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1.
马尾松是我国南方生态恢复与重建的先锋树种,具有耐干旱、耐贫瘠及速生丰产等优点,其人工林在我国森林资源总量中占举足轻重的位置,但纯林的养分循环差,易导致生产力低下;而研究马尾松光合生理特性及资源利用效率可以为马尾松人工林生产力的提高提供坚实的理论基础。文中综述马尾松光合生理特性及资源利用效率的研究进展,分析逆境胁迫对其光合生理特性及资源利用效率的影响,包括水分胁迫、热胁迫、酸雨胁迫、低磷胁迫及铝胁迫等。在全球变化背景下,研究马尾松光合生理特性与资源利用效率及其对逆境胁迫的响应,对于制定马尾松的管理与保护策略、挖掘其抗性潜力具有重要意义,可为马尾松林分生产力的提升及纯林改良策略的制定提供理论参考。  相似文献   

2.
为研究松材线虫侵染对寄主植物生理生化物质代谢的影响,以黑松和马尾松4 5年生苗为实验材料,测定了接种松材线虫对2种寄主植物的营养物质和次生代谢物质含量的变化及其规律。结果显示:接种松材线虫初期,黑松和马尾松的总糖含量均较高,随接种时间的延长,总糖含量呈不断下降趋势;黑松的可溶性糖含量一直降低并明显低于对照,马尾松的可溶性糖含量在侵染前期与对照相比变化不明显,而15 d后快速降低;黑松和马尾松的可溶性蛋白含量侵染前期均低于对照,后升高,再降低;黑松的单宁含量明显高于对照,马尾松的单宁含量接种第1天略低于对照,第3天后开始升高;黑松和马尾松的总酚含量均在侵染前期高于对照,而后降低。这些物质的变化趋势显示松材线虫侵染不同寄主植物的生理反应。  相似文献   

3.
由于人工林面积的不断扩大和人类经营措施的不合理,致使世界范围内人工林地力衰退现象十分严重.我国主要造林树种杉木(Cunninghamia lanceolata(Lamb.) Hook)、落叶松(Larix spp.)、桉树(Eucalyptus spp.)等存在地力衰退现象[1-4],其中田大伦[5]、杨玉盛[6]、叶绍明[7]等分别对杉木、桉树连栽进行了较深入研究,得出连栽林地土壤理化性质、林下植物、枯落物生物量及养分循环等有下降趋势.  相似文献   

4.
We analyzed basal area (BA) growth using growth data obtained from permanent plots over 4 years for five major tree species in Anhui Province, eastern China. The studied species were dominant conifers (Pinus massoniana and Cunninghamia lanceolata) and co-dominant broad-leaved species (Castanopsis eyrei, Castanopsis sclerophylla, and Loropetalum chinense). A hierarchical Bayesian approach was used to estimate species-specific parameters and to quantify a spatially autocorrelated random effect. We selected a model that included only the following relevant predictor variables: initial size, asymmetric competition, spatially autocorrelated random effect, and random effect associated with plots. For all species analyzed, the model accounted for significant proportions of the variation (R 2 = 70–98 %) in BA growth rates. The initial slope of the relationship between BA growth rate and the initial BA tended to be steeper for P. massoniana than for C. lanceolata. The BA growth rate increased from an initial low value and then leveled off, with a lower maximum BA growth rate for C. lanceolata than for P. massoniana. The BA growth rate of P. massoniana was significantly affected by asymmetric competition with neighbors. The results of our analyses were used to predict to what extent thinning neighboring trees at different intensities would reduce competition impacts on BA growth of P. massoniana and C. lanceolata. Our results also helped to clarify the ecological characteristics of the species analyzed, as well as the spatial distribution of unknown factors influencing tree growth.  相似文献   

5.
Growth and physiological responses of Pinus pinaster Ait. to water and nutrient availability were compared in four open pollinated families of Arenas de San Pedro provenance (Central Iberian Peninsula), looking for more useful parameters and growing conditions to be included in early selection programmes of forest trees. Young seedlings were grown in a greenhouse, subjected to high and low water and nutrient regimes, during 14 weeks. Interfamily differences were significant with regard to growth, nutrient content and water-use efficiency (WUE): differences in growth were higher under more favourable growing conditions; gas exchange differences were higher in the short term (9 weeks), indicating a faster reaction to water stress of the better adapted families to these conditions; the highest growth rates were found in the families with the largest plasticity, highest WUE and highest nutrient content. Water regime and nutrients had significant effects on growth, δ13C, gas exchange and water relation parameters. For these parameters the ranking of the families was kept regardless the water × nutrient supply combination and there was not a significant family × treatment interaction. In the long term (14 weeks) higher water supply and nutrient content significantly increased instantaneous WUE. The positive relationships between growth, intrinsic WUE (A/g wv) and δ13C demonstrate that it should be possible to use physiological parameters (e.g. g wv, δ13C) as a surrogate for the efficiency in the use of water, at least if short periods of water stress (up to 2 months long) were frequent, as it occurs in the Mediterranean basin. There was also some indication that the decrease in nitrogen or potassium supply led to increasing stomatal conductance and hence lower WUE.  相似文献   

6.
设置了N、P和全养分斑块等3种异质养分环境的盆栽试验,并以同质养分环境的盆栽试验为对照,研究马尾松苗觅取N、P斑块养分的行为差异。结果表明:马尾松苗在遭遇富P和全养分斑块时将明显有利其苗的生长和干物质积累,而在遭遇富N斑块时马尾松苗生长反应则不敏感。马尾松苗在觅取斑块P素时根系形态可塑性和生理可塑性发挥了重要的作用,遭遇富P素斑块时马尾松苗根系大量增生,表现出较大的根系广布性、较高的觅养精确性和反应敏感度,根系N、P吸收效率也明显提高;马尾松苗在N斑块的异质养分环境中的根系广布性小、觅养精确性和反应敏感度  相似文献   

7.
水分胁迫下外生菌根对马尾松幼苗养分吸收的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
利用接种褐环乳牛肝菌、鸡油菌、彩色豆马勃、土生空团菌的马尾松苗,在温室采用盆栽方法,研究水分胁迫下,不同菌根化苗对养分的吸收情况.结果表明:在水分胁迫下,外生菌根能显著提高马尾松幼苗对N、P、K的吸收.随胁迫加剧,菌根化苗N、P含量和磷酸酶活性均呈先增后降趋势,在中度胁迫时达最大,其中,接种褐环乳牛肝菌l的苗对N、P吸收效果最好,分别比对照增加56.65%和44.32%;接种彩色豆马勃和褐环乳牛肝菌1的马尾松苗的K含量随胁迫的加剧先增后降,在轻度胁迫时达最大,分别比对照增加221.99%和200.00%.N和K主要分布在叶中,而P在根、茎、叶中分布较均匀,菌根的形成有利于马尾松幼苗N、K的上行运输.在轻度和中度胁迫下,接种褐环乳牛肝菌1对提高马尾松苗N、P、K的吸收和含量效果最好,同时也促进了马毛松幼苗生长和抗旱能力的增强.  相似文献   

8.
不同品种的杨树对重金属污染土壤的修复和耐受性存在显著差异,为了解不同品种的杨树对铅(Pb)和镉(Cd)的耐抗特性,以南林95杨和南林895杨为研究对象,研究其在不同浓度Pb胁迫和PbCd复合胁迫下的生理响应,对其根系活力、过氧化氢酶(CAT)活性、可溶性蛋白质和叶绿素含量等指标进行对比分析,并采用主成分分析和隶属函数法综合评价2种杨树对Pb和Cd胁迫的耐受性。结果表明,南林95杨和南林895杨在Pb胁迫和Pb-Cd复合胁迫下,各生理指标的变化趋势大致相同,均表现出较强的耐受性;在Pb胁迫和Pb-Cd复合胁迫下,南林895杨的根系活力和CAT活性均强于南林95杨,但其叶绿素含量少于南林95杨。Pb胁迫下,南林95杨的可溶性蛋白质含量略高于南林895杨,在Pb-Cd复合胁迫下则相反。综合评价结果表明,南林895杨对重金属Pb和Cd的耐受性强于南林95杨,具有更好的修复前景。  相似文献   

9.
3种白刺耐盐性的对比分析   总被引:2,自引:5,他引:2       下载免费PDF全文
以2年生西伯利亚白刺、齿叶白刺和唐古特白刺苗为材料,设置0、100、200、300、400 mmol.L-1NaCl 5种盐浓度开展胁迫试验,测定并对比分析其对盐胁迫的生长及生理生化响应。结果表明:低盐浓度处理促使白刺生长速度和生物量增加、叶绿素含量增高,高盐浓度处理下这种促进作用降低;在100 mmol.L-1的盐处理下,唐古特白刺、西伯利亚白刺、齿叶白刺叶绿素含量均达最高,分别为0.72、0.78、0.61 mg.g-1;在400 mmol.L-1的盐处理下,唐古特白刺、西伯利亚白刺、齿叶白刺生物量为最低,分别为10.49、12.42、10.19 g.株-1,仅为对照的75%79%;3种白刺中,唐古特白刺的Na+/K+最高,施盐处理下西伯利亚白刺的Na+/K+均高于对照,而齿叶白刺则低于对照;随着盐浓度的增加,3种白刺叶片中可溶性蛋白的含量递增,可溶性糖含量则先增后减;低盐浓度处理的唐古特和西伯利亚白刺叶片中MDA含量比对照低,齿叶白刺却比对照高;3种白刺的POD和SOD活性在盐处理下高于对照,其中唐古特白刺叶片中POD活性最低,齿叶白刺中SOD活性最高;3种白刺在盐胁迫下均能正常生长。  相似文献   

10.
Larix olgensis A. Henry (Changbai larch) is a productive commercial species and good candidate for afforestation in northeast China. It is widely planted in lead-stressed soils which can induce oxidative damage in this plant. Increasing tolerance to lead (Pb) stress is therefore of keen interest. A greenhouse experiment was conducted to identify the biomass, physiological responses and Pb accumulation of L. olgensis seedlings to Pb stress under succinic acid (SA) application and to explore the interaction of exogenous SA applications and stress resistance. L. olgensis seedlings were planted in Pb-stressed or unstressed haplic cambisols in pots. In Pb-contaminated soils the seedlings were treated daily with concentrations of SA solutions at a rate approximately equivalent to 0, 0.04, 0.2, 1.0, or 2.0 mmol kg?1 of soil for 10, 20, and 30 days, respectively. Pb treatment induced damage in the seedlings and led to the inhibition of biomass accumulation in roots, stems and leaves, and a rise in Pb accumulation in fine roots and leaves. Malondialdehyde (MDA) content and electrolyte leakage in leaves significantly increased while peroxidase (POD) activities, soluble protein and photosynthetic pigment contents in leaves were all reduced. Physiological toxicity was promoted with increasing Pb treatment times. When Pb-stressed seedlings were exposed to SA (especially 10.0 mmol L?1 over 20 days), the physiological responses for Pb-only were reversed and the biomass of roots, stems, and leaves dramatically increased. SA facilitated Pb uptake in fine roots and leaves but more Pb accumulated in fine roots. The results demonstrate that exogenous SA alleviates Pb-induced oxidative injuries and improves the tolerance of L. olgensis seedlings to Pb stress.  相似文献   

11.
干旱胁迫下5种幼苗光合特性的研究   总被引:3,自引:0,他引:3       下载免费PDF全文
以该区年龄相同的5种主要植被恢复树种车桑子、滇柏、侧柏、花椒和香樟幼苗为研究对象,通过盆栽控水试验,测算其在不同水分梯度下的叶绿素相对含量、净光合速率、蒸腾速率、气孔导度、胞间CO2浓度以及水分利用效率等生理生态指标,系统比较各参数的适应性变化及其差异性分析,结果表明:(1)随着干旱胁迫的加剧,5种幼苗叶片叶绿素相对含量呈现不同的变化趋势,车桑子逐渐降低,侧柏和滇柏先降后升,花椒和香樟先升后降;(2)各光合生理生态参数也呈现不同的变化规律:随干旱胁迫的加剧,净光合速率、蒸腾速率、气孔导度均逐渐降低,且在中度和重度干旱胁迫时极显著降低,其中在重度干旱胁迫时,侧柏的净光合速率最低比对照下降了100.5%,下降幅度最大;胞间CO2浓度在轻度干旱胁迫时下降,中度和重度干旱胁迫时上升;水分利用效率在轻度和中度干旱胁迫时增加,重度干旱胁迫时下降,其中香樟的水分利用效率在重度干旱胁迫时仍是对照的1.05倍;(3)综合分析各项生理生态参数,5种幼苗均能耐受一定程度的干旱胁迫,但香樟的控水耐旱能力明显高于其它4种树种,更能适应石漠化地区的生态环境。  相似文献   

12.
[目的]在不同供Ca2+水平下对马尾松幼苗生长及生理特性进行研究,以确定适宜马尾松生长的钙浓度,为马尾松人工林培育及合理施用钙肥提供参考。[方法]以半年生马尾松幼苗为试材,采用温室内砂培,研究不同供Ca2+水平(0.0、0.4、1.0、2.0、3.0、4.0 mmol·L~(-1)(CK))对马尾松生长及生理指标的影响。[结果]不同供Ca2+水平处理5个月后,在Ca2+水平为1.0、2.0 mmol·L~(-1)时,马尾松幼苗的株高增量和地径增量较高,其中,2.0 mmol·L~(-1)Ca2+水平的株高增量和地径增量最高。马尾松幼苗对Ca2+水平适应能力强弱顺序为2.01.00.43.00.04.0 mmol·L~(-1)(CK)。在不同生长期内,随着供Ca2+水平的增加,马尾松针叶中ROS(O2-产生速率、H2O2浓度)、MDA含量、抗氧化酶(SOD、POD、CAT和APX)活性、抗氧化物质(GSH、As A)含量、脯氨酸含量均先降低后增加,最小值均在1.0 mmol·L~(-1)或2.0 mmol·L~(-1)处理中;类胡萝卜素含量先增加后降低,其最高值均在2.0 mmol·L~(-1)处理中。马尾松幼苗的株高增量和地径增量与类胡萝卜素含量关系不明显,而与其他生理指标均呈显著负相关。[结论]马尾松幼苗适宜在1.0 2.0 mmol·L~(-1)Ca2+水平的环境中生长。在马尾松林地中,应对土壤有效钙含量进行测定,并结合植株的生长和生理特征进行综合评价后,科学合理施肥以提高生产力。  相似文献   

13.
[目的]研究马尾松紫色酸性磷酸酶基因功能及其对低磷胁迫的应答。[方法]采用RACE法克隆马尾松紫色酸性磷酸酶(PAPs)家族成员Pm PAP1,利用软件和数据库,对基因结构功能进行多重分析预测,检测其接种外生真菌及低磷胁迫下的表达模式。[结果]表明,Pm PAP1基因c DNA全长2 520 bp,开放阅读框1 869 bp,编码622个氨基酸残基,具紫色酸性磷酸酶保守结构域特征,属于高分子量PAPs。Pm PAP1有信号肽,无跨膜区,推测定位于细胞质基质或细胞器基质中,它与莲(Nelumbo nucifera)、无油樟(Amborella trichopoda)的亲缘关系最近,相似性分别达71%和69%,进化关系古老、保守性强。时空表达分析表明,Pm PAP1的表达受外生菌根诱导,在不同组织中均有表达,其根中的表达量显著高于茎和叶。在菌根化和非菌根化的幼苗中,Pm PAP1的表达均受基质中磷含量的影响,表现为低磷条件下高效激活,高磷条件下其表达反而受到抑制。低磷胁迫下根系中酸性磷酸酶活性持续增高,说明其活性与磷供给水平和时间有相关性。[结论]首次克隆鉴定了1个受外生菌根诱导的马尾松紫色酸性磷酸酶基因,其参与了对低磷胁迫的应答,为深刻认识马尾松耐低磷的分子机制、遗传改良提供了新信息和新思路。  相似文献   

14.
油茶对低磷胁迫的生理生化效应研究   总被引:4,自引:2,他引:2       下载免费PDF全文
P是植物生长发育不可缺少的营养元素之一,它参与植物细胞膜磷脂的组成、光合磷酸化和氧化磷酸化中P的循环、能量的形成等生理生化过程,与植物体内糖类、蛋白质和脂类的代谢和三者相互转变都有密切的关系[1-2].P作为限制植物生长的障碍因子也已经越来越受到人们的重视[3-4].不同类型植物利用土壤P素的能力不同[5],近年来,如何充分挖掘植物自身潜力来提高P的利用效率已成为研究的焦点.  相似文献   

15.
Cyclobalanopsis glauca is an important afforestation tree species that is widely used for revegetating the karst region of southwest China. Vegetation in this region is regularly commonly subjected to drought stress because of the geology and water shortages. Here, we investigated the influence of two arbuscular mycorrhizal fungi (AMF) Glomus mosseae and Glomus intraradices on the drought tolerance of C. glauca seedlings under greenhouse conditions. AMF-treated and non-AMF-treated C. glauca seedlings were maintained under two different water regimes (well watered: 80 % field capacity; drought stress: 40 % field capacity) for 90 days. The AMF colonization rate was higher under well-watered conditions compared to drought stress conditions. The growth and physiological performance of C. glauca seedlings were significantly affected by drought stress. Under drought stress conditions, mycorrhizal seedlings had greater height, base diameter, leaf area, and biomass compared to non-mycorrhizal seedlings. In addition, under drought conditions, AMF-inoculated seedlings had greater superoxide dismutase and peroxidase activity, higher soluble sugar content, and lower proline content compared to non-inoculated seedlings. Furthermore, AMF colonization increased the phosphorus and potassium content of seedling shoots under both well-watered and drought stress conditions. Therefore, AMF colonization enhanced the drought tolerance of C. glauca seedlings by improving growth performance, nutrient content, the quantity of osmotic adjustment compounds, and antioxidant enzyme activity. The results indicate that AMF are of potential use for the restoration of vegetation in the karst region of southwest China.  相似文献   

16.
为揭示河竹鞭根对淹水环境的生理响应机制,以在淹水环境中能长期生存的河竹为材料,测定了人工喷灌供水(对照)、淹水6个月的河竹1年生竹鞭上的一级根、二级根的根系活力、抗氧化酶活性和膜脂过氧化、渗透调节物质含量。研究结果表明:河竹根系活力、抗氧化酶活性、MDA含量、相对电导率和可溶性蛋白含量总体上一级根明显高于二级根。长期淹水环境下,河竹一级根、二级根的根系活力、抗氧化酶活性较对照均有显著降低,相对电导率、MDA含量显著升高,水中生长根的根系活力、CAT活性显著高于土中生长根,SOD、POD活性则相反,并能通过维持总体上较高水平的根系活力、抗氧化酶活性、可溶性蛋白含量来适应长期淹水环境的胁迫,尤其是一级根和水中生长根。河竹鞭根通过抗氧化系统的平衡调节作用来适应长期淹水环境,维持生存,其中一级根对淹水环境的响应明显强于二级根,水中生长根在适应淹水环境上起到重要作用。  相似文献   

17.
对萧氏松茎象不同危害程度湿地松林地的枯落物及土壤物理性质比较研究结果表明:枯落物及腐殖质层厚度对萧氏松茎象危害程度的影响最大,其次是枯枝落叶干质量和土壤含水量,枯枝落叶含水率和吸水率影响最小,即枯落物及腐殖质层越厚,枯枝落叶越多,土壤湿度越大的林区,萧氏松茎象发生越重。单因素分析表明:枯落物及腐殖质层厚度、枯枝落叶干质量和土壤质量湿度与有虫株率的相关关系均达到显著水平。萧氏松茎象有虫株率火炬松和马尾松林发生林地明显低于湿地松发生林地。与不发生林地相比,发生林地的土壤更湿润,土壤的保水能力更好,孔隙度更高,石砾含量相对较低。  相似文献   

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干旱胁迫对青藏高原4种灌木生理指标的影响   总被引:2,自引:1,他引:1       下载免费PDF全文
以江孜沙棘(Hippophae rhamnoides)、锦鸡儿(Caragana sinica)、砂生槐(Sophora moorcroftiana)、唐古特莸(Caryopteris tangutica)4种青藏高原灌木树种为试材进行干旱胁迫模拟盆栽试验,通过对比干旱胁迫后4种灌木叶片中丙二醛(MDA)、超氧化物歧化酶(SOD)、过氧化物酶(POD)活性、脯氨酸含量、可溶性蛋白质含量的变化,对供选树种进行抗旱性能分析与评价,为青藏高原地区造林筛选优良耐旱灌木。研究表明,4种供试植物在轻度干旱时体内MDA含量缓慢升高,重度干旱时达到最大值,唐古特莸MDA含量峰值和增幅较另3个树种最小,其次是锦鸡儿和江孜沙棘,而砂生槐的MDA峰值和增幅都最大。SOD和POD活性的变化规律都为"单峰曲线",其中唐古特莸和锦鸡儿遭受干旱胁迫时SOD活性峰值出现最迟,值也最大,SOD活性降低最少,充分反映出该2种树种对干旱环境有较强的适应性及自我调节能力,江孜沙棘和砂生槐则相反。在干旱胁迫过程中,唐古特莸的POD活性始终维持在较低活性水平,而且增加的幅度最大,达到805.23%,增加幅度远高于另外3个供试树种,表现出超强的抗旱能力,而其余3个树种POD活性增幅较小,对干旱的适应性差。4树种的脯氨酸含量都呈增加趋势,唐古特莸增幅最大,与正常水分条件相比增加了10.86倍。苗木可溶性蛋白质含量的变化规律为先增大后减小,其中唐古特莸增幅最大为213.44%。通过综合评价结果表明,水分胁迫条件下,抗旱性强弱顺序均为:唐古特莸>锦鸡儿>江孜沙棘>砂生槐。  相似文献   

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[目的]从生理生化角度揭示不同光质处理对枫香家系叶色变化的影响,为探索枫香叶色对光质的响应机理提供参考。[方法]以2个枫香家系的1年生幼苗为试验材料,测定其在不同光质处理下叶片叶绿素、类胡萝卜素、花青素、可溶性糖、类黄酮和苯丙氨酸解氨酶的含量并分析其相关性。[结果]结果表明:试验后2个枫香家系叶色较处理前有一定程度的变化。红光处理组枫香幼苗叶片叶绿素含量显著高于其它处理组,而蓝光处理组叶片叶绿素含量则显著低于其它处理组。蓝光处理后,2个枫香家系叶片花青素含量较对照有显著提高,而红光处理则减少了叶片花青素含量。同时蓝光处理能显著提高枫香幼苗叶片类胡萝卜素、可溶性糖和类黄酮含量以及苯丙氨酸解氨酶活力,红光处理效果较对照无显著差异。方差分析表明,不同光质处理对枫香幼苗叶片叶绿素含量影响显著,而对花青素量和类胡萝卜素含量影响不显著。[结论]2个枫香家系叶色在光质处理下有相同的变化趋势,红光处理可以促进枫香幼苗叶片叶绿素合成;蓝光处理可以促进枫香幼苗叶片积累更多的花青素。  相似文献   

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