Arid
DOI10.1177/0959683607076442
Dynamics of Acacia aneura-Triodia boundaries using carbon (C-14 and delta C-13) and nitrogen (delta N-15) signatures in soil organic matter in central Australia
Bowman, D. M. J. S.; Boggs, Guy S.; Prior, Lynda D.; Krull, Evelyn S.
通讯作者Bowman, D. M. J. S.
来源期刊HOLOCENE
ISSN0959-6836
EISSN1477-0911
出版年2007
卷号17期号:3页码:311-318
英文摘要

Soil organic matter (SOM) was sampled from soil profiles on a near level sandsheet at the southern limit of the Tanami Desert in central Australia to determine if boundaries of Triodia hummock grassland-Acacia aneura shrublands had changed in the Holocene. Accelerator Mass Spectrometry (A MS) C-14 dating of 16 soil profiles showed that SOM that had accumulated at 100 to 140 cm depth, (near the base of most profiles) had ages between 1175 and 2630 C-14 years, averaging 1906 C-14 years. The stable carbon isotopic (delta C-13) composition of SOM from the upper 50 cm soil profiles in the A. aneura shrubland (inhabited by plants with predominantly C3 photosynthetic pathway) was significantly more C-13-deplcted than the comparable soil interval beneath a Triodia grassland (predominantly C4 photosynthetic pathway). Mean age of SOM at 50 cm depth was 830 14C years, suggesting the vegetation has been stable for about 1000 years. However, soil profiles in Triodia grassland adjacent to the shrubland boundary had slightly more depleted WC relative to sites >0.5 km from the boundary. With respect to stable nitrogen isotopic values, only surface soils in the Acacia shrublands were found to be N-15-enriched relative to all other soil depths. Although there were no obvious environmental discontinuities, such as change in soil type or slope angle, associated with the ecosystem boundaries, the Acacia shrublands were found to occur on more dayrich soils with higher concentrations of total phosphorus, nitrogen and potassium compared with the surrounding grasslands, and these trends became more pronounced with increasing distance from the ecotone: it is unclear if these differences are a cause or an effect of the vegetation mosaic. The concordance of the vegetation boundaries with the delta C-13 and delta N-15 and Of Soil nutrients are consistent with only minor attrition of the A. aneura shrublands in the late Holocene at this site.


英文关键词aboriginal fire management AMS dating Acacia shrubland carbon stable isotopcs desert environments grassland nitrogen stable isotopes soil organic matter vegetation boundary dynamics late holocene
类型Article
语种英语
国家Australia
收录类别SCI-E
WOS记录号WOS:000247871700003
WOS关键词ARID-CENTRAL AUSTRALIA ; VEGETATION CHANGE ; EASTERN AUSTRALIA ; SOUTH-AUSTRALIA ; TANAMI DESERT ; HARE-WALLABY ; HUMAN IMPACT ; LANDSCAPE ; ECOSYSTEM ; ISOTOPES
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
来源机构Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/154424
作者单位(1)Charles Darwin Univ, Sch Environm Res, Darwin, NT 0909, Australia;(2)Charles Darwin Univ, Sch Sci & Primary Ind, Darwin, NT 0909, Australia;(3)CSIRO Land & Water, Glen Osmond, SA 5064, Australia;(4)CRC Greenhouse Accounting, PMB 2, Glen Osmond, SA 5064, Australia
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GB/T 7714
Bowman, D. M. J. S.,Boggs, Guy S.,Prior, Lynda D.,et al. Dynamics of Acacia aneura-Triodia boundaries using carbon (C-14 and delta C-13) and nitrogen (delta N-15) signatures in soil organic matter in central Australia[J]. Commonwealth Scientific and Industrial Research Organisation,2007,17(3):311-318.
APA Bowman, D. M. J. S.,Boggs, Guy S.,Prior, Lynda D.,&Krull, Evelyn S..(2007).Dynamics of Acacia aneura-Triodia boundaries using carbon (C-14 and delta C-13) and nitrogen (delta N-15) signatures in soil organic matter in central Australia.HOLOCENE,17(3),311-318.
MLA Bowman, D. M. J. S.,et al."Dynamics of Acacia aneura-Triodia boundaries using carbon (C-14 and delta C-13) and nitrogen (delta N-15) signatures in soil organic matter in central Australia".HOLOCENE 17.3(2007):311-318.
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