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1.
低磷胁迫下云南松幼苗的生物量及其分配   总被引:6,自引:0,他引:6  
戴开结  何方  沈有信  邓云  周文君  崔景云   《广西植物》2006,26(2):183-186
对云南松幼苗进行低磷胁迫的实验表明:不同磷处理水平下云南松幼苗的总生物量、茎叶生物量和株高在处理间的差异极为显著;随着培养液磷浓度的降低,云南松幼苗茎叶生物量和总生物量下降,株高降低,侧芽数减少;总生物量与茎叶生物量之间存在极显著的相关关系和线性回归关系,总生物量随培养液磷浓度的降低而下降主要是由茎叶生物量随培养液磷浓度的降低而下降引起的。低磷胁迫下云南松幼苗的根系生物量并没有随培养液磷浓度的降低而明显减少,根系生物量保持在比较高的水平,低磷胁迫下的云南松幼苗主要以降低茎叶生物量为代价来提高根冠比并保持根系生物量在比较高的水平来维持整个生命。实验还表明,在培养液磷浓度0.03125~0.00781mmol·L-1之间或附近,存在着一个云南松幼苗对低磷忍耐的临界值。  相似文献   

2.
安慧  上官周平 《生态学报》2009,29(11):6017-6024
采用植物生长箱溶液培养方式,对白三叶幼苗进行了不同光强(2个水平)和氮浓度(5个水平)处理,探讨其生长、生物量和光合生理特征对生境变化的响应.结果表明:两种光强下白三叶幼苗茎和叶生物量随氮素浓度呈先升高后降低,而根系生物量和根冠比则随氮素浓度增高而降低.光照强度降低使白三叶幼苗根、茎、叶和整株生物量分别降低67.8%、29.9%、42.5%和45.2%;低光处理使幼苗的根冠比显著下降,而比叶面积(SLA)明显提高.幼苗根系体积随氮素浓度增高而降低,高生长光强根系体积显著高于低生长光强下的白三叶.幼苗根系表面积、根系长度和根系直径随氮素浓度增加呈先增加后降低趋势,两种不同生长光强下幼苗根系长度和根系直径差异显著,而根系表面积差异不明显.白三叶叶片光合速率(Pn)随氮素浓度增加呈先增加后降低趋势,高生长光强白三叶Pn显著高于低生长光强下的白三叶.两种生长光强间叶片气孔导度(Gs),胞间CO2浓度(Ci)和蒸腾速率(Tr)无显著差异,但氮素浓度对叶片Gs、Ci和Tr均有显著影响.光、氮及其交互作用对白三叶幼苗生长发育产生了显著影响,光照不足和氮缺乏都将导致白三叶幼苗生长减弱,但幼苗对这些不利环境具有较强的调节和适应能力.  相似文献   

3.
低磷供应对拟南芥根系构型的影响   总被引:3,自引:1,他引:2  
王学敏 《植物研究》2010,30(4):496-502
在人工气候箱中,采用Johnson培养基对拟南芥在低磷供应条件下根系构型的变化进行了研究,结果表明:拟南芥在磷饥饿诱导下,主根缩短,侧根密度、根毛的数量和长度显著增加,并且,根尖到第一侧根和第一根毛的距离也大大缩短。这些改变增加了根系比表面积,并且使得根系分布更加靠近土壤表层,有利于提高植物吸收土壤中有机磷的效率。低磷胁迫还导致拟南芥根系分生组织区细胞形状变异,柱细胞数量减少;主根生长和细胞伸长的动力学分析显示,磷饥饿促使拟南芥主根生长变缓,细胞长度随磷饥饿程度的加深迅速缩小。CycB1;1:GUS染色分析结果表明,低磷破坏拟南芥根系分生组织细胞分裂能力,这些结果说明磷胁迫同时抑制了细胞的伸长和分裂,从而引起拟南芥主根的缩短。  相似文献   

4.
丛枝菌根真菌和磷水平对番茄幼苗侧根形成的影响   总被引:2,自引:0,他引:2  
为了探讨丛枝菌根真菌(AMF)和磷水平对植物根系构型的影响,在两个磷水平下对番茄幼苗接种AMF菌株Rhizophagus irregularis BGC JX04B,研究AMF和磷水平对番茄幼苗侧根形成的影响.结果表明: AMF对植株生物量的促进效应不明显,但显著降低了植株的根冠比;显著增加了主根长而减少了1级侧根长,并与侵染时期存在互作;显著降低了2~3级侧根数量及2级侧根数与1级侧根数的比值,对1~2级侧根密度无显著影响.高磷(50 mg·kg-1P)显著促进了植株生长,降低了植株的根冠比;对主根长和1级侧根长无显著影响,显著增加了1~3级侧根数量及2级侧根数与1级侧根数的比值,提高了1~2级侧根密度.表明AMF和磷水平对番茄侧根形成的影响机制不同,高磷的影响可能基于对养分吸收和生长的促进效应,而AMF的影响则更为复杂,且AMF与侵染时期的互作效应预示着碳素分配(糖信号)可能参与了AMF对根系构型的调控.  相似文献   

5.
采用土培的方法,研究了磷(P)胁迫对雷公藤(Tripterygium wilfordii Hook.f.)1年生和3年生幼苗在一个生长季内形态指标及生物量的影响。结果表明:低P处理显著抑制了雷公藤幼苗地上部分的增长,而对地下部分的影响较小,导致根冠比的增加,在相同P水平处理下,3年生雷公藤的根冠比高于1年生的;低P胁迫显著影响了雷公藤的生物量积累及分配,雷公藤幼苗总生物量及1年生雷公藤细根生物量占根系生物量的比例下降,根系生物量在总生物量中的比例及3年生雷公藤细根生物量在根系生物量中的比例上升。这表明3年生雷公藤对P逆境有更好的适应机制,对低P林地套种雷公藤的苗龄选择有参考价值;雷公藤幼苗的株高、最长枝均与生物量呈显著的正相关,可作为耐低P雷公藤良种选育中优良性状的指标。中轻度的P胁迫不显著影响根系生物量的积累,维持较大比例的根系是雷公藤适应低P胁迫的主要策略。  相似文献   

6.
低磷胁迫下磷高效基因型大麦的根系形态特征   总被引:1,自引:0,他引:1  
在根袋土培盆栽条件下,以磷高效基因型DH110+、DH147和低效基因型DH49大麦为试验材料,利用根系分析系统分析不同施磷(P2O5)水平(极低磷25 mg·kg-1、低磷50 mg·kg-1和正常磷75 mg·kg-1)下,磷高效基因型大麦的根系形态特征及其与植株磷素吸收的关系.结果表明: 低磷胁迫显著降低大麦生物量和磷吸收量,其中磷高效基因型的生物量和磷吸收量在各施磷水平下分别为低效基因型的1.24~1.70和1.18~1.83倍;大麦的总根长、总根表面积、平均根系直径、不定根长及其根表面积、侧根长及其根表面积均随施磷水平的降低而显著降低,其中磷高效基因型大麦在各施磷水平下的总根长、总根表面积、比根长、侧根长及根表面积分别为低效基因型的1.46~2.06、1.12~1.51、1.35~1.72、1.69~2.42和1.40~1.78倍,而平均根系直径为低效基因型的70.6%~90.2%;主成分分析表明,平均根系直径、比根表面积和比根长受基因型差异的影响较为明显,是区分两类磷效率基因型大麦根系形态差异的主要指标;偏最小二乘回归分析表明,各施磷水平下,总根长、总根表面积对大麦植株磷素吸收贡献均较大,随施磷水平降低,不定根长、不定根表面积对大麦植株磷素吸收的贡献明显降低,而平均根系直径、比根长、侧根长及其根表面积的贡献明显增加.磷高效基因型大麦可通过维持侧根的生长、根细度和比根长的增加来适应低磷胁迫.  相似文献   

7.
不同磷源对云南松幼苗生长和磷吸收量的影响   总被引:2,自引:0,他引:2  
磷是控制生命过程的重要元素,植物在生长过程中需要大量的磷,低磷常导致一些植物发生适应性变化.云南松(Pinus yunnanensis Franch.)对低磷土壤环境表现出了很强的适应能力,广泛分布并正常生长于贫瘠的低磷红壤上,研究不同磷源对云南松幼苗生长和磷吸收量影响,对揭示云南松的低磷适应机理具有重要参考意义.试验所用培养云南松幼苗的种子采集自云南省通海县秀山森林公园内的健壮云南松林.试验研究了不同磷源对云南松幼苗茎高、主根长、生物量、根冠比、磷含量的影响,结果表明:(1)不同磷源处理间云南松幼苗茎高(F=2.352,P=0.067)、主根长(F=1.775,P=0.151)、茎叶生物量(F=1.359,P=0.269)、根系生物量(F=2.807,P=0.035)和总生物量(F=1.017,P=0.427)几个参数并没有表现出实质性差异,云南松幼苗生长在不同磷源处理间的差异不明显;(2)不同磷源处理下云南松幼苗根冠比的大小顺序依次为普通磷源KH2PO4>钙磷Ca3(PO4)2>铝磷AlPO4>无磷CK>铁磷FePO4 · 4H2O,幼苗体内磷含量的高低顺序依次为普通磷源KH2PO4>铁磷FePO4 · 4H2O>铝磷AlPO4>钙磷Ca3(PO4)2>无磷CK;(3)普通磷源比其它磷源更能够被云南松幼苗吸收利用;(4)云南松幼苗地下部分磷含量始终比地上部分磷含量高.  相似文献   

8.
为探讨丛枝菌根真菌(AMF)、磷水平和生长素对植物侧根形成的影响,在两种磷水平下接种AMF(Rhizophagus irregularis BGC JX04B),施用IBA、生长素运输抑制剂(TIBA),观察AMF、磷水平和生长素对枳Poncirus trifoliata幼苗侧根形成的调控效应。结果表明,AMF对植株生物量及各级侧根数量无显著影响,但显著降低一级侧根长度;磷水平对植株生物量、侧根数量及长度无显著影响;TIBA显著降低植株生物量、侧根数量和侧根长度,而IBA对各项指标无显著影响。AMF和生长素对主根长度的影响存在显著互作;AMF、磷水平和生长素对二级和三级侧根数量的影响存在显著互作。因此,AMF对枳侧根形成的调控可能涉及生长素信号途径,而生长素运输是枳侧根形成的关键因素。  相似文献   

9.
低磷胁迫对水稻苗期侧根生长及养分吸收的影响   总被引:50,自引:0,他引:50  
用蛭石与石英砂作为混合培养介质研究了低磷胁迫对水稻(Oryza sativa L.)苗期侧根发生发育的影响及其与磷吸收的相关关系。结果表明:低磷对水稻的侧根发生发育具有明显的诱导作用及基因型差异。相关性分析表明:单位侧根长度的增加与单位根表面积的增大极显相关,而单位侧根数量的增多与单位根表面积的增大无显的相关性。表明单位根表面积的增加主要来自于单位侧根的伸长。侧根参数与磷含量的相关性分析表明:低磷条件下,侧根总长度和侧根数量都与植株磷含量存在显的正相关,根系总表面积与磷含量存在极显的正相关。表明在低磷条件下,侧根的发生发育对水稻的磷吸收具有重要的作用。根系和地上部的可溶性糖含量分析表明;低磷胁迫改变了同化物在地上部和根系的分配。生物量测定表明:低磷胁迫显增大了植株的根冠比。  相似文献   

10.
为了探析磷对刺梨(Rosa roxburghii Tratt.)幼苗生长、养分含量及其相关生理的影响,揭示刺梨适应低磷胁迫的生理机制,该研究采用石英砂和蛭石混合基质培育的方法,分析不同供磷水平对刺梨幼苗生长和根系形态特征、根和叶中的酸性磷酸酶(APase)、硝酸还原酶(NR)和根中的分泌性磷酸酶活性(SAPase)、根中小分子有机酸组分及含量和植株中营养元素含量的影响。结果表明:(1)供磷水平高于或低于45mg·L-1均会抑制刺梨幼苗的生长,明显降低刺梨幼苗生物量和根总长度、总表面积、总体积、平均直径以及总根尖数;在5mg·L-1的低磷水平下,刺梨幼苗的根冠比值、根毛长度和密度最大,随着供磷水平的增加这3个指标明显降低。(2)根和叶片的APase及根的SAPase活性随供磷水平的增大而减弱,根和叶片中NR活性均于45mg·L-1供磷水平时最高,小于或大于45mg·L-1磷水平后NR活性明显减弱;根中的草酸、酒石酸、柠檬酸、苹果酸、乙酸和琥珀酸的含量均随着供磷水平的增大而降低。(3)刺梨幼苗中P、Ca和Mg含量均随着供磷水平的提高而增大,Zn含量随供磷水平的增大而减小;在45mg·L-1供磷水平下刺梨幼苗中的N、P、K、Mn、Cu、B含量最高,降低或提高供磷水平后这些元素的含量都明显降低。研究认为,供磷水平过低或过高对刺梨幼苗的生长和营养元素吸收均有不利影响;根毛长度和密度的增大、叶片和根中APase及根中SAPase的活性增强、根中小分子有机酸含量的增加是刺梨幼苗应对低磷胁迫采取的重要适应策略。  相似文献   

11.
Arabidopsis thaliana root hairs grow longer and denser in response to low-phosphorus availability. In addition, plants with the root hair response acquire more phosphorus than mutants that have root hairs that do not respond to phosphorus limiting conditions. The purpose of this experiment was to determine the efficiency of root hairs in phosphorus acquisition at high- and low-phosphorus availability. Root hair growth, root growth, root respiration, plant phosphorus uptake, and plant phosphorus content of 3-wk-old wild-type Arabidopsis (WS) were compared to two root hair mutants (rhd6 and rhd2) under high (54 mmol/m) and low (0.4 mmol/m) phosphorus availability. A cost-benefit analysis was constructed from the measurements to determine root hair efficiency. Under high-phosphorus availability, root hairs did not have an effect on any of the parameters measured. Under low-phosphorus availability, wild-type Arabidopsis had greater total root surface area, shoot biomass, phosphorus per root length, and specific phosphorus uptake. The cost-benefit analysis shows that under low phosphorus, wild-type roots acquire more phosphorus for every unit of carbon respired or unit of phosphorus invested into the roots than the mutants. We conclude that the response of root hairs to low-phosphorus availability is an efficient strategy for phosphorus acquisition.  相似文献   

12.
Suboptimal phosphorus availability is a primary constraint for terrestrial plant growth. Seminal roots play an important role in acquisition of nutrients by plant seedlings. The length and number of seminal roots may be particularly important in acquisition of immobile nutrients such as phosphorus by increasing soil exploration. The objective of this study was to identify quantitative trait loci (QTL) controlling seminal root growth in response to phosphorus stress in maize, and to characterize epistatic interactions among QTL. Seminal root length and number were evaluated in 162 recombinant inbred lines derived from a cross between B73 and Mo17 in seedlings grown in a controlled environment. B73 and Mo17 significantly differed for seminal root length under low phosphorus, but not under adequate phosphorus conditions. Seminal root length of the population grown under low phosphorus ranged from 0 to 79.2 cm with a mean of 32.3 cm; while seminal root length of plants grown under high phosphorus ranged from 0.67 to 59.0 cm with a mean of 23.4 cm. Under low phosphorus, one main-effect QTL was associated with seminal root length and three QTL with seminal root number; under high phosphorus, two QTL with seminal root length and three QTL for seminal root number. These accounted for 11, 25.4, 22.8, and 24.1% of the phenotypic variations for seminal root length and number at low phosphorus, and seminal root length and number at high phosphorus, respectively. Di-genic epistatic loci were detected for seminal root length at low phosphorus (two pairs) seminal root number at low phosphorus (eight pairs), seminal root length at high phosphorus (four pairs), and seminal root number at high phosphorus (two pairs), which accounted for 23.2, 50.6, 32.2, and 20.3% of the total variations, respectively. Seminal root traits observed here were positively yet weakly correlated with shoot biomass in the field under low phosphorus, although no coincident QTL were detected. These results suggest that epistatic interactions are important in controlling genotypic variation associated with seedling seminal root traits.  相似文献   

13.
Every other week over their second growing season, stem height, collar diameter, shoot and root dry masses, number of lateral roots and length of the tap root were measured on nursery grown seedlings ofAbies balsamea L. Mill.,Pinus banksiana Lamb.,Pinus resinosa Ait.,Picea mariana Mill. BSP andPicea glauca Moench Voss. Root elongation, branching and mycorrhizal development were also recorded.Given species showed distinct seasonal growth patterns. The rate and timing of maximum root growth (mg/dry weight/week) differed markedly between species.Except for the increase in height ofPinus banksiana, root and shoot growth were not negatively correlated.The results are discussed in relation to the performance of tree seedlings in the nursery.  相似文献   

14.
为了解云南松苗木生长对生物量的影响程度和相对重要性,以采自云南省昆明市宜良县禄丰村林场种子培育的2年生云南松苗木为材料,对苗高、地径、主根长、侧根长、针叶长和侧根数6个生长性状及各组分生物量进行测定,运用相关性分析和逐步回归分析剔除了对生物量影响不大的性状,在此基础上采用通径分析方法研究了云南松苗木生长性状指标与生物量指标间的关系。结果表明:云南松苗木生长性状和生物量之间均呈现极显著的正相关关系。各生长性状对生物量均有直接或间接的正向效应,直接影响云南松苗木生物量的优势因素为地径和苗高,针叶长、侧根长和主根长对生物量的影响也起正向效应。各生长性状对生物量的直接效应均较大,而通过其他性状的间接效应均较小,其中侧根长通过其他性状对生物量产生的间接影响最大。依据相关性分析和通径分析,建立了云南松各组分生物量与生长性状之间的数学模型,可用于云南松苗期生物量的估测。  相似文献   

15.
In 2000 there was an oil spill at the Getúlio Vargas Refinery (REPAR/PETROBRÁS) in Paraná, Brazil. Nearly five years after contamination and the use of bioremediation, a study was carried out to identify the effects of the contaminated soil and the bioremediated soil on the germination and initial growth of Mimosa pilulifera seedlings. The experiment consisted of three treatments: petroleum-contaminated soil, bioremediated soil and uncontaminated soil, with five repetitions each. The following measurements were taken after 30, 60 and 90 days of planting: the percentage of germination, biomass and leaf area of the eophylls, biomass and length of the shoot and the roots in addition to the shoot/root ratio. The percentage of germination and the root biomass were not affected by the contaminated soil or by the bioremediated soil. On both the contaminated soil and the bioremediated soil biomass and leaf area of the eophyll were reduced. Plant length and shoot biomass were lower in the contaminated soil. Furthermore, the effect of the contaminated soil and the bioremediated soil was greater in the shoot than in the root system, since the bioremediation reduced the toxicity of the petroleum-contaminated soil.  相似文献   

16.
Peek  C. S.  Robson  A. D.  Kuo  J. 《Plant and Soil》2003,248(1-2):237-246
The effect of phosphorus supply on the formation, morphology and anatomy of cluster roots of Lupinus albus L. cv Ultra grown in a loam and two sandy soils was examined relative to its effect on total root length, shoot weight and the phosphorus concentration of the shoots. The loam soil was most conducive to the formation of cluster roots. Cluster roots growing in the sandy soils developed to a lesser extent on plants of an equivalent phosphorus status, suggesting that some biotic or abiotic factors independent of phosphorus supply were also operating. The presence of mature cluster rootlets on a length of lateral root increased the root surface area by 14–22 times of an equal length of lateral roots not bearing cluster rootlets. The application of phosphorus decreased cluster-root length, whereas total root length showed a steady increase. There was an inverse relationship between cluster-root production and phosphorus concentration in shoots ranging from 2 to 8.5 mg g–1 with the critical phosphorus level for maximum shoot growth being around 2.5 mg g–1. Cluster roots formed in solution culture were not well developed in comparison with those grown in the loam soil or nutrient solution with added loam soil. The organisation of the cluster rootlet was similar to that of the lateral roots. Mature rootlets lacked an apical meristem and a vascular cambium with a reduced root cap and cortical tissue.  相似文献   

17.
垂直方向磷素竞争对杉木根系生长及生物量分配的影响   总被引:2,自引:0,他引:2  
针对自然环境中有效磷养分主要分布于土壤表层而容易导致植物根系激烈竞争的问题,选择同一杉木(Cunninghamia lanceolata)无性系幼苗为研究对象,采用水平方向空间狭小而垂直方向空间大的室内盆栽模拟装置,以单株种植为对照,构建双株种植的竞争处理,通过设置3个供磷水平:不供磷处理(0 mg/kg KH_2PO_4)、低磷处理(6 mg/kg KH_2PO_4)和正常供磷处理(12 mg/kg KH_2PO_4),采用破坏性试验方式收获,分别在试验的前期(50 d)、中期(100 d)和后期(150 d)测定不同处理条件下杉木幼苗根系生物量与根系形态的变化,研究邻株杉木根系在垂直方向上对有限磷素资源的竞争策略。结果表明:竞争处理和供磷水平对杉木幼苗根系长度、平均直径等形态指标的影响存在交互作用(P0.05),对杉木幼苗生物量分配、比根长等指标的影响均不存在明显的交互作用(P0.05)。竞争处理中杉木根系形态增量均明显高于非竞争处理的单株幼苗,且随着胁迫时间的增加,根系形态增量均呈现显著的上升趋势,其中在胁迫中期和后期的增量明显高于前期,且邻株竞争处理明显提高了杉木的比根长,提升了根系觅磷的能力;随着供磷水平的提高,根表面积和根体积增量大体上呈现先上升后下降的趋势。与非竞争处理相比,竞争条件下杉木地上部生物积累量差异不明显,而根系生物量、根冠比均低于非竞争处理的单株幼苗。  相似文献   

18.
左家哺   《广西植物》1994,14(2):185-192
本文比较研究了二种不同种源即贵州省威宁县河块乡树舍村和云南省安宁县绿乡官地村的云南含笑苗期的地径、苗高、根系、叶面积等因子生长状况及其生物产量;其次,分析了生物量以及各生长因子间的相互关系:第三.根据实际调查与测定数据拟合了关于生物量与各生长因子以及各器官生物量之间的34个数学模型。文末拟定了云南含笑一年生苗木分级标准。  相似文献   

19.
The effect of nutrient deficiency, aeration, phosphorus supply, and nitrogen source on the formation of cluster (proteoid) roots was examined in Myrica gale seedlings growing in water culture. Only the omission of phosphorus resulted in the formation of significant numbers to cluster roots when plants were grown in a number of 1/4 strength Hoagland's solutions, each lacking one mineral nutrient. Aeration shortened the time required for cluster root formation and increased the percentage of plants forming cluster roots. The proportion of the root system comprised of cluster roots decreased as the phosphorus concentration in the solution increased and no cluster roots formed in solutions containing 8 mg P/L. Phosphorus supply also affected total plant biomass, proportion of biomass comprising nitrogen-fixing nodules, shoot:root ratio, phosphorus concentration in the leaves and phosphorus content of the plants. The plants showed luxury consumption of phosphorus and were able to produce large amounts of biomass utilizing only stored phosphorus.Nitrogen source also affected cluster root formation. Urea-fed plants produced cluster roots more quickly and devoted a substantially larger proportion of root growth to cluster roots than did nitrate-fed plants. The longest cluster root axes were produced in nitrate-fed plants supplied with no phosphorus and the shortest were in urea-fed plants at 4 mg P L–1.Four methods for expressing the extent of cluster root formation were examined and it was concluded that cluster roots as a proportion of total fine root dry weight is preferable in many cases. Formation of cluster roots in response to phosphorus deficiency coupled with previously demonstrated traits allows Myrica gale to adapt to a wide range of soil conditions.  相似文献   

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