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1.
不同磷效率小麦品种的磷吸收特性   总被引:14,自引:2,他引:12  
在丰磷、缺磷条件下,对不同磷效率小麦品种的磷吸收特性进行研究。缺磷条件下,不同磷效率品种成熟期的植株全磷量和生育中后期(挑旗-成熟期)植株磷累积量均以磷高效品种最高,中效品种次之,低效品种最低。不同磷效率品种拔节期、挑旗期和成熟期的磷利用效率差异较小。表明磷高效小麦品种在缺磷条件下子粒产量形成能力的提高。与生育中后期植株具有相对较强的磷素吸收能力有关。缺磷条件下,不同磷效率品种在生育中后期的根系TTC还原力和可溶蛋白含量也以高效品种最高,中效次之,低效最低。表明磷高效小麦品种植株生育中后期根系具有较强的生理功能,是其在缺磷务件下吸磷量增加、产量相对明显提高的重要生理基础。研究表明,不同磷效率小麦品种在磷胁迫条件下的根系酸性磷酸化酶(APase)活性存在显著差异,并在小麦磷吸收效率的调控中具有重要作用。  相似文献   

2.
小麦不同品种磷效率比较和评价的生化指标研究   总被引:9,自引:0,他引:9  
对河北省的30个小麦品种的磷效率特征和评价的生化指标进行了研究。结果表明,供试品种在缺磷(-P)条件下的单株干重具有显著差异,供试品种-P下的磷效率可划分为高效、较高效、中效和低效等4种类型。-P处理下,单株干重和单株磷累积量随着供试品种磷效率的增大呈增加趋势;随着磷效率增大,超氧化物歧化酶(SOD)活性和过氧化氢酶(CAT)活性逐渐增加,丙二醛(MDA)含量则逐渐降低。相关分析和回归分析表明,单株干重和单株磷累积量分别与SOD活性和CAT活性呈极显著和显著正相关,与MDA含量呈极显著负相关,表明SOD活性和MDA含量可作为缺磷奈件下评价小麦品种磷效率的生化评价指标。  相似文献   

3.
不同小麦品种氮效率与氮吸收对氮素供应的响应及生理机制   总被引:13,自引:0,他引:13  
以具有典型特征的不同氮效率小麦品种为材料,研究了低氮和高氮条件下小麦的生物学性状、生理参数和氮同化代谢酶活性.结果表明:低氮条件下,不同氮效率小麦品种根系干质量、茎叶干质量、植株氮累积量基本上为氮高效品种>中效品种>低效品种.低氮条件下,氮吸收高效品种(冀97-6360)的根系活跃吸附面积、TTC还原力、叶片硝酸还原酶活性和叶片NO3-含量最大;生理高效品种(石新5418)具有较高的叶片亚硝酸还原酶活性和谷氨酰胺合成酶活性,较低的植株全氮含量、叶片NO3-含量和硝酸还原酶活性.低氮条件下植株氮利用效率与氮吸收系数显著相关.不同小麦品种在高氮条件下的生物学性状、生理参数和氮同化代谢酶活性与低氮条件下不尽一致.  相似文献   

4.
不同磷效率小麦品种对缺磷胁迫反应的比较   总被引:13,自引:0,他引:13  
在营养液培养条件下,以根据相对产量为指标筛选出的6个不同磷效率的小麦(Triticum aestivum L.)品种为材料,对其苗期在缺磷条件下生长、根冠磷含量及其分配,以及叶片韧皮部汁液中磷浓度等进行了比较研究。结果表明,缺磷抑制植株地上部生长,但刺激根系生长,导致植株根/冠比增加。无论在供磷或缺磷条件下,磷高效品种的根冠生长速率都低于磷低效品种。缺磷导致植株体内的磷含量下降与根系相比,地上部磷含量的下降速率更快。但在缺磷条件下,不同磷效率的小麦品种根冠间的磷分配变化没有差异。研究发现,在正常供磷条件下,磷高效小麦品种的叶片韧皮部汁液中磷浓度较低,而磷低效品种的叶片韧皮部汁液中磷浓度较高。但开始缺磷后,磷高效品种的叶片韧皮部汁液中的磷浓度下降较慢,使其相对磷浓度较高。缺磷后10天,磷低效品种叶片韧皮部汁液中的磷浓度为供磷对照的35.9%,而磷高效品种叶片韧皮部汁液中的磷浓度为供磷对照的59%。  相似文献   

5.
在营养液培养条件下,以根据相对产量为指标筛选出的6个不同磷效率的小麦(Triticum aestivum L.)品种为材料,对其苗期在缺磷条件下生长、根冠磷含量及其分配,以及叶片韧皮部汁液中磷浓度等进行了比较研究.结果表明,缺磷抑制植株地上部生长,但刺激根系生长,导致植株根/冠比增加.无论在供磷或缺磷条件下,磷高效品种的根冠生长速率都低于磷低效品种.缺磷导致植株体内的磷含量下降与根系相比,地上部磷含量的下降速率更快.但在缺磷条件下,不同磷效率的小麦品种根冠间的磷分配变化没有差异.研究发现,在正常供磷条件下,磷高效小麦品种的叶片韧皮部汁液中磷浓度较低,而磷低效品种的叶片韧皮部汁液中磷浓度较高.但开始缺磷后,磷高效品种的叶片韧皮部汁液中的磷浓度下降较慢,使其相对磷浓度较高.缺磷后1 0天,磷低效品种叶片韧皮部汁液中的磷浓度为供磷对照的35.9%,而磷高效品种叶片韧皮部汁液中的磷浓度为供磷对照的59%.  相似文献   

6.
以6个不同磷吸收效率粳稻品种为材料,研究了缺磷条件下各种磷效率类型水稻品种的光合特性和细胞保护酶活性.结果表明:缺磷条件下,随着植株生长进程,不同磷效率水稻品种的光合速率(Pn)和可溶性蛋白质含量(pro)均不断下降;与丰磷处理相比,缺磷处理各测定时期的Pn和pro均有所降低.不同磷效率水稻品种中,磷高效品种的Pn(10.06~10.83μmolCO2.m-2.s-1)、叶绿素含量(3.32~3.56mg.g-1FM)和pro(33.08~33.95mg.g-1FM)最高,磷中效品种次之,磷低效品种最低;不同品种的气孔导度(Gs)差异不明显.随着磷胁迫时间的延长,各品种的超氧化物歧化酶(SOD)活性降低,表现为磷高效品种>中效品种>低效品种;各品种丙二醛含量的变化趋势与SOD活性相反;而过氧化物酶(POD)活性的变化规律不明显.因此,缺磷条件下,较高的SOD活性和较低的细胞膜脂过氧化程度在改善磷高效品种的光合生理功能中具有重要作用.  相似文献   

7.
氮高效水稻种质资源筛选及相关特性分析   总被引:4,自引:0,他引:4  
在不施氮和施氮量180 kg/hm22个水平下,对45份水稻种质的氮吸收与利用等相关性状进行分析,并根据参试品种在2个施氮水平下的产量差异将其分为双高效型、高氮高效型、低氮高效型和双低效型等4种类型,重点研究不同氮效率水稻产量、吸氮量以及氮素利用率等性状的相关性及差异分析。结果表明,单株子粒重、单株秸秆重、植株吸氮量和氮生理利用率变幅分别为4.50~29.65 g、6.35~18.70 g、4.80~21.28 g/m2和19.88~62.05 g/g。无论是在低氮还是高氮水平下,水稻产量与有效穗数、穗粒数、结实率、生物量、子粒吸氮量、吸氮量和氮生理利用率均呈显著或极显著正相关,与子粒和秸秆氮浓度呈显著负相关。4种氮效率类型品种间的产量与生物量、吸氮量和氮生理利用率差异均达到极显著水平,双高效型和高氮高效型水稻受氮肥的影响最大,低氮高效型水稻受氮肥的影响最小。研究认为,青马早和陆财早不论是在低氮还是高氮水平下均表现出氮高效利用特性,为典型氮高效型;广陆矮4号在低氮水平下表现出氮高效利用特性,适于低氮条件种植,为典型耐低氮型;早89-01和早籼152在高氮水平下表现出氮高效利用特性,适于高氮条件种植。  相似文献   

8.
不同氮效率水稻品种根系生理生态指标的差异   总被引:12,自引:1,他引:11  
以氮素利用效率差异大的两个水稻品种(氮高效品种南光和氮低效品种Elio)作为试验材料,设计高低两个供氮水平,在温室砂培条件下研究了不同氮效率水稻高效吸收利用氮素的根系生物学特性及生理机制.结果表明,在两个供氮水平下,氮高效水稻南光的产量均显著大于氮低效水稻,增幅在50%以上.随着供氮水平的提高,两个水稻品种植株的总吸氮量和干物质量随之增加,氮高效水稻南光的生育后期吸氮量和地上部及根系的生物量显著高于氮低效水稻Elio;氮高效水稻品种南光根系形态参数对氮素营养的响应度高于氮低效品种Elio,高氮处理下,南光较低氮处理分别增加127%(总根长)和114%(根系表面积),而Elio仅增加92%(总根长)和82%(根系表面积),而且Elio在齐穗期后根系形态参数水平下降显著;南光的根系伤流强度在拔节期较氮低效水稻Elio高出11%(1mmol L-1)和32%(5mmol L-1),灌浆期南光较Elio高出12%(1mmol L-1)和12%(5mmol L-1),差异均显著.由本试验结果可推断根系形态及根系活力的差异是造成水稻氮效率差异的重要原因之一.  相似文献   

9.
低磷胁迫不同磷效率水稻苗期根系的生理适应性研究   总被引:27,自引:4,他引:23  
以P效率差异显著的IR74(P高效型)、IR71331(中间型)及IR71379(P低效型)等3个品种为供试材料,采用水培法研究了这3类水稻在低P胁迫下P的吸收、转运及利用效率等P效率差异的原因以及P吸收动力学特征参数、R/S、酸性磷酸酯酶(acid phosphoesterase,简称APase)与核糖核酸酶(ribonuclease,简称RNase)等表现。结果表明,在低P胁迫下,P效率的高低是由水稻对P的吸收率、转运率以及利用效率综合作用的结果,存在基因型差异,P高效基因型IR74和P效率中间型的IR71331具有高的P吸收率,而IR712379P的吸收率低。不同P效率水稻在低P胁迫下,其Km、Cmin、Imax、R/S与Apase相对活性等参数表现出基因型的差异,小的Km和Cmin,大的Imax和R/S及高的APase升幅是水稻对P胁迫的生理适应性特征,也是植株在低P胁迫下较为敏感生理指标。其中各类型水稻叶片中RNase活性在低P胁迫一均表现大幅度上升,在品种间无显著差异,说明该酶是逆境胁迫并非低P胁迫的特征反应。  相似文献   

10.
以小麦品种'小偃6号'(氮高效品种)和'长旱58'(氮低效品种)为材料,采用开顶式气室和土培实验研究了大气NH3浓度升高对生长于高、低两种供氮介质下小麦植株不同生育期叶片净光合速率(Pn)、气孔导度(Gs)、叶绿素含量、叶绿素荧光参数(Fv/Fm、Fv/F0)和可溶性糖含量的影响.结果显示:两小麦品种高氨低氮处理植株的Pn、Fv/F0和可溶性糖含量均高于高氨高氮和低氨低氮处理,并在生育后期差异达显著水平(P<0.05),氮低效品种的Gs也符合上述规律且不同处理间差异显著(P<0.05);小麦各生育期高氨高氮处理下植株的Pn均显著低于低氨高氮处理,且两处理间灌浆期的叶绿素含量和灌浆期以前的可溶性糖含量的差异显著(P<0.05),而两处理灌浆期以前的叶绿素荧光参数Fv/Fm在各处理条件下均无显著差异;不同处理间及品种间各项光合特征指标差异缺乏规律性.可见,大气中NH3浓度升高有利于改善低供氮介质条件下小麦植株的氮营养状况,但不同氮效率品种间的响应存在差异.  相似文献   

11.
The responses of gas exchange and water use efficiency to nitrogen nutrition for winter wheat were investigated under well-watered and drought conditions. The photosynthetic gas exchange parameters of winter wheat are remarkably improved by water and nitrogen nutrition and the regulative capability of nitrogen nutrition is influenced by water status. The effects of nitrogen nutrition on photosynthetic characteristics and on the limited factors to photosynthesis are not identical under different water status. Intrinsic water use efficiency (WUE(i)) of the plants at the high-N nutrition was decreased by a larger value than that of the plants in the low-N treatment due to a larger decrease in photosynthetic rate than in transpiration rate. Carbon isotope composition of plant material (delta(p)) is increased by the increase of drought intensity. The delta(p) at a given level of C(i)/C(a) is reduced by nitrogen deficiency. Leaf carbon isotope discrimination (Delta) is increased by the increase of nitrogen nutrition and decreased by the increase of drought intensity. Transpirational water use efficiency (WUE(t)) is negatively correlated with Delta in both nitrogen supply treatments and increased with the nitrogen supply.  相似文献   

12.
Abstract. The objective of the present work was to study the effect of nitrogen deficiency on drought sensitivity of tall fescue plants. The authors compared photosynthetic and stomatal behaviour of plants grown at either high (8 mol m−3) or low (0.5 mol m−3) nitrogen levels during a drought cycle followed by rehydration. Other processes investigated were stomatal and non-stomatal inhibition of leaf photosynthesis, water use efficiency and leaf rolling. Plants were grown in pots in controlled conditions on expanded clay. A Wescor in situ hygrometer placed on the leaf base outside the assimilation chamber permitted, simultaneously to leaf gas exchange measurements, monitoring of leaf water potential. Drought was imposed by withholding water from the pot. CO2 uptake and stomatal conductance decreased and leaves started to roll at a lower leaf water potential in the high-N than in the low-N grown plants. Stomatal inhibition of leaf photosynthesis seemed larger in the low-N than in the high-N plants. Water-use efficiency increased more in the high-N than in the low-N grown plants during the drought. The decrease of photosynthesis was largely reversible after rehydration in low-N but not in high-N leaves. The authors suggest that low-N plants avoid water deficit rather than tolerate it.  相似文献   

13.
The purpose of this study was to characterize leaf photosynthetic and stomatal responses of wheat (Triticum aestivum L.) plants grown under two N-nutritional regimes. High- and low-N regimes were imposed on growth-chamber-grown plants by fertilizing with nutrient solutions containing 12 or 1 millimolar nitrogen, respectively. Gas-exchange measurements indicated not only greater photosynthetic capacity of high-N plants under well-watered conditions, but also a greater sensitivity of CO2 exchange rate and leaf conductance to CO2 and leaf water potential compared to low-N plants. Increased sensitivity of high-N plants was associated with greater tissue elasticity, lower values of leaf osmotic pressure and greater aboveground biomass. These N-nutritional-related changes resulted in greater desiccation (lowered relative water content) of high-N plants as leaf water potential fell, and were implicated as being important in causing greater sensitivity of high-N leaf gas exchange to reductions in water potential. Water use efficiency of leaves, calculated as CO2 exchange rate/transpiration, increased from 9.1 to 13 millimoles per mole and 7.9 to 9.1 millimoles per mole for high- and low-N plants as water became limiting. Stomatal oscillations were commonly observed in the low-N treatment at low leaf water potentials and ambient CO2 concentrations, but disappeared as CO2 was lowered and stomata opened.  相似文献   

14.
小麦品种氮利用效率的评价指标及其氮营养特性研究   总被引:27,自引:3,他引:24  
选用40个不同小麦基因型在2个不同生态区进行田间试验,系统地分析了不同N利用效率指标的基因型与环境差异及其与N营养特性的关系.结果表明,N收获指数在基因型间的变异相对较小。其余指标受品种影响较大.N吸收效率、氮流效率受环境影响较小,其余指标受环境影响较大.所有指标均受基因型和环境互作的显著影响.氮流效率与N吸收效率、植株N生产力和土壤N生产力极显著相关,综合反映了植株干物质生产和N利用状况,可作为一个有效的N利用效率评价指标.指出提高开花后,N同化量和转运量有利于提高氮流效率.  相似文献   

15.
Nitrogen Utilization Efficiency in Canola Cultivars at Grain Harvest   总被引:1,自引:0,他引:1  
Canola (Brassica napus L.) cultivars with improved nitrogen utilization efficiency (NUE) at grain harvest are of interest to growers to reduce fertilizer inputs. Our objective was to determine whether cultivar-specific responses in NUE (seed yield per N accumulated in the whole plant) could be related to the differences in dry matter and N partitioning among various plant parts. Four spring canola cultivars were grown in a glasshouse under the conditions of low and high N supply. When compared to high-N treatment, deficient N conditions resulted in a similar decrease in dry weight for all cultivars, averaging 46% for shoot, 47% for root, and 45% for dropped leaves. The reductions in N concentrations at low-N compared to high-N treatment were much smaller and averaged 15% for shoot, 16% for root and 10% for dropped leaves. Although significant variations occurred for dry weight, N concentration and N uptake in various plant sections, all cultivars accumulated a similar amount of N in total plant biomass at harvest. However, significant differences in plant biomass, seed yield and consequently, NUE existed because more N-efficient cultivars Eyre and Charlton produced larger seed yields than less N-efficient cultivars Pinnacle and Rainbow. No consistent variations in N concentration in various plant parts could be established among tested cultivars. Thus, cultivar-specific responses in NUE were mainly attributed to the differences in the root-to-shoot ratio and harvest index. N-efficient Eyre produced seed yield similar to the highest yielding Charlton, though it had the smallest plant dry weight of all cultivars. In contrast, N-inefficient Rainbow had the largest plant biomass, but produced the smallest seed yield because of its lowest harvest index and the highest root-to-shoot ratio. The absence of cultivar×N treatment interactions indicated that cultivars performed similarly for plant biomass, N uptake and seed yield across two contrasting N supplies. Canola cultivars significantly differed in NUE despite a similar amount of absorbed N in plant biomass; more N-efficient cultivars outyielded less N-efficient ones primarily because of cultivar-specific variations in the root-to-shoot ratio and harvest index.  相似文献   

16.
高大气CO2浓度下氮素对小麦叶片光能利用的影响   总被引:3,自引:0,他引:3       下载免费PDF全文
关于氮素对高大气CO2浓度下C3植物光合作用适应现象的调节机理已有较为深入的研究, 但对其光合作用适应现象的光合能量转化和分配机制缺乏系统分析。该文以大气CO2浓度和施氮量为处理手段, 通过测定小麦(Triticum aestivum)抽穗期叶片的光合作用-胞间CO2浓度响应曲线以及荧光动力学参数来测算光合电子传递速率和分配去向, 研究了长期高大气CO2浓度下小麦叶片光合电子传递和分配对施氮量的响应。结果表明, 与正常大气CO2浓度处理相比, 高大气CO2浓度下小麦叶片较多的激发能以热量的形式耗散, 增施氮素可使更多的激发能向光化学反应方向的分配, 降低光合能量的热耗散速率; 大气CO2浓度升高后小麦叶片光化学淬灭系数无明显变化, 高氮叶片的非光化学猝灭降低而低氮叶片明显升高, 施氮促进PSII反应中心的开放比例, 降低光能的热耗散; 高大气CO2浓度下高氮叶片通过PSII反应中心的光合电子传递速率(JF)较高, 而且参与光呼吸的非环式电子流速率(J0)显著降低, 较正常大气CO2浓度处理的高氮叶片下降了88.40%, 光合速率增加46.47%; 高大气CO2浓度下小麦叶片JF-J0升高而J0/JF显著下降, 光呼吸耗能被抑制, 更多的光合电子分配至光合还原过程。因此, 大气CO2浓度增高条件下, 小麦叶片激发能的热耗散速率增加, 但增施氮素后小麦叶片PSII反应中心开放比例提高, 光化学速率增加, 进入PSII反应中心的电子流速率明显升高, 光呼吸作用被抑制, 光合电子较多地进入光化学过程, 这可能是高氮条件下光合作用适应性下调被缓解的一个原因。  相似文献   

17.
Breeding high-yielding and nutrient-efficient cultivars is one strategy to simultaneously resolve the problems of food security,resource shortage,and environmental pollution.However,the potential increased yield and reduction in fertilizer input achievable by using high-yielding and nutrient-efficient cultivars is unclear.In the present study,we evaluated the yield and nitrogen use efficiency(NUE) of 40 commercial maize hybrids at five locations in North and Northeast China in 2008 and 2009.The effect of interaction between genotype and nitrogen(N) input on maize yield was significant when the yield reduction under low-N treatment was 25%-60%.Based on the average yields achieved with high or low N application,the tested cultivars were classified into four types based on their NUE:efficient-efficient(EE) were efficient under both low and high N inputs,high-N efficient(HNE) under only high N input,low-N efficient(LNE) under only low N input,and nonefficient-nonefficient under neither low nor high N inputs.Under high N application,EE and HNE cultivars could potentially increase maize yield by 8%-10% and reduce N input by 16%-21%.Under low N application,LNE cultivars could potentially increase maize yield by 12%.We concluded that breeding for N-efficient cultivars is a feasible strategy to increase maize yield and/or reduce N input.  相似文献   

18.
Effects of nitrogen (N)-deficiency on midday photoinhibition in flag leaves were compared between two contrastive Japanese rice cultivars, a traditional japonica cultivar with low yield, cv. Shirobeniya (SRB), and a japonica-indica intermediate type with high yield, cv. Akenohoshi (AKN). Both cultivars were grown under high-N and low-N conditions. At midday, low-N supply resulted in more intensive reductions in net photosynthetic rate, stomatal conductance, maximal quantum yield of photosystem II (PSII) and quantum yield of PSII electron transport in SRB than in AKN, indicating that SRB was more strongly photoinhibited than AKN under low-N condition. At midday, the low-N plants of two cultivars showed higher superoxide dismutase (SOD) activities than the high-N plants. However, ascorbate peroxidase (APX) activity was maintained in AKN but significantly decreased in SRB under low-N condition (N-deficiency). In contrast, hydrogen peroxide (H2O2) content in SRB significantly increased under low-N condition, indicating that the susceptibility to midday photoinhibition in the low-N plants of SRB is related to the increased H2O2 accumulation. It is suggested that the midday depression in photosynthesis may be a result of oxidative stress occurring in the low-N plants in which antioxidant capacity is not enough to cope with the generation of H2O2. Therefore, H2O2-scavenging capacity could be an important factor in determining the cultivar difference of midday photoinhibition in flag leaves of rice under low-N condition.  相似文献   

19.
从新育成的小麦品种中筛选组织培养再生能力强的基因型,对于利用基因工程途径改良小麦具有重要意义。本研究以河南省近几年育成的8个小麦品种(系)的幼胚为材料,研究3种生长素2,4-D、Dicamba、Picloram对8个小麦品种(系)较大幼胚再生的影响,以及品种间再生能力的差异。结果发现培养基中添加Dicamba时,8个品种(系)的再生率达189%以上,其中郑麦1836和中育1439等6个品种(系)的再生率超过了400%;添加Picloram时,8个品种(系)的再生率均在210%以上,其中郑麦1860和郑麦5135等4个品种(系)的再生率超过了470%;添加2,4-D时,郑麦7698、郑麦0856和郑麦9023没有获得再生植株,郑麦1860和郑麦1836的再生率低于60%,中育1439再生率最高,其次为郑麦5135和郑麦1354。结果表明,小麦较大幼胚植株再生最适宜的生长素为Dicamba,其次为Picloram,不同小麦品种(系)适宜的生长素有所不同;在8个小麦品种(系)中,再生能力最强的基因型为中育1439,其次为郑麦5135、郑麦5135和郑麦1354。  相似文献   

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