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1.
小麦种质芽期和苗期的耐盐性鉴定评价   总被引:10,自引:0,他引:10  
【目的】研究不同来源小麦种质资源的耐盐性差异,筛选耐盐性较好的品种(系),探索不同生育期小麦耐盐性鉴定的适合盐浓度,为小麦耐盐鉴定及耐盐小麦品种选育提供参考。【方法】对来源不同的293份小麦种质,在1.5%NaCl盐溶液下进行盐胁迫处理,调查各种质的芽期相对盐害指数;选择芽期相对耐盐指数小于40%的24份小麦资源,在苗期进行不同盐浓度胁迫鉴定,测量不同处理的根长及苗高相对生长率。【结果】筛选出16份芽期相对盐害指数小于20%的高耐盐种质和42份芽期相对盐害指数20-40%耐盐的小麦种质;苗期鉴定表明1.0% NaCl盐浓度为合适的筛选浓度、根长相对生长率为适合的苗期耐盐性鉴定指标,以此为鉴定技术筛选出了Marmin-Minhardi譎44-Minturki和花树蒲两份芽期及苗期均表现耐盐的优异小麦种质;【结论】来源不同的小麦资源中芽期综合耐盐性大小依次为地方品种>国外引进品种>中间试验品系;Marmin-Minhardi譎44-Minturki和花树蒲两份耐盐小麦种质可作为小麦耐盐育种新种质。  相似文献   

2.
棉花萌发期和苗期耐盐性评价及耐盐指标筛选   总被引:19,自引:1,他引:18  
Zhang GW  Lu HL  Zhang L  Chen BL  Zhou ZG 《应用生态学报》2011,22(8):2045-2053
于2010年在江苏南京农业大学人工气候室内进行砂培试验,采用不同浓度的NaCl水溶液模拟盐胁迫,以多项指标盐害系数隶属函数值和总隶属函数值为依据,比较了13个棉花品种萌发期和苗期的耐盐性,并进行聚类分析.结果表明:150mmol·L-1NaCl是进行棉花耐盐性鉴定的适宜盐浓度.棉花的耐盐性在生育期和品种间表现不同:中棉所44和中棉所177是在萌发期和苗期均表现稳定的耐盐品种,表现稳定但不耐盐品种有中棉所102、苏棉12号和泗棉3号,表现稳定且中等耐盐品种有中棉所103、德夏棉1号和美棉33B;发芽率、发芽势、发芽指数、活力指数和鲜质量的盐害系数可以作为棉花萌发期耐盐鉴定指标,株高、叶片伸展速率、地上部干质量、根系干质量、根系活力和净光合速率的盐害系数可以作为棉花苗期耐盐鉴定指标.  相似文献   

3.
NaCl胁迫对不同西瓜种质资源发芽的影响   总被引:10,自引:0,他引:10  
采用7种NaCl浓度胁迫对23份纯合的西瓜种质资源进行耐盐性研究。结果表明:随着NaCl浓度增加,西瓜发芽率下降,不同种质资源的致死浓度有明显差异,在低浓度下大部分种质资源发芽率不变或反而增加。在80~160mmol/L盐浓度下,千粒重与发芽率呈显著性相关,最大相关系数为0.606。相同NaCl浓度对不同西瓜种质资源间的侧根、根长、鲜重、下胚轴和盐害指数影响不同。对5项测定指标进行聚类分析,将23份种质资源分为4类,第2类为耐盐性好的材料,综合分析四倍体西瓜的耐盐性高于二倍体。  相似文献   

4.
不同品种燕麦种子萌发和幼苗生长的耐盐性   总被引:7,自引:0,他引:7  
利用NaCl和Na2SO4复盐溶液胁迫处理36个燕麦品种,采用培养皿纸上发芽法,进行种子萌发和幼苗的耐盐能力鉴定,通过分析盐胁迫对不同燕麦种子萌发及幼苗的影响,为燕麦品种耐盐性筛选、盐碱地燕麦栽培和耐盐育种提供理论参考.结果表明:盐分抑制种子的萌发和幼苗生长,低盐浓度(0.4%)适宜各类燕麦生长,对较耐盐的品种有促进萌发、生长的作用,盐浓度1.2%是鉴定燕麦耐盐性的适宜盐浓度;36个品种耐盐性差异较大,可划分为耐盐型、中度耐盐型、不耐盐型3类;燕麦不同品种及不同类型种子萌发的盐浓度范围达极显著差异,各耐盐指标对于燕麦耐盐性的体现存在一定的差异,发芽率、发芽指数、简易活力指数和单株干质量是主要的耐盐指标.  相似文献   

5.
甜菜耐盐性筛选及其幼苗对盐胁迫的响应   总被引:2,自引:0,他引:2  
为了探讨甜菜耐盐机理、不同耐盐等级甜菜盐耐性机制差异,对40份甜菜品种(系)用300mmol·L-1NaCl胁迫处理,通过芽期相对盐害率和苗期盐害指数确定不同品种耐盐等级,将不同耐盐等级材料进行NaCl浓度梯度(150、300mmol·L-1)处理,测定植株鲜重、超氧化物歧化酶(SOD)活性、丙二醛(MDA)含量和叶片质膜透性。试验结果如下:40份甜菜材料经过芽期和苗期耐盐性筛选最终确定耐盐等级极强的品种(系)1份(‘KWS0143’),耐盐等级强的品种(系)6份(‘ACERO’等),耐盐等级中等的品种(系)14份(‘HI0183’等),耐盐等级弱的品种(系)5份(‘OVITO’等);在同一盐胁迫时间下,不同耐盐等级材料的植株鲜重随盐浓度的增加呈下降趋势,品种‘KWS0143’和‘ACERO’变化幅度较小,品种‘OVATIO’下降幅度最大;不同耐盐等级材料随盐浓度增加和胁迫时间延长超氧化物歧化酶(SOD)活性呈现先上升而后下降的趋势,耐盐性极强的品种酶活性显著高于其他耐盐等级材料;不同耐盐等级材料随盐浓度增加和胁迫时间延长丙二醛(MDA)含量和叶片质膜透性均呈上升趋势,耐盐等级弱的品种(系)明显高于其他各个材料。  相似文献   

6.
盐胁迫下不同水稻种质形态指标与耐盐性的相关分析   总被引:22,自引:4,他引:18  
选用中国、韩国和国际水稻研究所(IRRI)不同耐盐能力的籼、粳、爪哇稻16份为材料进行芽期和苗期试验。随着NaCl浓度增加,种子开始发芽的时间推迟、发芽过程延长、发芽率降低;品种的发芽率能有效地指示其芽期耐盐能力。NaCl浓度对许多苗期形态指标有显影响,其中叶片盐害指数能反映品种的苗期耐盐能力;随着NaCl处理时间的增长,叶片盐害指数与NaCl浓度间的相关性越来越大。同一品种在芽期的耐盐能力和苗期表现不一致,两的相关系数很低。  相似文献   

7.
为明确不同盐胁迫对菜用黄麻种子萌发的影响,并综合评价菜用黄麻种质的耐盐性,本研究以13份菜用黄麻种质为试验材料,以2份纤用黄麻为参照种质,分别测定在不同浓度(0、50、100、150、200 mmol/L)的两种单盐NaCl、Na2SO4处理下种子的发芽率、发芽势、胚芽长度、胚根长度,采用隶属函数法和系统聚类分析法对其耐盐性进行综合评价。结果表明,不同种类和不同浓度的盐胁迫对菜用黄麻发芽势、发芽率、胚根长度、胚芽长度存在不同程度的影响。随着盐浓度的增加菜用黄麻各指标均在盐浓度为200 mmol/L显著低于对照。NaCl胁迫对菜用黄麻萌发期各指标的抑制作用由大到小依次为胚根长>发芽势>胚芽长>发芽率,Na2SO4胁迫对菜用黄麻萌发期各指标的抑制作用由大到小依次为胚根长>胚芽长>发芽势>发芽率。Na2SO4对菜用黄麻种子萌发的抑制作用高于Na Cl。根据对13份菜用黄麻种质以及2份参照种质的综合评价及聚类分析,将15份黄麻种质划分为高耐盐、中度耐盐、盐敏感3种类型,筛选出高耐Na Cl的菜用黄麻4份分别为14MCB-1、粤引2号、埃及麻菜、福农1号,高耐Na2SO4种质1份为桂麻菜2号及对2种单盐均表现敏感的菜用黄麻种质平果麻菜。  相似文献   

8.
菜用黄麻种质萌发期耐盐性评价   总被引:3,自引:0,他引:3  
为明确不同盐胁迫对菜用黄麻种子萌发的影响,并综合评价菜用黄麻种质的耐盐性,本研究以13份菜用黄麻种质为试验材料,以2份纤用黄麻为参照种质,分别测定在不同浓度(0、50、100、150、200 mmol/L)的两种单盐NaCl、Na2SO4处理下种子的发芽率、发芽势、胚芽长度、胚根长度,采用隶属函数法和系统聚类分析法对其耐盐性进行综合评价。结果表明,不同种类和不同浓度的盐胁迫对菜用黄麻发芽势、发芽率、胚根长度、胚芽长度存在不同程度的影响。随着盐浓度的增加菜用黄麻各指标均在盐浓度为200 mmol/L显著低于对照。NaCl胁迫对菜用黄麻萌发期各指标的抑制作用由大到小依次为胚根长发芽势胚芽长发芽率,Na2SO4胁迫对菜用黄麻萌发期各指标的抑制作用由大到小依次为胚根长胚芽长发芽势发芽率。Na2SO4对菜用黄麻种子萌发的抑制作用高于Na Cl。根据对13份菜用黄麻种质以及2份参照种质的综合评价及聚类分析,将15份黄麻种质划分为高耐盐、中度耐盐、盐敏感3种类型,筛选出高耐Na Cl的菜用黄麻4份分别为14MCB-1、粤引2号、埃及麻菜、福农1号,高耐Na2SO4种质1份为桂麻菜2号及对2种单盐均表现敏感的菜用黄麻种质平果麻菜。  相似文献   

9.
番茄品种资源芽苗期和幼苗期的耐盐性及耐盐指标评价   总被引:23,自引:1,他引:22  
董志刚  程智慧 《生态学报》2009,29(3):1348-1355
对芽苗期和幼苗期番茄耐盐鉴定指标进行检验,明确番茄芽苗期和幼苗期耐盐性的相关性,筛选耐盐的番茄品种资源,以便为耐盐育种和栽培提供材料和方法.试验采用不同浓度的NaCl水溶液人工模拟盐胁迫,以多项指标盐害系数隶属函数值和总隶属函数值为依据,比较了20个番茄品种资源芽苗期和幼苗期的耐盐性及两个时期耐盐性的相关性,并利用单一指标盐害系数隶属函数值和总隶属函数值进行了聚类分类.结果表明:芽苗期和幼苗期番茄耐盐性有所不同,耐盐和中等耐盐材料相同率为53.85%.进行番茄耐盐性筛选时可以把发芽势、发芽率、发芽指数、萌发活力指数、下胚轴长、地上鲜重作为芽苗期耐盐鉴定指标,把地上部鲜重、根鲜重、地上部干重、根干重、壮苗指数、根/冠比作为幼苗期耐盐鉴定指标.  相似文献   

10.
为探究马铃薯种质资源耐盐性强弱,采用添加NaCl的MS培养基模拟盐胁迫的方法,研究了不同盐浓度对4份不同熟性耐盐代表材料的株高、总生物量、芽鲜质量和生根率的影响,确定耐盐筛选适宜浓度为100 mmol/L。利用该浓度胁迫52份马铃薯种质,采用隶属函数和聚类分析的方法进行耐盐性鉴定,综合评价得到极端耐盐材料为陇薯5号和LZ111,极端盐敏感材料为青薯9号、陇薯8号、中薯14号和04P48-3。本研究建立的马铃薯耐盐性离体鉴定方法和筛选获得的不同耐盐种质,将为耐盐育种及机理研究奠定技术和材料基础。  相似文献   

11.
《植物生态学报》2016,40(12):1298
AimsThe objective of this study was to investigate the change pattern of leaves photosynthesis and stem sap flow of Tamarix chinensisin under different groundwater salinity, which can be served as a theoretical basis and technical reference for cultivation and management of T. chinensis in shallow groundwater table around Yellow River Delta.MethodsThree-year-old T. chinensis, one of the dominated species in Yellow River Delta, was selected. Plants were treated by four different salinity concentrations of groundwater—fresh water (0 g∙L-1), brackish water (3.0 g∙L-1), saline water (8.0 g∙L-1), and salt water (20.0 g∙L-1) under 1.2 m groundwater level. Light response of photosynthesis and the diurnal courses of leaf transpiration rate, stem sap flux velocity and environment factors under different groundwater salinity were determined via LI-6400XT portable photosynthesis system and a Dynamax packaged stem sap flow gauge based on stem-heat balance method, respectively.Important findings The result showed that groundwater salinity had a significant impact on photosynthesis efficiency and water consumption capacity of T. chinensis by influencing the soil salt. The net photosynthetic rate (Pn), maximum Pn, transpiration rate, stomatal conductance, apparent quantum yield and dark respiration rate increased first and then decreased with increasing groundwater salinity, while the water use efficiency (WUE) continuously decreased. The mean Pn under fresh water, brackish water and salt water decreased by 44.1%, 15.1% and 62.6%, respectively, compared with that under saline water (25.90 µmol∙m-2∙s-1). The mean WUE under brackish water, saline water and salt water decreased by 25.0%, 29.2% and 41.7%, respectively, compared with that under fresh water (2.40 µmol∙mmol-1). With the increase of groundwater salinity from brackish water to salt water, light saturation point of T. chinensisdecreased while the light compensation point increased, which lead to the decrease of light ecological amplitude and light use efficiency. Fresh water and brackish water treatment helped T. chinensis to use low or high level light, which could significantly improve the utilization rate of light energy. The decrease in Pn of T. chinensis was mainly due to non-stomatal limitation under treatment from saline water to fresh water, while the decrease in Pn of T. chinensis was due to stomatal limitation from saline water to salt water. With increasing groundwater salinity, stem sap flux velocity of T. chinensis increased firstly and then decreased, reached the maximum value under saline water. The mean stem sap flux velocity under fresh water, brackish water and salt water decreased by 61.8%, 13.1% and 41.9%, respectively, compared with that under saline water (16.96 g·h-1). Tamarix chinensis had higher photosynthetic productivity under saline water treatment, and could attained high WUE under severe water deprivation by transpiration, which was suitable for the growth of T. chinensis.  相似文献   

12.
为揭示柽柳(Tamarix chinensis)光合能力及耗水特征对地下水矿化度的响应规律, 以黄河三角洲建群种——柽柳3年生植株为研究对象, 在1.2 m的潜水水位下, 模拟设置淡水、微咸水、咸水和盐水4种不同的地下水矿化度, 测定柽柳叶片光合-光响应、蒸腾速率和树干液流的日变化。结果表明: 地下水矿化度通过影响土壤盐分可显著影响柽柳光合特性及耗水性能。随地下水矿化度升高, 柽柳叶片净光合速率(Pn)、最大Pn、蒸腾速率、气孔导度、表观量子效率和暗呼吸速率均先升高后降低, 而水分利用效率(WUE)持续降低。淡水、微咸水和盐水处理下, 柽柳Pn光响应平均值分别比咸水处理降低44.1%、15.1%和62.6%; 微咸水、咸水和盐水处理下, 柽柳WUE光响应平均值分别比淡水处理降低25.0%、29.2%和41.7%。随地下水矿化度升高, 柽柳叶片光饱和点先升高后降低, 而光补偿点持续升高, 光照生态幅变窄, 光能利用率变低。淡水和盐水处理下, 柽柳Pn下降分别是非气孔限制和气孔限制引起的。柽柳树干液流速率随地下水矿化度升高而先升高后降低, 咸水处理下树干液流速率日变幅最大, 日液流量最高。淡水、微咸水和盐水处理下日液流速率平均值分别比咸水处理降低61.8%、13.1%和41.9%。咸水矿化度下柽柳有较高的光合特性, 在蒸腾耗水较严重的情况下可实现高效生理用水, 适宜柽柳较好地生长。  相似文献   

13.
白檀离体快繁技术   总被引:1,自引:0,他引:1  
以白檀(Symplocos paniculata)幼嫩茎段为实验材料, 通过对启动培养、增殖、生根培养及移栽的影响因子进行研究, 初步建立了白檀的组织培养体系。结果表明: 白檀外植体最适灭菌方案为0.1%升汞3分钟, 无菌苗获得率达81%; 最适初代启动培养基为1/2MS+30 g∙L-1蔗糖+8 g∙L-1琼脂, 出芽率达86.83%; 增殖最适培养基为1/2MS+1.0 mg∙L-1 6-BA+0.02 mg∙L-1 IBA+30 g∙L-1蔗糖+8 g∙L-1琼脂, 增殖系数达3.57; 最适生根培养基为WPM+0.5 mg∙L-1 IBA+0.5 mg∙L-1 NAA+20 g∙L-1蔗糖+2 g∙L-1 AC+8 g∙L-1琼脂, 生根率达93%; 炼苗后, 移入园土:草炭土=1:1 (v/v)的基质中, 成活率达83%。  相似文献   

14.
《植物生态学报》2017,41(1):126
Aims Little is known about the stoichiometric characteristics of carbon (C), nitrogen (N) and phosphorus (P) in plateau shrubs across China. Sibiraea angustata is a typical and representative shrub species on the eastern Qinghai- Xizang Plateau, and exploring its C, N and P distribution patterns and stoichiometric properties in different organs (including root, shoot, leaf, twig and fruit) would help us better understand the mechanisms of C, N and P cycling and balance in the S. angustata dominated shrub ecosystem.
Methods Sixteen sampling sites were selected on the eastern Qinghai-Xizang Plateau by the stratified sampling method. The height and coverage of the dominant shrubs, latitude, longitude and altitude of the sites were recorded. Three 5 m × 5 m plots were selected at each site. At least 128 biological samples of plant organs of S. angustata were collected and measured, respectively. The C and N concentrations of plant samples were analyzed using an elemental analyzer (2400 II CHNS). The P concentration was analyzed using the molydate/ascorbic acid method after H2SO4-H2O2 digestion.
Important findings The C, N and P concentrations of different organs followed the order of: shoot (495.07 g·kg-1) > twig (483.37 g·kg-1) > fruit (480.35 g·kg-1) > root (468.47 g·kg-1) > leaf (466.33 g·kg-1); leaf (22.27 g·kg-1) > fruit (19.74 g·kg-1) > twig (7.98 g·kg-1) > shoot (4.54 g·kg-1) > root (4.00 g·kg-1) and fruit (2.85 g·kg-1) > leaf (1.92 g·kg-1) > twig (0.96 g·kg-1) > root (0.52 g·kg-1) > shoot (0.45 g·kg-1), respectively. The ranges of the coefficient of variation (CV) for C, N and P concentrations were 1.71%-4.44%, 14.49%-25.50% and 11.46%-46.15%, respectively. Specifically, the C concentration was relatively high and stable, and the maximum CV values for N and P were found in roots. The N:P value of different organs varied from 7.12-12.41 and the minimum CV for N:P was found in twig, which indicated that N:P in twig had higher internal stability. In addition, correlation analysis indicated that the C concentration was significantly negatively correlated with N and P concentrations and correlation coefficients were -0.407 and -0.342, respectively. However, N concentration had dramatically positive correlation with P concentration and the correlation coefficient was 0.814. These results also could indicate that the C, N and P stoichiometric characteristics in the S. angustata shrub accorded with the homeostatic mechanism and growth rate hypothesis to some extent, the distributions of C, N and P concentrations were closely related to the function of the organs and it should be prudent to use ecological stoichiometric ratios to judge the condition of nutrient limitation at the species level.  相似文献   

15.
生物炭调控盐胁迫下水稻幼苗耐盐性能   总被引:1,自引:0,他引:1  
土壤盐渍化降低土壤生产力。探索生物炭对盐胁迫下水稻幼苗耐盐性能的影响,对调控盐渍区水稻生产潜力具有重要意义。本研究通过生物炭介入盐胁迫稻田土壤的盆栽试验,调查了生物炭对盐胁迫下土壤环境和水稻幼苗耐盐性能的影响。盐胁迫设置4个水平,分别为0 g NaCl·kg-1土(S0),1 g NaCl·kg-1土(S1),2 g NaCl·kg-1土(S2),3 g NaCl·kg-1土(S3)。生物炭设置2个水平,分别为0 g生物炭·kg-1土(C0),3 g生物炭·kg-1土(C1)。结果表明:生物炭介入盐胁迫土壤,显著提高了水稻幼苗地上部干物重,有效改善了水稻幼苗农艺性状,显著提高了水稻幼苗茎秆中全钾含量,显著提高水稻幼苗钾钠比79.61%,提高了水稻幼苗耐盐性。生物炭介入也对水稻幼苗抗氧化性能有改善作用,显著降低了水稻幼苗中丙二醛含量,平均显著降低14.25%,抑制膜脂过氧化作用,提高抗氧化能力,减轻盐胁迫对水稻幼苗的伤害。水稻幼苗收获后土壤中水溶性氯离子和水溶性钠离子含量在生物炭介入条件下分别显著降低9.13%、17.77%。因此,添加适量生物炭能有效降低土壤水溶性盐含量,改善土壤盐胁迫环境,提升水稻对盐渍土壤的适应能力。  相似文献   

16.
施氮量对不同藜麦品种幼苗生长的影响   总被引:1,自引:0,他引:1  
通过盆栽试验,研究5个水平的施氮量(N0,0 g·kg-1;N1,0.05 g·kg-1;N2,0.1 g·kg-1;N3,0.15 g·kg-1;N4,0.2 g·kg-1)对8个不同藜麦品种幼苗生长的影响。结果表明: 1)不同施氮量处理下,藜麦品种GB22和OY的生物量最大,而品种B2的生物量最小。品种B2的花质量比最大,品种GB22的茎质量比最大,品种R1的根质量比最大,品种W23的叶质量比最大。2)施氮显著影响藜麦幼苗的生长。在较低施氮量(N1、N2)下,叶片最大净光合速率、植株生物量积累都比对照(N0)明显增加;在较高施氮量(N3、N4)下,藜麦叶片光合速率出现降低趋势,生物量积累减少。品种和施氮量对植株生物量有显著的交互作用,表明不同藜麦品种对施氮量的响应不同。品种R1、MY11、GB22、OY的最佳施氮量为0.05 g·kg-1,品种GB11、DB、B2的最佳施氮量为0.1 g·kg-1,品种W23的最佳施氮量小于0.05 g·kg-1。3)品种和施氮量之间的交互作用显著影响藜麦幼苗的生物量分配。在达到0.2 g·kg-1施氮量前,随着施氮量增加,藜麦将更多的生物量分配到花和叶。4)不同品种和施氮量下,幼苗生物量与最大净光合速率、苗高、地径、比叶面积呈显著正相关。本研究可为不同藜麦品种的养分管理提供参考。  相似文献   

17.
提高植物性食品中碘的含量对人体自然补碘具有重要作用。该文通过水培模拟实验, 揭示了草莓(Fragaria ananassa)对I-和IO3-的吸收特征, 在分析不同外源碘浓度下草莓根系以上部分生物量的基础上, 通过对比吸收外源碘前后维生素C、可溶性糖、总酸度和硝酸盐含量的变化, 评价了草莓吸收I-和IO3-对果实品质的影响。研究结果表明, 草莓对碘的吸收量随营养液中I-和IO3-浓度的增加而增加, 相同浓度下草莓吸收的I-明显多于IO3-, 草莓吸收适量的碘可以促进植株生长, 不仅使生物量提高, 而且会增加草莓果实维生素C和可溶性总糖的含量, 从而提高品质。在营养液浓度为0.5-5.0 mg∙kg-1时, 草莓吸收IO3-后会增加果实总酸度和硝酸盐的含量, 降低草莓果实品质。在营养液浓度为0.25-2.5 mg∙kg-1时, 草莓吸收I-后会使果实中总酸度和硝酸盐的含量明显降低, 果实的品质有所提高。研究结果为科学培育含碘草莓提供了技术支撑。  相似文献   

18.
《植物生态学报》2017,41(5):506
Aims Xinjiang is located in the hinterland of the Eurasian arid areas, with grasslands widely distributed. Grasslands in Xinjiang provide significant economic and ecological benefits. However, research on evapotranspiration (ET) and water use efficiency (WUE) of the grasslands is still relatively weak. This study aimed to explore the spatio-temporal characteristics on ET and WUE in the grasslands of Xinjiang in the context of climate change.Methods The Biome-BGC model was used to determine the spatio-temporal characteristics of ET and WUE of the grasslands over the period 1979-2012 across different seasons, areas and grassland types in Xinjiang.Important findings The average annual ET in the grasslands of Xinjiang was estimated at 245.7 mm, with interannual variations generally consistent with that of precipitation. Overall, the value of ET was lower than that of precipitation. The higher values of ET mainly distributed in the Tianshan Mountains, Altai Mountains, Altun Mountains and the low mountain areas on the northern slope of Kunlun Mountains. The lower values of ET mainly distributed in the highland areas of Kunlun Mountains and the desert plains. Over the period 1979-2012, average annual ET was 183.2 mm in the grasslands of southern Xinjiang, 357.9 mm in the grasslands of the Tianshan Mountains, and 221.3 mm in grasslands of northern Xinjiang. In winter, ET in grasslands of northern Xinjiang was slightly higher than that of Tianshan Mountains. Average annual ET ranked among grassland types as: mid-mountain meadow > swamp meadow > typical grassland > desert grassland > alpine meadow > saline meadow. The highest ET value occurred in summer, and the lowest ET value occurred in winter, with ET in spring being slightly higher than that in autumn. The higher WUE values mainly distributed in the areas of Tianshan Mountains and Altai Mountains. The lower WUE values mainly distributed in the highland areas of Kunlun Mountains and part of the desert plains. The average annual WUE in the grasslands of Xinjiang was 0.56 g·kg-1, with the seasonal values of 0.43 g·kg-1 in spring, 0.60 g·kg-1 in summer, and 0.48 g·kg-1 in autumn, respectively. Over the period 1979-2012, the values of WUE displayed significant regional differences: the average values were 0.73 g·kg-1 in northern Xinjiang, 0.26 g·kg-1 in southern Xinjiang, and 0.69 g·kg-1 in Tianshan Mountains. There were also significant differences in WUE among grassland types. The values of WUE ranked in the order of mid-mountain meadow > typical grassland > swamp meadow > saline meadow > alpine meadow > desert grassland.  相似文献   

19.
以盆栽野皂荚2年生实生苗为材料,设置土壤NaCl含量分别为0.053%(CK)、0.15%、0.3%、0.45%和0.6%的盐胁迫处理,研究不同浓度盐处理对苗木生长、细胞膜透性、细胞保护酶活性以及Na+和K+分布格局的影响,探讨了其耐盐阈值和机理.结果表明:随着NaCl浓度增加,苗木生长量逐渐降低,盐害指数逐渐升高;野皂荚可忍耐的土壤含盐量为0.42%.随着NaCl浓度增加,叶片相对电导率、氧自由基产生速率和丙二醛(MDA)含量均逐渐增大;超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性呈先上升后下降的变化趋势,在土壤含盐量0.3%或0.45%时达到峰值;高盐胁迫下,SOD、POD和CAT活性的增强可及时清除盐胁迫产生的氧自由基,进而缓解或避免膜脂过氧化作用对组织细胞的伤害.盐胁迫下根、茎、叶的Na+含量均逐渐增大,且呈现根>叶>茎的分布格局;K+含量和K+/Na+呈下降趋势,呈现叶>根>茎的分布格局;K+-Na+选择性运输系数(SK+·Na+)随着土壤含盐量的增加逐渐升高,且叶SK+·Na+高于茎SK+·Na+.野皂荚耐盐机制是根系拒盐和叶片耐盐;盐胁迫下,根系Na+累积能力增强可控制Na+向地上运输以避免盐害发生,叶片K+选择性吸收和累积能力的显著提高可忍耐和补偿Na+对组织的伤害.  相似文献   

20.
Cd胁迫下苎麻的生长响应与富集、转运特征研究   总被引:2,自引:0,他引:2  
通过盆栽试验,分析了苎麻湘苎三号在Cd胁迫下生长响应及其富集、耐性和迁移特征.结果表明,低浓度Cd处理(≤100mgmg·kg-1)能促进苎麻生长发育,株高、茎粗、有效分蘖数和生物量都有所增加,以50mg·kg-1胁迫处理最佳;此后则随处理浓度增加抑制效应越明显,到500mg·kg-1时,各营养生长指标较对照显著减少,但仍生长较好,表明苎麻对重金属Cd胁迫具有很强的耐性.地下部与地上部Cd含量随处理浓度提高而增加,至500 mg.k g-1浓度时达最高值,分别为221.95mg.kg-1和390.61mg·kg-1.苎麻Cd富集系数和转运系数分别为0.47~1.10和0.57~0.94.因此,苎麻不属于Cd超富集植物,而只是Cd富集植物,鉴于其具有根系发达、保水固土能力强和地上部生物量大等特点,苎麻是目前重金属Cd污染修复较理想的植物.  相似文献   

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