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1.
以"Lemont"和"Dular"杂交建立的包含123个家系的水稻重组自交系(RILs)群体为材料,选用水稻根系硅吸收能力和叶片硅利用率为指标,进行水稻硅营养遗传性状QTL定位,并分析其与UV-B辐射增强的互作效应。结果表明,控制水稻叶片硅利用率的4个加性QTL分别在第2、3、10染色体上,而控制根系硅吸收能力的1个加性QTL位于第11染色体上。QTL与UV-B辐射互作分析发现2对控制根系硅吸收能力和3对控制叶片硅利用率的基因×环境上位性QTL,其中只有1对控制根系硅吸收能力的QTL效应值较大。说明水稻这两种硅营养性状中,根系硅吸收能力较叶片硅利用率受UV-B辐射影响大,在抗UV-B辐射育种中以叶片硅利用率为水稻硅营养遗传选择的指标具有较高效率。  相似文献   

2.
不同水、氮条件对水稻苗生长及伤流液的影响   总被引:14,自引:2,他引:12  
为探明不同水分供应和氮素形态对水稻根苗及伤流液的影响,设正常水分及50 g/L PEG模拟水分胁迫和3种不同质量比例的NH4+-N/NO3--N(9/1,5/5,1/9)氮素营养处理,测定了水稻幼苗生物量,根系形态指标,根系活力及根基伤流量。结果表明,正常水分条件下,NH4+-N促进水稻根系平均直径增大,有利于水稻地上部物质累积;NO3--N则使水稻根系总吸收面积增大,促进根系物质累积;NH4+-N/NO3--N为5/5处理的水稻活跃吸收面积最大,活跃吸收面积比亦最高。水分胁迫条件下,NH4+-N/NO3--N为5/5的处理更有利于水稻地上部分的生长,NO3--N有利于水稻鲜重和干重增加,促进根系平均直径增大,水稻的根系总吸收面积、活跃吸收面积均随NO3--N供应比例的增加呈上升趋势。正常水分条件下,水稻幼苗白天的耗水量随NH4+-N/ NO3--N比例降低呈下降趋势,水分胁迫条件降低了水稻对水分的吸收。水分胁迫显著降低各处理水稻伤流量,正常水分条件下,NH4+-N/NO3--N为5/5处理的水稻伤流量最大;水分胁迫后,9/1处理的水稻伤流量相对较多。  相似文献   

3.
局部根系干旱条件下分蘖期水稻对供氮形态的生物学响应   总被引:5,自引:2,他引:5  
采用室内分根营养液培养及PEG模拟水分胁迫的方法,研究不同氮素形态(NH4 -N、NO3--N、NH4 -N/NO3--N比为50/50)对水稻局部根系遭遇水分胁迫后的生物学响应状况。结果表明,在非水分胁迫的条件下,供应NO3--N营养相对促进分蘖期水稻的根系发育,而供应NH4 -N营养相对促进分蘖期水稻的地上部发育;在局部根系受到水分胁迫的条件下,NH4 -N和NO3--N混合营养水稻生物量增量分别比全NO3--N和全NH4 -N营养水稻高31.7%和37.7%,其中地上部生物量增量也分别比全NO3--N和全NH4 -N营养水稻高33.5%和33.2%。全NO3--N营养水稻未受水分胁迫一侧根系生物量的增量明显高于另一侧受水分胁迫的根系生物量的增量,且明显高于两侧根系均未受水分胁迫的相同供氮形态营养的水稻单侧根系生物量的增量;而全NH4 -N以及NH4 -N和NO3--N混合营养水稻未受水分胁迫一侧根系和受水分胁迫的根系生物量增量之间没有明显差异,但均高于两侧根系均未受水分胁迫的相同供氮形态营养的水稻,为NH4 -N营养提高水稻抗旱能力提供了证据。  相似文献   

4.
氮在紫色土中的移动和水稻氮素利用率的研究   总被引:12,自引:2,他引:10  
利用养分渗漏池研究了紫色土中氮肥品种、用量对氮素移动、淋失和水稻氮肥利用率的影响。结果表明:淹水期间淋失的氮素基本形态是NH4+-N,主要分布在土壤表层,并随时间而下移;NH4+-N 淋失量与降雨量呈显著正相关;氯化铵促进了NH4+-N 的淋失,但其氮肥利用率比尿素高8 个百分点,说明水稻上可酌施含氯化肥;增施氮肥增加了NH4+-N 的淋失量,减少了氮肥利用率,建议水稻施氮控制在150kg/hm2。  相似文献   

5.
邱慧珍  张福锁 《土壤通报》2003,34(6):533-538
对2种不同磷效率基因型小麦幼苗水培结果表明,NO3-N和NH4NO3-N对小麦植株地上部生长的影响无明显差异,但是对根系生长的影响明显不同。NH4-N对小麦幼苗的生长有明显的抑制作用,且对根系生长的抑制程度显著大于对地上部;对磷低效基因型Jing411的抑制程度明显大于对磷高效基因型Xiaoyan54。NH4NO3-N处理有利于提高植株地上部氮含量和植株的氮吸收效率。Xiaoyan54的植株吸氮量在NH4NO3-N处理中最高,Jing411在NO3-N处理中最高。不同处理对营养液pH值的影响明显不同。NH4NO3-N和NH4-N处理导致营养液pH值降低,NO3-N处理使营养液pH值升高,不同磷效率基因型小麦使营养液pH值降低或升高的程度不同。小麦磷效率基因型差异的表现与否和氮素形态有关,以植株地上部干重为磷效率指标的基因型差异在供应NO3-N时不表现。磷高效基因型Xiaoyan54的生长显著优于磷低效基因型Jing411。  相似文献   

6.
对NH4+-N,NO3--N不同配比盆栽试验条件下红松幼苗生物量,NPK养分的吸收,培养基质中的NH4+-N、NO3--N浓度及pH作了比较研究。结果表明,红松幼苗在以NH4+-N为主的营养液中生长好。营养液中NO3--N比例增加则幼苗生长下降,过量的NO3--N可抑制幼苗根系生长。NH4+-N为主的营养液对红松幼苗NO3--N的供应无明显效果。营养液中NH4+-N比例增加,植株体内P浓度增加,K浓度下降。NH4+-N/NO3--N配比显著影响基质的pH值,NH4+-N比例增加,基质pH下降;NO3--N比例增加,基质pH升高。  相似文献   

7.
水分及铵、硝营养对水稻幼苗氮素吸收的影响   总被引:1,自引:0,他引:1  
采用5% PEG模拟水分胁迫,研究武育粳3号水稻幼苗生长状况以及在水分胁迫下对不同NH4+-N / NO3--N质量比例(100/0、75/25、50/50、25/75、0/100)处理的响应。结果表明,模拟水分胁迫后水稻幼苗生长对不同的NH4+-N/NO3--N处理反应不同,水稻对NH4+-N和NO3--N的吸收发生显著改变,水稻幼苗更偏向于吸收NO3--N营养,与正常水分处理相比其对总氮和NO3--N的吸收量显著增加。  相似文献   

8.
用分根法研究NO3-和NH4 对水稻‘越富’和旱稻‘297’生长和水分利用的影响,结果表明:与水稻相比,旱稻在NO3-中的生长最好。NH4 提高氮素在水稻根中的分配比率,同时也提高了水稻和旱稻根系在NO3-/NH4 处理中NH4 一侧的吸氮速率。旱稻水分利用率高于水稻,且二者的水分利用率都遵循NH4 >NH4NO3≥NO3-的规律。  相似文献   

9.
几种蔬菜对硝态氮、铵态氮的相对吸收能力   总被引:25,自引:1,他引:24  
采用溶液培养方法探讨了莴笋、菠菜、小白菜和大青菜 4种蔬菜作物对硝、铵态氮的相对吸收能力以及这两种氮源对它们生长发育的影响。结果表明 ,单独供给NO3-N ,4种作物均生长发育良好 ;供给NO3--N +NH4+-N(NO3-∶NH4+=1∶1) ,生长量均有所下降 ,而单独供给NH4+-N时 ,生长量则大幅度下降。莴笋单独供给NO3--N时 ,其吸氮量显著高于供给NO3--N +NH4+-N的处理 ,大青菜、菠菜供给NO3--N +NH4+-N与单独供给NO3--N相比吸氮量大体相当 ;小白菜同时供应NO3--N +NH4+N时吸氮量最高 ,供给NO3--N时次之 ,供给NH4+-N时显著降低。供给NH4+-N时 4种作物吸氮量均比其它氮源显著降低。 4种作物对NO3--N与NH4+-N的吸收具有明显的偏向性。供给等氮量铵、硝态氮 (NO3--N +NH4+-N处理 )时 ,菠菜、小白菜吸收的NO3-N显著多于NH4+-N ,表现出喜硝性 ,莴笋则与此相反 ,表现出喜铵性 ;而大青菜对两种形态氮素的吸收量相差不多 ,表现出兼性吸收的特点。但上述偏向性具有阶段特点 ,即喜硝作物可能在某一阶段表现出喜铵性状  相似文献   

10.
铵态氮/硝态氮对水稻铝吸收的影响及其机制研究   总被引:2,自引:0,他引:2  
选用两个水稻品种武运粳7号(耐铝品种)和扬稻6号(铝敏感品种)作为实验材料,利用水培试验,通过长期和短期处理相结合的方式研究了NH4+-N和NO3--N对水稻Al吸收的影响及其作用机制。结果表明,与NH4+-N相比,NO3--N促进了水稻对Al的吸收。而且随着NO3--N浓度的提高,水稻根中Al含量显著增加,随着NH4+-N浓度的提高,水稻根中Al含量显著降低。这些结果表明NH4+-N和NO3--N对水稻Al吸收的影响具有浓度效应。当向Al溶液添加pH缓冲剂后,NH4+-N和NO3--N对根尖Al累积的影响变小,表明NH4+-N和NO3--N处理下溶液pH的变化可能是NH4+-N和NO3--N对水稻Al吸收影响不同的一个原因。  相似文献   

11.
A pot experiment was conducted to investigate the effects of straw incorporation and soil pre-flooding on the fate of (15NH4)2SO4-N and the growth of rice.Excessive application of rice straw when incorporated with(^15 NH4)2 SO4 at the C/N ratio of 40 reduced the loss of (^15NH4)2SO4-N and retarded the growth and development of rice significantly,while no adverse effects were observed on dry weight of panicle and the total recovery of (15NH4)2 SO4-N when rice straw was incorporated with(15NH4)2SO4 at a C/N ratio less than 25.There were no significant effects of duration of soil pre-flooding within 6 weeks on (^15NH4)2 SO4-N uptake by rice and on rice growth,but,less loss of (^15NH4)2SO4-N was observed in the soil with a longer period of pre-flooding.  相似文献   

12.
不同水稻品种对铵态氮和硝态氮吸收特性的研究   总被引:17,自引:2,他引:17  
采用水培方法研究了不同形态氮素对武育粳 3号 (常规粳稻 )和扬稻 6号 (常规籼稻 )生长的影响及其水稻苗期对NH 4 N和NO-3 N的吸收动力学特征。结果表明 :不同形态氮素对水稻生长影响差异显著 ,铵硝混合营养下水稻的生长最优 ;扬稻 6号比武育粳 3号具有更强的氮素吸收能力 ;不论武育粳 3号或是扬稻 6号 ,单一氮源时NO-3 的Km 值均大于NH 4 ,说明水稻对NH 4 的亲和力大于NO-3 ,武育粳 3号对NH 4 的最大吸收速率小于NO-3 ,而扬稻 6号则极为接近 ;NH 4 的存在均显著降低两个水稻品种对NO-3的吸收速率 ,武育粳 3号和扬稻 6号的NO-3 的Vmax分别比单一硝营养减小 1/ 2和 2 / 3,NO-3 的存在不影响武育粳 3号对NH 4 的吸收速率 ,但使扬稻 6号对NH 4 的吸收速率减小  相似文献   

13.
K. OH  T. KATO  H. L. XU 《土壤圈》2008,18(2):222-226
An experiment was carried out to study the transport process of nitrogen (N) assimilation from tea roots by monitoring the dynamic composition of N compounds in xylem sap after 15^N-NO3 and 15^N-NH4 were fed to the root of tea plants (Camellia sinensis L.). Results showed that the main amino acids were glutamine, theanine, axginine, asparic acid and glutamic acid, which accounted for 49%, 17%, 8%, 7%, and 4%, respectively, of the total amino acids in the xylem sap. After the tea plants were fed with 15^N-NO3 and 15^N-NH4 for 48 h, the amount of total amino acids in xylem sap significantly increased and those fed with 15^N-NH4 had higher increment than those with 15^N-NOa. Two hours after 15^N- NO3 and 15^N-NH4 were fed, 15N abundance in glutamine, asparagine, glutamic acid, alanine, and arginine were detected and increased quickly over time. This indicated that it took less than 2 h for NO3-N and NH4-N to be absorbed by tea roots, incorporated into the above amino acids and transported to the xylem sap. Rapid increase in 15^N-NO3 in the xylem sap of tea plants fed with 15^N-NO3 indicated that nitrate could be directly transported to the xylem sap. Glutamine, theanine, and alanine were the main amino acids transported in xylem sap of tea plants fed with both 15^N-NO3 and 15^N-NH4.  相似文献   

14.
水稻根系形态与氮素吸收累积的相关性分析   总被引:10,自引:1,他引:9  
【目的】氮肥过量施用,不仅造成氮肥大量流失,还增加了农业生产成本,对生态环境带来了巨大的威胁。水稻根系形态作为影响养分吸收和利用的主要因素之一,明确其与氮素吸收累积的相关性是提高氮素利用效率、降低环境污染的有效途径。【方法】利用营养液培养方法,研究了 55 个水稻品种在 NH4+-N 和 NO3–-N 供应条件下苗期植株生物量、氮含量和氮素累积量及其与根系形态指标的相关性。【结果】在 NH4+-N 培养下,水稻营养指标与根系形态指标的相关性高于其在 NO3–-N 培养下的相关性。在相同供氮水平下,供应 NH4+-N 的水稻苗期平均生物量为 55.77 mg/plant,比供应 NO3–-N 的量高 4.94 mg/plant;水稻苗期平均氮含量为 4.22%,比供应 NO3–-N 的高 0.72%;水稻苗期平均氮累积量为 1.91 mg/plant,比供应 NO3–-N 的苗期平均氮累积量高 0.67 mg/plant。在 NH4+-N 和 NO3–-N 两种氮素形态培养条件下,水稻根系形态指标品种间根尖数变异系数最大,平均根系直径变异系数最小。总根体积、总根面积、总根长、分枝数四个形态指标与植株生物量、植株氮含量、植株氮累积量相关性最为显著,且相关系数 (r) 呈总根体积 > 总根面积 > 总根长 > 分枝数的规律。在 NH4+-N 培养下的水稻营养指标与根系形态指标的相关性要高于其在 NO3–-N 培养下的相关性。【结论】水稻苗期总根体积、总根面积、总根长、分枝数可作为水稻氮高效评价的重要指标。  相似文献   

15.
Plants show different growth responses to N sources supplied with either NH4+ or NO3-. The uptake of different N sources also affects the rhizosphere pH and therefore the bioavailability of soil phosphorus, particularly in alkaline soils. The plant growth, P uptake, and P availability in the rhizosphere of oat (Avena nuda L.) grown in hydroponics and in soil culture were investigated under supply with sole NH4+-N, sole NO3--N, or a combination. Sole NO3--fed oat plants accumulated more biomass than sole NH4+-fed ones. The highest biomass accumulation was observed when N was suppliedw ith both NH4+-N and NO3--N. Growth of the plant root increased with the proportion of NO3- in the cultural medium. Better root growth and higher root/shoot ratio were consistently observed in NO3--fed plants. However, root vigor was the highest when N was supplied with NO3-+NH4+. NH4+ supply reduced the rhizosphere pH but did not affect P uptake by plants grown in soils with CaHPO4 added as P source. No P deficiency was observed, and plant P concentrations were generally above 2 g kg-1. P uptake was increased when N was supplied partly or solely as NO3--N, similarly as biomass accumulation. The results suggested that oat was an NO3--preferring plant, and NO3--N was essential for plant growth and the maintenance of root absorption capacity. N supply with NH4+-N did not improve P nutrition, which was most likely due to the absence of P deficiency.  相似文献   

16.
不同基因型水稻苗期氮营养特性差异及综合评价   总被引:7,自引:0,他引:7  
氮肥过量施用,不仅造成氮肥大量流失,还增加了农业生产成本,对生态环境带来了巨大的威胁。筛选氮高效基因型水稻品种是提高氮素利用效率、降低环境污染的有效途径。本文利用营养液培养方法,研究了55个水稻品种(系)在相同供氮水平(40 mg·L~(-1))、不同供氮形态(NH_4~+-N和NO_3~–-N)条件下苗期吸收与积累氮素的差异。并采用隶属函数法将评价指标进行标准化,基于氮效率综合值,运用分层聚类热图分析,进行55个水稻品种氮效率类型的划分,为氮高效水稻品种的筛选提供依据。在NH_4~+-N和NO_3~–-N培养下,不同水稻品种的整株生物量、茎叶生物量、根系生物量、根系氮含量、茎叶氮累积量差异性显著,变异系数分别在0.69~0.80和0.57~0.74之间。通过因子分析发现,在NH_4~+-N和NO_3~–-N培养条件下的主成分情况相同,第1主成分由整株生物量、茎叶生物量、根系生物量、整株氮累积量、茎叶氮累积量、根系氮累积量决定,主要为反映植株的生物量及氮素累积量指标;第2主成分由不同器官的氮含量决定。综合水稻苗期氮素吸收累积变异特征及因子分析,将整株生物量、茎叶生物量、根系生物量、茎叶氮累积量作为水稻苗期氮高效综合评价指标。根据隶属函数法计算出的氮效率综合值和采用欧氏距离平方拟合的分层聚类热图,55个供试水稻品种可分为氮高效型、氮中效型、氮低效型3大类,分别占供试品种总数的10.91%、27.27%、61.82%。在NH_4~+-N和NO_3~–-N供应条件下,初步确定‘广两优3905’、‘甬优9号’、‘中籼2503’、‘Ⅱ优602’、‘两优766’和‘深两优1813’为氮高效型品种。  相似文献   

17.
水稻根系生长对不同氮形态响应的动态变化   总被引:3,自引:2,他引:3  
赵学强  施卫明 《土壤》2007,39(5):766-771
土壤养分供应变异很大,植物根系生长对这种养分变异的响应非常敏感.为了探索水稻根系生长对N素供应响应的动态变化规律以及这种适应性变化与水稻N效率之间的关系,采用水培方法,以两个苗期不同N效率水稻品种桂单4号和南光为研究材料,比较了不同铵硝比、不同浓度NH4、不同浓度NO3-和不同浓度NH4NO3对水稻根系构型参数的影响.结果表明:NH4 和NH4NO3供应显著降低了总根长、总根表面积和总根体积,且有增加平均根直径的趋势;而NO3-供应在0~1 mmol/L浓度范围内,增加了总根长、总根表面积和总根体积,降低了平均根直径,但当NO3-供应超过1 mmo1/L后,NO3-却有降低总根长、总根表面积和总根体积的趋势,对平均根直径没有明显影响.苗期N高效基因型桂单4号总根长和总根表面积在各种N素营养条件下均显著高于N低效基因型南光.上述结果表明,NH4 和NH4NO3都抑制了水稻根系生长,而NO3-为低浓度诱导、高浓度抑制根系生长,根长和根表面积,对提高水稻N效率贡献较大.  相似文献   

18.
杂交稻和常规稻生育后期对NO_3~——N和NH_4~+-N的营养效应   总被引:2,自引:1,他引:2  
杨肖娥  孙羲 《核农学报》1990,4(2):80-86
利用~(15)N示踪技术研究了杂交稻和常规稻生育后期对不同N源的营养效应。结果表明,杂交稻对抽穗前追施的NO_3~--N的利用率比常规稻高7.8%,回收率高13.2%:追施NH_4~+-N时,杂交稻的N肥利用率比常规稻高6.1%,回收率高14.5%肥源之间比较,收获期NH_4~+-N的利用率和回收率都高于NO_3~--N。肥料N在穗中的分配率,杂交稻比常规稻大15.7—20.2%,但NO_3~--N与NH_4~--N处理间无明显差异。试验结果还表明,抽穗前追施NO_3~--N比追施NH_4~--N能更明显地促进水稻对Ca~(2+),Mg~(2+)的吸收,刺激浮根的生长,增加稻谷产量,而且杂交稻的这些效应大于常规稻。  相似文献   

19.
Subsoil acidity restricts root growth and reduces crop yields in many parts of the world. More than half of the fertilizer nitrogen(N) applied in crop production is currently lost to the environment. This study aimed to investigate the effect of gypsum application on the efficiency of N fertilizer in no-till corn(Zea mays L.) production in southern Brazil. A field experiment examined the effects of surface-applied gypsum(0, 5, 10, and 15 Mg ha~(-1)) and top-dressed ammonium nitrate(NH_4NO_3)(60, 120, and 180 kg N ha~(-1)) on corn root length, N uptake, and grain yield. A greenhouse experiment was conducted using undisturbed soil columns collected from the field experiment site to evaluate NO_3-N leaching, N uptake, and root length with surface-applied gypsum(0 and 10 Mg ha~(-1)) and top-dressed NH_4NO_3(0 and 180 kg N ha~(-1)). Amelioration of subsoil acidity due to gypsum application increased corn root growth,N uptake, grain yield, and N use efficiency. Applying gypsum to the soil surface increased corn grain yield by 19%–38% and partial factor productivity of N(PFPN) by 27%–38%, depending on the N application rate. Results of the undisturbed soil column greenhouse experiment showed that improvement of N use efficiency by gypsum application was due to the higher N uptake from NO_3-N in the subsoil as a result of increased corn root length. Our results suggest that ameliorating subsoil acidity with gypsum in a no-till corn system could increase N use efficiency, improve grain yield, and reduce environmental risks due to NO_3-N leaching.  相似文献   

20.
Plants show different growth responses to N sources supplied with either NH4+ or NO3-.The uptake of different N sources also affects the rhizosphere pH and therefore the bioavailability of soil phosphorus,particularly in alkaline soils.The plant growth,P uptake,and P availability in the rhizosphere of oat (Arena nuda L.) grown in hydroponics and in soil culture were investigated under supply with sole NH4+-N,sole NO3--N,or a combination.Sole NO3-fed oat plants accumulated more biomass than sole NH4+-fed ones.The highest biomass accumulation was observed when N was supplied with both NH4+-N and NO3--N.Growth of the plant root increased with the proportion of NO3-in the cultural medium.Better root growth and higher root/shoot ratio were consistently observed in NO3--fed plants.However,root vigor was the highest when N was supplied with NO3-+NH4+.NH4+ supply reduced the rhizosphere pH but did not affect P uptake by plants grown in soils with CaHPO4 added as P source.No P deficiency was observed,and plant P concentrations were generally above 2 g kg-1.P uptake was increased when N was supplied partly or solely as NO3--N,similarly as biomass accumulation.The results suggested that oat was an NO3-prcferring plant,and NO3--N was essential for plant growth and the maintenance of root absorption capacity.N supply with NH4+-N did not improve P nutrition,which was most likely due to the absence of P deficiency.  相似文献   

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