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Nie  Xiuqing  Peng  Yunfeng  Li  Fan  Yang  Lucun  Xiong  Feng  Li  Changbin  Zhou  Guoying 《Journal of Soils and Sediments》2019,19(1):322-331
Purpose

Although large amounts of soil organic carbon (SOC) stored in the shrublands, information about SOC storage was little on the Tibetan Plateau. This study aims to evaluate the spatial patterns and storage of SOC in the shrublands and the relationships of climatic variables and soil pH on the Tibetan Plateau.

Materials and methods

We used 177 profiles of soil samples obtained from 59 shrubland sites on the northeast Tibetan Plateau from 2011 to 2013. Ordinary least squares regressions, curve estimation, and multiple linear regressions were used to evaluate controlling factors on SOC stock. Kriging interpolation was used to upscale sit-level measurements to the whole study area.

Results and discussion

We found that SOC storage in the northeast Tibetan shrublands was 1.36 Pg C in the top 1 m with an average SOC stock of 12.38 kg m?2. SOC stock decreased from east to west and south to north but generally increased significantly with the mean annual temperature (MAT) and the mean annual precipitation (MAP), and tended to decrease with soil pH. Although similar relationships were also observed in alpine shrublands, the trends among SOC stock, MAP, and MAT were not observed in desert shrublands. Our results indicate that a reduction in soil pH accelerates the C sequestration potential. Furthermore, global warming contributed to C sequestration in alpine shrublands, specifically, SOC stock increased 8.44 kg m?2 with an increased unit of MAT in alpine shrublands just considering temperature effects. Meanwhile, the C sequestration was different among different regions due to the uneven increases in precipitation. However, in desert shrublands, MAP and MAT did not significantly affect SOC stock.

Conclusions

The results indicate that though a reduction in soil pH could contribute to C sequestration, MAT and MAP have different effects on SOC stock in different Tibetan Plateau shrublands. Increased MAT and MAP were 0.05 °C and 1.67 mm every year on the Tibetan Plateau, which will increase C sequestration in alpine shrublands, but might have limited impacts on desert shrublands, which help us comprehend soil C cycling in the global climate change scenario.

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铜、镉、铅、锌对4种豆科植物种子萌发的影响   总被引:2,自引:0,他引:2  
筛选和研究适合当地气候与土壤条件的重金属耐性植物,是对重金属污染土壤进行植物修复的前提.以蒸馏水为对照,采用培养皿法研究了Cu2+、Cd2+、pb2+和Zn2+单一重金属对4种豆科植物种子萌发和幼苗生长的影响.结果表明,随着Cu2+、Cd2+、pb2+和Zn2+浓度的增大,红豆草(Onobrychis viciaefolia Scop.)、白三叶(Tri folium repens L.)、柠条(Caragana Korshinskii Kom.)、胡枝子(Lespedeza bicolor Turcz.)的发芽率、发芽势呈不同程度的降低趋势;但在Cu2+<300 mg/L处理下,红豆草种子的发芽率并没受到明显抑制,反而有不同程度地促进;在Cd2+处理下,25 mg/L浓度对柠条种子萌发促进作用最为显著,柠条种子发芽率与对照相比达到显著性差异水平(p<0.05);Pb2+对柠条和胡枝子种子的发芽率种子的发芽表现为“低促高抑”.Cu2+、Cd2+、pb2+和Zn2+对4种植物根系生长均表现出强烈的抑制作用.随着Cu2+、Cd2+、pb2+和Zn2+离子浓度的增大,红豆草、白三叶、柠条和胡枝子种子萌发后形成幼苗的根长和苗长都呈降低趋势,对4种植物均表现为随着浓度增加,抑制作用越明显.  相似文献   
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