dehn in the Gokova Region, in the western part of the Taurus Mountains. In this study, the existence of Cryptococcus neoformans was shown in the eucalyptus flora of Turkey despite the alkaline Soil Condition
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The first isolation of Cryptococcus neoformans from Eucalyptus trees in South Aegean and Mediterranean Regions of Anatolia in Turkey despite Taurus Mountains alkalinity
'Springer Science and Business Media LLC', 2004Co-Authors: Ergin C., Lkit M., Hilmiolu S., Demirci M., G¨lbaba A.g., Kaya S.Abstract:PubMedID: 15487319Eucalyptus trees are widespread in subtropical parts of Turkey that have alkaline environments due to the Soil structure of Taurus Mountains. In this study, the existence of Cryptococcus neoformans in eucalyptus trees in the South Aegean and Mediterranean Regions of Anatolia, Turkey, was screened between March 1998 and September 2002. Only one strain of Cryptococcus neoformans var. grubii (Serotype A) was isolated from 1175 eucalyptus samples including debris and flowers in culture by Guizotia abyssinica agar. The environmental niche of the isolate was Eucalyptus camaldulensis Dehn in the Gokova Region, in the western part of the Taurus Mountains. In this study, the existence of Cryptococcus neoformans was shown in the eucalyptus flora of Turkey despite the alkaline Soil Condition
Xiangkun Zhu - One of the best experts on this subject based on the ideXlab platform.
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cu isotopic compositions in elsholtzia splendens influence of Soil Condition and growth period on cu isotopic fractionation in plant tissue
Chemical Geology, 2016Co-Authors: Xiangkun Zhu, Yongming LuoAbstract:This study investigates the magnitude and direction of Cu isotopic fractionation in the Cu-tolerant, strategy I plant, Elsholtzia splendens, considering the effect of Soil Condition and plant growth cycle. Uptake of Cu by E. splendens from Soil was found to favor light Cu isotopic enrichment (δ65Cu < 0‰) due to reduction at the Soil–root interface. The magnitude of fractionation between Soil and plant was found to be dependent on free Cu ion species in Soil solution correlated with pH value of Soil other than the phytoavailable component of Soil or total Soil for the same parent Soil. Cu isotopic fractionation occurs in plant, the fractionation direction and magnitude would vary between different plant organs (i.e., root and stem) as well as different plant tissues (i.e., xylem and phloem). Remobilization of Cu associated with plant senescence was found to have a considerable effect on Cu isotopic fractionation within the plant, and the fractionation factor was found to change with the degree of remobilization. Overall, the results show that the Cu isotopic composition is useful as a tracer for probing the mechanisms of Cu translocation and retranslocation between Soil and plants, and within plants.