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国家自然科学基金(91025026)

作品数:8 被引量:83H指数:5
相关作者:苏培玺张海娜解婷婷周紫鹃李善家更多>>
相关机构:中国科学院兰州理工大学台州学院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金更多>>
相关领域:农业科学生物学更多>>

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荒漠植物叶片水分和功能性状特征及其相互关系被引量:44
2013年
选取黑河流域中游荒漠区14种优势植物,测定了8个叶片水分与功能性状指标:稳定碳同位素组成(δ13C)、总含水量(TWC)、相对含水量(RWC)、干重含水量(DWWC)、叶干物质含量(LDMC)、叶片水势(LWP)、比叶面积(SLA)、比叶体积(SLV),探讨荒漠植物叶片水分与功能性状的特征以及相互之间的内在联系,探寻反映荒漠植物适应严酷环境的典型叶性状特征。结果表明:C4植物珍珠猪毛菜、梭梭、沙拐枣的δ13C值变化范围在–18‰~–15‰,其余的C3植物变化范围在–29‰~–24‰,其中花棒的δ13C值最小,为–28.34‰,红砂最大,为–24.63‰;对C3荒漠植物叶性状之间相关性分析显示,SLV与LDMC之间呈极显著负相关(P<0.01),与TWC、DWWC之间呈极显著正相关(P<0.01),SLA与LDMC之间呈显著负相关(P=0.02),δ13C与LWP之间呈极显著负相关(P<0.01)。SLV可以作为反映荒漠植物叶性状特征的重要指标,叶片水分及功能性状之间所呈现的特征及其对生境的响应都综合表现出荒漠植物的生态应对策略和适应途径。
李善家苏培玺张海娜周紫鹃解婷婷
关键词:荒漠植物叶片含水量功能性状
荒漠植物梭梭群体和叶片水平气体交换对不同土壤水分的响应被引量:6
2011年
为揭示C4荒漠植物梭梭的抗旱性和适应环境的光合作用特征,在人工控制土壤水分条件下,选择代表性植株,使用改进同化箱和LI-8100土壤碳通量自动测量系统组成的群体光合作用测量系统进行测量.该系统能够自动、连续观测,在测量时光、温环境因子稳定,能够准确测定植物的群体水平光合作用.使用LI-6400测定叶片水平光合作用.在相同土壤水分条件下,群体与叶片水平光合速率存在极显著差异(P<0.001),当土壤水分为田间持水量的50%(土壤含水量约10%)左右时梭梭的光合能力最强,群体光合速率(CAP)日均值为6.22μmolCO2m-2s-1,叶片光合速率(Pn)日均值为20.18μmolCO2m-2s-1,群体为叶片水平的30.8%.升高或降低土壤水分,梭梭的光合能力都下降.CAP与Pn的线性回归关系为CAP=0.20Pn+1.82(r2=0.89,P<0.001).结果表明,适宜的土壤含水量可显著提高梭梭群体和叶片的光合能力,过高的土壤含水量不利于梭梭生长发育.梭梭群体及叶片水平的气体交换对同一水分条件有近似的响应趋势,利用拟合公式,可从叶片水平推算出群体水平的光合速率.
高松苏培玺严巧娣
关键词:荒漠植物梭梭群体光合作用
荒漠绿洲过渡带不同立地条件下物种多样性及其与土壤理化因子的关系被引量:18
2013年
通过于2007—2011年对甘肃河西走廊中部荒漠绿洲过渡带不同立地条件下植被样方的调查,应用Margalef丰富度指数、Pielou均匀度指数、Shannon-Weiner指数和Simpson指数研究了不同立地条件下物种多样性的变化,并采用典范对应分析方法(CCA)研究植物物种分布与土壤环境因子的关系。结果表明:荒漠绿洲过渡带丘间低地的植被盖度和Margalef、Simpson、Shannon-Wiener、Pielou指数值均最大,流动沙丘条件下最小;Hill多样性指数排序结果显示,随着土壤水分条件的变差,物种多样性同样表现出降低的趋势。按多样性从高到低的顺序,其相应的立地条件分别为丘间低地、缓平沙坡、固定沙丘、半固定沙丘和流动沙丘。选取的土壤因子对过渡带植被分布的影响程度大小为土壤含水量>pH值>全钾>有机质>速效氮>全氮>速效钾>全磷>土壤盐分>速效磷。土壤含水量和pH是荒漠绿洲过渡带植被分布空间差异的最主要影响因子,前3个轴的环境解释率为98%,证明排序可信。
解婷婷苏培玺周紫鹃李善家张海娜
关键词:荒漠绿洲过渡带物种多样性土壤因子典范对应分析
Eco-physiological mechanisms of Caragana korshinskii Kom. adaptation to extreme drought stress: Leaf abscission and maintaining stem chloroplast integrity
2012年
In order to study the eco-physiological mechanisms of C. korshinskii adaptation to extreme drought stress, we investigated the variations of water content in soil, leaves, and stems, the chlorophyll a and b and the carotenoid content in leaves and stems, as well as changes of chloroplast ultrastructure in 2-year-old C. korshinskii specimens during a progressive soil drought process (by ceasing watering until all leaves were shed) and a subsequent rehydration process. During the dehydration process, the chlorophyll a and b and carotenoid contents in the leaves decreased, as did the carotenoid content in the stems. During the 4-day rehydration process, the chlorophyll a and b and carotenoid contents in the leaves and stems increased and gradually returned to normal levels. During ongoing drought stress, chloroplasts in the leaves broke away from cell walls and appeared in the center of cells. Under severe drought stress, the mesophyll ultrastructure and chloroplast configuration in leaves were irreversibly disturbed, as mani- fested by the inner and outer membranes being destroyed; the thylakoid system disintegrated, the starch grain disappeared, and parts of cell tissue were dismantled into debris. However, the mesophyll ultrastructure and chloroplast configuration in the stems remained complete. This indicates that C. korshinskii utilizes leaf abscission to reduce the surface area to avoid damage from extreme drought stress, and maintains chloroplast integrity and a considerable amount of chlorophyll to enable a rapid recovery of photosynthesis under the rehydration process.
DangHui XuXiangWen FangZhenJun BinGang WangPeiXi Su
关键词:叶绿体超微结构类胡萝卜素含量整性
Response of root traits of Reaumuria soongorica and Salsola passerina to facilitation被引量:4
2014年
C3 plant Reaumuria soongorica and C4 plant Salsola passerina are super xerophytes and coexist in a mixed community in either isolated or associated growth, and interspecific facilitation occurs in associated growth. In the present study, the root traits including root distribution, root length(RL), root surface area(RSA), root weight(RW) and specific root length(SRL) of both species in two growth forms were investigated to clarify their response to facilitation in associated growth. Six isolated plants of each species, as well as six associated plants similar in size and development were selected during the plant growing season, and their roots were excavated at 0–10, 10–20, 20–30, 30–40 and 40–50 cm soil depths at the end of the growing season. All the roots of each plant were separated into the two categories of fine roots(<2 mm diameter) and coarse roots(≥2 mm diameter). Root traits such as RL and RSA in the fine and coarse roots were obtained by the root analyzing system WinRHIZO. Most of the coarse roots in R. soongorica and S. passerina were distributed in the top 10 cm of the soil in both growth forms, whereas the fine roots of the two plant species were found mainly in the 10–20 and 20–30 cm soil depths in isolated growth, respectively. However, the fine roots of both species were mostly overlapped in 10–20 cm soil depth in associated growth. The root/canopy ratios of both species reduced, whereas the ratios of their fine roots to coarse roots in RL increased, and both species had an increased SRL in the fine roots in associated growth. In addition, there was the increase in RL of fine roots and content of root N for S. passerina in associated growth. Taken together, the root growth of S. passerina was facilitated for water and nutrient exploration under the interaction of the overlapped roots in both species in associated growth, and higher SRL allowed both species to more effectively adapt to the infertile soil in the desert ecosystem.
HaiNa ZHANGPeiXi SUShanJia LIZiJuan ZHOUTingTing XIE
关键词:根系性状猪毛菜红砂旱生植物
Species diversity and its relation with soil factors under different site conditions in a desert-oasis ecotone
2013年
Vegetation and soil surveys were conducted under different site conditions in 2007-2011 to study species diversity using richness, evenness and diversity indices, in the middle portion of the Heihe River Basin. The relationship between species distribution and soil environmental factors was also studied by Canonical Correspondence Analysis (CCA). Results show that vegetation coverage and species diversity were the highest in the interdune lowland, and the lowest in the mobile dune. Results of the Hill's index (diversity ordering) shows that species diversity is reduced along decreasing soil water content, and the order of species diversity was interdune lowland, flat slope, fixed dune, semifixed dune and mobile dune. The influence degree of soil factors on vegetation distribution was soil water content > pH > total K > organic matter > available N > total N > available K > total P > saline content > available P. Soil water content and pH were important factors significantly affecting spatial distribution difference of vegetation, the environmental explanation was 98%.
TingTing XiePeiXi SuZiJuan ZhouShanJia LiHaiNa Zhang
关键词:物种多样性土壤因子过渡带土壤含水量绿洲
荒漠植物沙拐枣群体光合作用及土壤呼吸研究被引量:6
2013年
为了探讨荒漠植物群体光合作用和干旱荒漠区碳源汇特征,联合利用改进同化箱和LI-8100土壤CO2通量自动测量系统,选择高温强光和适宜环境期,连续2年进行了观测研究。结果表明:沙拐枣群体光合速率(CAP)在不同年份、不同月份差异较大,土壤水分改善可显著提高群体光合能力,高温强光期和适宜环境期日平均(08:00—18:00)CAP分别为1.82和2.89μmol/(m2·s);用同化枝水平光合速率(Pn)计算群体水平光合速率时,高温强光期和适宜环境期分别用公式CAP=0.12Pn+0.39(r=0.86,P<0.0001)和CAP=0.18Pn+0.28(r=0.92,P<0.0001)。沙拐枣生长期植冠下土壤CO2释放速率平均为0.29μmol/(m2·s),荒漠裸地为0.15μmol/(m2·s)。沙拐枣群体生长期固定碳为3.82g/(m2·a);相应时期植冠下土壤释放碳为1.03g/(m2·a),荒漠裸地为0.53g/(m2·a)。研究表明:在水分短缺的荒漠地区,荒漠植物沙拐枣群体光合速率提高幅度超过根系主要分布层土壤水分提高幅度,适宜环境期可提高近1倍。荒漠生态系统土壤呼吸速率较低,荒漠裸地土壤呼吸速率约为植冠下的50%。荒漠植物沙拐枣种群区为弱碳源。
苏培玺周紫鹃张海娜李善家解婷婷
关键词:荒漠群体光合速率碳平衡
集群种植方式对棉花田间小气候效应和产量的影响被引量:5
2014年
为探讨传统种植(1穴1株)和集群种植(1穴3株)方式下棉花产量及田间微环境差异,在甘肃河西走廊干旱荒漠绿洲区对传统种植和集群种植方式下棉花的产量和微环境进行对比研究。结果表明,集群种植下棉花的经济产量显著高于传统种植,集群种植下穴距配置对产量产生一定的影响,穴距为28cm时棉花的单铃质量和皮棉产量最高,并且显著提高了棉花衣分;集群栽培可有效增加单位面积铃数,提高棉花中后期群体光截获率和冠层湿度,降低棉花冠层温度,对棉花群体内部CO2摩尔分数仅有微弱的影响。因此,相对于传统种植方式,集群种植可显著改善棉花群体微环境,进而提高棉花的经济产量,且穴距为28cm是集群种植获得较高产量的最佳穴距。
解婷婷苏培玺周紫鹃张海娜李善家
关键词:棉花经济产量
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