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1.
We analysed nest site selection in two shrub-steppe larks, the lesser short-toed larkCalandrella rufescensand the Thekla larkGalerida theklae. Both species nest on the ground next to a bush preferably facing north or north-east. Nestling growth and fledging weight are greater when the nest faces these directions. Both species prefer to nest next to camephytes with little foliage, and the lesser short-toed lark chooses sites with high visibility. We conclude that sunlight and nest predation are fundamental selective pressures determining nest microhabitat selection in larks in semi-arid areas. 相似文献
2.
Small-scale vegetation dynamics were followed for ecotones and in uniform stands inArtemisia-dominated steppe vegetation under grazing and when recovering from heavy grazing. Species composition was followed annually for 5 years in 1 m2and 0·25 m2plots for (1) presence–absence; (2) density; and (3) biomass.More rapid vegetation dynamics, in terms of change of type of vegetation and distance moved in DCA species space between sampling occasions, were observed in smaller plots and in early seral stages, where species were few and alpha diversity low. Only the plots recently protected from grazing showed a directional vegetation change; those protected for more than 3 years and those under continued grazing showed, at this scale, non-directional dynamics. 相似文献
3.
WANG Fang HE Yongtao FU Gang NIU Ben ZHANG Haorui LI Meng WANG Zhipeng WANG Xiangtao ZHANG Xianzhou 《资源与生态学报(英文版)》2020,11(3):290-297
Enclosure is one of the most widely used management tools for degraded alpine grassland on the northern Tibetan Plateau, but the responses of different types of grassland to enclosure may vary, and research on these responses can provide a scientific basis for improving ecological conservation. This study took one site for each of three grassland types (alpine meadow, alpine steppe and alpine desert) on the northern Tibetan Plateau as examples, and explored the effects of enclosure on plant and soil nutrients by comparing differences in plant community biomass, leaf-soil nutrient content and their stoichiometry between samples from inside and outside the fence. The results showed that enclosure can significantly increase all aboveground biomass in these three grassland types, but it only increased the 10-20 cm underground biomass in the alpine desert. Enclosure also significantly increased the leaf nutrient content of the dominant plants and contents of total nitrogen (N), total potassium (K), and organic carbon (C) in 10-20 cm soil in alpine desert, thus changing the stoichiometry between C, N and P (phosphorus). However, enclosure significantly increased only the N content of dominant plant leaves in alpine steppe, while other nutrients and stoichiometries of both plant leaves and soil did not show significant differences in alpine meadow and alpine steppe. These results suggested that enclosure has differential effects on these three types of alpine grasslands on the northern Tibetan Plateau, and the alpine desert showed the most active ecological conservation in the responses of its soil and plant nutrients. 相似文献
4.
研究降水和氮沉降对荒漠草原植物叶形态性状的影响,对于预测未来全球变化下荒漠草原植物的生态适应具有重要意义.对增减雨(±50%)和氮添加(10 g·m-2.a-1)及其交互作用对乌拉特荒漠草原区优势植物叶形态性状的影响研究结果表明:(1)沙生针茅(Stipa glareosa)、碱韭(Allium polyrhizum)... 相似文献
5.
为确定沙漠化对高山嵩草草甸植被组成、结构和物种多样性的影响,了解高寒区草甸沙漠化的原因,选择西藏那曲安多县南部沙漠化严重区域为调查区,按照沙漠化的不同程度设置样地,系统调查了轻度、中度、重度和极重度沙化草甸的植被变化,结果表明:中度、重度和极重度沙化区的植被与轻度沙化草甸有显著的差异;在中度和重度沙化区,高寒草甸的建群种高山嵩草已被家畜不喜食或更具抗性的植物种所取代,而在极重度沙化的流动沙丘上无植被生长;从过牧的退化草甸到半流动、流动沙丘,植物种多样性呈显著的降低趋势。轻度沙化草甸物种数、个体密度和丰富度指数最多;中度沙化草甸的Shannon-Wiener指数和均匀度指数最大,而优势度指数最小;在沙化过程中,高寒草甸的植被盖度显著下降,地上生物量也在下降,虽然轻度、中度和重度沙化草地的地上生物量显著高于极重度沙化区,但前者之间却无显著差异。地下根系生物量也呈显著下降的趋势。过牧是造成高山嵩草草甸沙化的主要原因。 相似文献
6.
《中国科学D辑(英文版)》2006,(Z2)
Many studies on global climate have forecast major changes in the amounts and spatial patterns of precipitation that may significantly affect temperate grasslands in arid and semi-arid regions. As a part of ChinaFLUX, eddy covariance flux measurements were made at a semi-arid Leymus chinensis steppe in Inner Mongolia, China during 2003-2004 to quantify the response of carbon exchange to environmental changes. Results showed that gross ecosystem production (FGEP) and ecosystem respiration (Reco) of the steppe were significantly depressed by water stress due to lack of precipitation during the growing season. Temperature was the dominant factor affecting FGEP and Reco in 2003, whereas soil moisture imposed a significant influence on both Reco and FGEP in 2004. Under wet conditions, Reco showed an exponentially increasing trend with temperature (Q10 = 2.0), but an apparent reduction in the value of Reco and its temperature sensitivity were observed during the periods of water stress (Q10=1.6). Both heat and water stress can cause decrease in FGEP. The sea-sonality of ecosystem carbon exchange was strongly correlated with the variation of precipitation. With less precipitation in 2003, the steppe sequestrated carbon in June and July, and went into a senescence in early August due to water stress. As compared to 2003, the severe drought during the spring of 2004 delayed the growth of the steppe until late June, and the steppe became a CO2 sink from early July until mid-September, with ample precipitation in August. The semi-arid steppe released a total of 9.7 g C·m-2 from May 16 to the end of September 2003, whereas the net carbon budget during the same period in 2004 was close to zero. Long-term measurements over various grasslands are needed to quantify carbon balance in temperate grasslands. 相似文献
7.
8.
以1981—2018年内蒙古典型草原季节性冻土为研究对象,通过气候倾向率、Mann-Kendall法、多元线性回归等方法,分析最大冻土时空分布特征、年际、年代际变化,研究影响最大冻土深度变化的气象因子。结果表明:(1) 内蒙古典型草原季节性冻土冻结初日在9—11月,终日在4—6月,年内最大冻土深度出现在2—3月,深度在100~280 cm之间。(2) 最大冻土深度年际变化分为下开口抛物线型、上开口抛物线型、正弦曲线型,从最大冻土深度气候倾向率看呈现减小趋势的站点有68%。(3) 最大冻土深度年代际变化分为逐年代递减、减-增型和无明显变化规律,50%的站点在1989年以后最大冻土深度发生突变。(4) 多元线性回归表明气温冻结指数、年平均风速、年极端最低气温对最大冻土深度产生显著影响。该研究揭示了最大冻土深度存在退化的事实,为草原应对气候变化提供指导,为陆地土壤和大气碳循环交换的研究给出提示。 相似文献
9.
基于坝上草原地区30个采样点表土花粉分析和植被调查的研究结果显示,花粉组合以蒿属、藜科、禾本科、菊科和莎草科等草本植物为主,基本能够反映草原植被特征,但花粉百分比与其在植被中盖度差异明显.运用Extended R-Value(ERV)模型估算的坝上草原区相关花粉源范围大致为2100m,当风速大于3.5m/s时,基本稳定,受风速影响不大.估算的相对花粉产量结果显示,蒿属和藜科的相对花粉产量最高,为禾本科的20倍左右;其次为莎草科和菊科,为禾本科的7~9倍;百合科略高于禾本科;旋花科、豆科、唇形科及委陵菜属的相对花粉产量则明显低于禾本科.利用相对花粉产量对花粉与植被关系的校正结果表明:蒿属、藜科的校正效果明显,其相对花粉产量可以作为定量重建古植被的参考;莎草科、菊科、百合科和唇形科由于受植被和花粉数据梯度限制,其相对花粉产量能否用于植被与花粉关系的校正有待通过更多植被群落调查进一步证实;其他花粉类型由于在花粉组合中含量多低于5%,所以在校正花粉与植被关系时的作用不明显. 相似文献
10.
中国特有的永瓣藤属植物区系地理性质与特征 总被引:3,自引:0,他引:3
永瓣藤是卫矛科的单型属(Monimop etalum Chinese Rehd),为中国特有的珍稀濒危植物,分布于北纬28°30'~30°10'和东经114°30'~118°10'的长江中下游南岸地区。文中研究了永瓣藤的自然地理环境与群落特征,分布区的历史和分布格局的现状,探讨了它起源的时间、地区及区系地理性质。研究结果表明:(1)永瓣藤适应于温暖湿润和偏酸性(pH5.5~6.5)土壤的地理环境;它是群落的伴生成分,其分布受到杉木、马尾松、毛竹、赤杨叶等优势成分的影响。(2)其分布区的地史演变大概为:连续分布(新第三纪)→间断分布(第四纪及以后)→星散分布(现状).通山县的残存为湖北省植物区系地理分布新记录属(种).(3)它分布于我国东部中亚热带向北亚热带过渡区域,是一个具亚热带性质的华东特有属。(4)其起源地可能是扬子古陆的九岭-怀玉联合地体;起源时间大约在新第三纪中新世(或更晚),是被子植物一个起源比较年轻的属,并不是起源古老的地理成分。 相似文献