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1.
本试验以耐肥性不同的三个冬小麦品种为试材,研究了品种的耐肥性与光合作用的关系。结果表明,旗叶的光合速率顺序为: 泰山一号(中度耐肥)>济南13(高度耐肥)>昌乐5号(不耐肥)。光合速率的绝对值虽因不同年度间环境条件的不伺而有所变动,但品种间的差别则保持相对稳定。增施氮肥,能使昌乐5号的光合速率明显降低,而泰山—和济南13的光合速率则因增施氮肥受到显著的促进。  相似文献   

2.
水稻叶片的光合日变化(简报)   总被引:11,自引:0,他引:11  
8个盆栽水稻品种开花后于饱和光下测定光合日变化,光合速率越高,下午叶片的光合速率低于上午的日下降就越大。增施氮肥,光合速率提高,光合日下降也大。叶片衰老时,光合速率和光合日下降同时降低。品种间上午叶片光合速率的差异较小,下午则较大。高产品种在乳熟期的光合速率较高,但光合日下降小。  相似文献   

3.
防雨池栽条件下,设置渍水、干旱和对照3个土壤水分处理,每水分处理下再设置两个施氮水平,研究了花后渍水和干旱逆境下氮素水平对两个蛋白质含量不同的小麦品种光合特性和籽粒淀粉积累的影响.结果表明,与对照相比,花后渍水和干旱处理显著降低小麦旗叶净光合速率和SPAD值,干物质积累量下降.干旱处理下,增施氮肥提高旗叶光合速率和SPAD值,渍水处理下则相反.水分逆境明显降低籽粒可溶性总糖含量,且渍水处理下增施氮肥降低小麦叶片和籽粒可溶性总糖含量,干旱状态下规律相反.渍水处理下增施氮肥降低淀粉积累速率.水分逆境明显降低小麦粒重、产量和淀粉产量,且干旱处理下增施氮肥有利于籽粒重、产量和淀粉产量的提高,而渍水下增施氮肥使粒重和产量进一步降低.试验结果表明,花后渍水和干旱逆境下施用氮肥对小麦旗叶光合速率和籽粒淀粉积累有明显的调节效应.  相似文献   

4.
抗旱性不同的冬小麦幼苗在渗进胁迫下叶片相对透性、Pro含量和在总游离氨基酸中的Pro比例均增加,但品种间变化幅度有明显差别。在严重胁迫下,抗旱性弱的品种济南13,烟农15和鲁麦5号的叶片相对透性增加大于抗旱性强的品种昌乐5号,秦麦3号和山农587;而Pro含量和在总游离氨基酸中Pro比例的增加小于抗旱性强的品种、叶片Pro累积与RWC呈显著负相关。  相似文献   

5.
抗旱性不同的冬小麦幼苗对渗透胁迫的生理反应   总被引:1,自引:0,他引:1  
抗旱性不同的冬小麦幼苗在渗透胁迫下叶片相对透性、Pro 含量和在总游离氨基酸中的Pro 比例均增加,但品种间变化幅度有明显差别.在严重胁迫下,抗旱性弱的品种济南13.烟农15和鲁麦5号的叶片相对透性增加大于抗旱性强的品种昌乐5号、秦麦3号和山农587;而Pro 含量和在总游离氨基酸中Pro 比例的增加小于抗旱性强的品种.叶片Pro 累积与RWC 呈显著负相关.  相似文献   

6.
冬小麦光合特征及叶绿素含量对保水剂和氮肥的响应   总被引:9,自引:0,他引:9  
以不施保水剂和氮(N)肥为对照,测定了保水剂(60 kg·hm-2)与不同N肥水平(0、225、450 kg·hm-2)及其配施条件下大田小麦的光合特征、叶绿素含量和水分利用效率等指标,研究了冬小麦拔节期和灌浆期光合生理特征、叶绿素含量及水分利用对保水剂和N肥的响应.结果表明:灌浆期各处理的光合速率、气孔导度、胞间CO2浓度、叶片水分利用效率及叶绿素含量均大于拔节期.在拔节期,单施N肥条件下,随施N量的增加,单叶水分利用效率提高,光合速率、气孔导度、胞间CO2浓度及蒸腾速率均先增后减;225 kg·hm-2 N肥处理的叶绿素含量最高.施用保水剂后,随施N量的增加,胞间CO2浓度降低,而光合速率等均提高;单施保水剂及其与N肥配施提高了叶绿素含量,而过多N肥效果不显著在灌浆期,单施N肥显著提高了小麦的光合速率及水分利用效率,降低了气孔导度、胞间CO2浓度及蒸腾速率;叶绿素含量随N肥用量的增加而增加.施用保水剂后,随N肥用量的增加,光合速率和叶片水分利用效率均先增后减,而胞间CO2浓度和蒸腾速率先减后增,但均低于对照,气孔导度随施N量的增加而提高.单施保水剂的叶绿素含量显著提高,但其与N肥配施叶绿素含量有所降低.保水剂与N肥配合施用显著提高了小麦的千粒重、产量及水分生产效率.其中,保水剂与225 kg·hm-2N肥配施处理的产量及水分生产效率均最高.  相似文献   

7.
硝酸还原酶是植物体同化硝酸盐的限速酶,它不仅对外界氮肥反应敏感,且在植物对氮肥的吸收利用中起着关键作用。前文已报道在小麦、玉米、水稻幼苗中硝酸还原酶活力与作物耐肥性密切相关。在此基础上,本文观察了在不同施氮水平上,不同耐肥性品种的硝酸还原酶活力的变化,并分析了这一期间叶片中氨基氮及叶绿素含量和光合强度之间的关系。  相似文献   

8.
以小麦品种石麦15(SM15)为对象,以牛粪为有机肥,设置不施氮肥、单施尿素、单施牛粪和有机无机肥配施4种施肥方式,研究不同施肥处理对冬小麦群体光合速率(CAP)、旗叶净光合速率(Pn)、叶面积指数(LAI)、叶绿素荧光参数及产量的影响.结果表明: 无机肥主要作用于生育前期,小麦的CAP、Pn及LAI最高,其次为配施处理,单施有机肥处理最低.花后10 d开始,与单施尿素处理相比,有机肥和有机无机肥配施处理小麦衰老进程较缓慢,在灌浆中后期保持较高的抗氧化酶活性及较长的绿叶面积持续期,进而维持较高的光合物质生产能力.有机无机肥配施处理延缓效果更为明显,籽粒产量最高.可见,有机无机肥配施可以延缓灌浆中后期叶片衰老,维持合理的冠层结构,使小麦具有较强的光合性能,进而获得较高的籽粒产量.  相似文献   

9.
施氮水平对小麦籽粒谷蛋白大聚合体粒径分布的调控效应   总被引:1,自引:0,他引:1  
谷蛋白大聚合体(GMP)是决定小麦品质形成的重要因素,在小麦籽粒发育过程中,GMP以球形颗粒形式贮藏在小麦籽粒胚乳中,其含量及颗粒大小受亚基组成及环境条件的影响。本研究以不同穗型冬小麦品种为材料,通过大田试验探讨了施氮水平与小麦籽粒谷蛋白大聚合体含量及其颗粒粒径分布的关系。结果表明,在0—240kg?hm-2范围内增施氮肥能显著提高小麦籽粒中GMP的含量,施氮量继续增加则不利于小麦籽粒 GMP积累。小麦籽粒GMP颗粒粒径分布范围为0.375—256 μm;GMP颗粒的体积和表面积分布均呈双峰曲线,数目分布呈单峰曲线。在0—240kg?hm-2范围内增施氮肥能显著提高>10μmGMP颗粒数目百分比和体积百分比,表明施氮能促进大颗粒GMP的形成。不同品种对施用氮肥的反应呈现差异。大穗型品种泰山9818籽粒GMP含量及颗粒粒径分布对氮肥的反应较为敏感。  相似文献   

10.
施氮对水稻植株和颖果发育及稻米品质的影响   总被引:9,自引:0,他引:9  
以'扬稻6号'和'粳稻941'为材料,在施氮总量相同条件下分别设置低分蘖肥高孕穗肥和高分蘖肥低孕穗肥2个施氮处理,通过盆栽试验研究施氮量和施氮时期对水稻植株生长、颖果发育和稻米品质的影响.结果表明:水稻植株鲜重、干重、分蘖数和株高随分蘖期氮肥用量增加而增加;增加孕穗期氮肥用量比例能显著提高抽穗期水稻剑叶和颖果光合速率、颖壳叶绿素含量、呼吸速率、颖果CAT及SOD活性;增加孕穗期氮肥用量还能提高水稻籽粒出糙率、精米率、整精米率,降低稻米垩白率,改善稻米的碾米品质和营养品质.因此,增加分蘖期施氮比例能促进水稻植株生长,而提高孕穗期施氮量则有利于水稻颖果发育和稻米品质改善.  相似文献   

11.
不同施肥条件下冷、暖型小麦旗叶光合生理特性的研究   总被引:1,自引:0,他引:1  
以2类4个小麦品种为试验材料,通过田间小区试验,比较了灌浆结实期冷、暖型小麦在不施肥(CK)、单施磷肥(P)、单施氮肥(N)和氮磷配施(NP)等4种施肥条件下旗叶的光合生理特性。结果表明,不同施肥条件下,冷型小麦的旗叶叶面积、叶绿素含量、可溶性蛋白质含量及净光合速率均高于暖型小麦。其中,在不施肥和单施磷肥条件下,两类小麦之间各项生理指标的差异均达显著或极显著水平;在施用氮肥(单施氮肥和氮磷配施)条件下,两类小麦之间的差异有所减小,但冷型小麦仍然高于暖型小麦。冷型小麦旗叶优良的光合生理特性具有不随施肥条件的改变而发生根本性变化的特点,对土壤肥力状况有较强的适应性;而暖型小麦对土壤氮素营养要求较高。  相似文献   

12.
The high-yielding indica rice variety, ‘Takanari’, has the high rate of leaf photosynthesis compared with the commercial japonica varieties. Among backcrossed inbred lines from a cross between ‘Takanari’ and a japonica variety, ‘Koshihikari’, two lines, BTK-a and BTK-b, showed approximately 20% higher photosynthetic rate than that of ‘Takanari’ for a flag leaf at full heading. This is a highest recorded rate of rice leaf photosynthesis. Here, the timing and cause of the increased leaf photosynthesis in the BTK lines were investigated by examining the photosynthesis and related parameters, as well as mesophyll cell anatomy during ontogenesis. Their photosynthetic rate was greater than that of ‘Takanari’ in the 13th leaf, as well as the flag leaf, but there were no differences in the 7th and 10th leaves. There were no consistent differences in the stomatal conductance, or the leaf nitrogen and Rubisco contents in the 13th and flag leaves. The total surface area of mesophyll cells per leaf area (TAmes) in the 13th and flag leaves increased significantly in the BTK lines due to the increased number and developed lobes of mesophyll cells compared with in ‘Takanari’. The mesophyll conductance (g m) became greater in the BTK lines compared with ‘Takanari’ in the flag leaves but not in the 10th leaves. A close correlation was observed between TAmes and g m. We concluded that the increased mesophyll conductance through the development of mesophyll cells during the reproductive period is a probable cause of the greater photosynthetic rate in the BTK lines.  相似文献   

13.
张永平  张英华  王志敏 《生态学报》2011,31(5):1312-1322
为揭示小麦叶片与非叶绿色器官的光合活性在一日中的变化特性及其在器官间的差异性,探讨群体及不同器官光合日变化对不同供水条件的响应特征,在田间设置生育期不灌水(I0)、灌2水(I2,拔节水+开花水)和灌4水(I4,起身水+孕穗水+开花水+灌浆水)3个处理,于灌浆期测定了群体光合与呼吸速率的日变化, 旗叶片、叶鞘、穗、穗下节间各器官光合速率、蒸腾速率、气孔导度及叶绿素荧光参数的日变化。结果表明,灌浆期小麦穗和穗下节间光合速率日变化呈单峰曲线,而旗叶叶片与旗叶鞘光合速率均呈双峰型,表现出不同程度的午休。随着灌水次数减少,各器官光合速率降低,叶片对严重水分亏缺的反应大于各非叶器官。器官光合速率的日变化与Fv/Fm变化相一致,而与气孔导度日变化有较大差异。各器官上午的累积光合量均高于下午,上午光合量占日总光合量的比例为51%-62%,随着灌水次数减少而增大。不同灌水处理群体光合速率、呼吸速率日变化均未出现午休现象。春季浇2水处理与春浇4水处理相比,灌浆期群体光合速率及日光合积累量没有显著差异。综合研究认为,小麦叶与非叶器官光合性能及其日变化特征有较大不同,非叶光合对水分亏缺的敏感性低于叶片,生育期浇2水可以获得与浇4水相似的群体日光合积累量。  相似文献   

14.
OsRac5基因属于水稻小G蛋白ROP家族。该基因参与了水稻的育性调节,但是OsRac5在水稻生长发育中的作用尚不清楚。为鉴定该基因的功能,本文采用CRISPR/Cas9基因组编辑技术,构建了该基因的双靶标载体Cas9-OsRac5,并对水稻进行了遗传转化。对转基因水稻的筛选和分子鉴定显示,在T1代获得了10个纯合突变株系。序列分析显示,在OsRac5编辑水稻中,该基因编码区发生了碱基缺失或/和插入,导致预期产生的不同类型OsRac5截短蛋白均丧失小G蛋白的保守结构域。对抽穗期OsRac5编辑水稻的表型进行统计学分析,结果显示,OsRac5编辑水稻与对照在剑叶角度以及剑叶净光合速率上存在极显著差异,其中OsRac5编辑水稻剑叶角度增大67%,剑叶净光合速率减小32.7%。本研究结果提示,OsRac5基因通过调控剑叶角度,影响水稻光合效率,与水稻生长发育密切相关。  相似文献   

15.
该文以青藏高原高寒草甸优势种垂穗披碱草(Elymus nutans)为研究对象, 探究不同水平氮肥与硅肥混合添加后对其叶片全氮含量和净光合速率的影响, 以期对高寒草甸牧场施肥提供一定的理论依据。研究发现: 氮、硅单独添加时, 均可提高垂穗披碱草叶片全氮含量以及净光合速率; 氮、硅配施处理对叶片全氮含量和净光合速率均存在显著的交互作用; 低(N1)、中(N2)、高(N3) 3种不同浓度的氮肥处理下, 低硅(Si1)添加对垂穗披碱草叶片全氮含量以及净光合速率没有显著的促进作用, 而添加中浓度硅肥(Si2)可显著提高垂穗披碱草叶片全氮含量; 低、中浓度施氮水平下, 中浓度硅肥可显著促进垂穗披碱草光合作用; 叶片全氮含量和净光合速率最大平均值均出现在中浓度氮、硅肥配施下, 与不施肥相比分别提高了119.99%和85.70%; 就该试验而言, 施加氮肥的同时, 适当添加一些硅肥能够更好地提高垂穗披碱草叶片全氮含量和净光合速率, 且硅的添加量为8 g·m-2时效果较好。  相似文献   

16.
We investigated net photosynthetic rate (PN) of ear and two uppermost (flag and penultimate) leaves of wheat cultivars Hongmangmai (drought resistant) and Haruhikari (drought sensitive) during post-anthesis under irrigated and non-irrigated field conditions. The PNof ear and flag leaf were significantly higher and less affected by drought in Hongmangmai than in Haruhikari. The rate of reduction in stomatal conductance (gs) was similar for the two cultivars, but intercellular CO2concentration (Ci) in the flag leaf of Hongmangmai was lower than that of Haruhikari in non-irrigated treatment. No differences were observed in leaf water potential (ψ1) and osmotic adjustment of the flag leaf of the cultivars. These results imply that differences in photosynthetic inhibition on the flag leaf at low leaf ψ1between the cultivars were primarily due to non-stomatal effects. Hence the main physiological factor associated with yield stability of Hongmangmai under drought stress may be attributed to the capacity for chloroplast activity in the flag leaf, which apparently allows sustained PNof flag leaf during grain filling under drought stress. The higher PNof ear in Hongmangmai under drought could also be related to its drought resistance.  相似文献   

17.
《植物生态学报》2016,40(12):1238
AimsElymus nutans is one of the dominant plant species in alpine meadow. Purpose of this research was to study the effects of nitrogen and silicon application on leaf nitrogen content and net photosynthetic rate in this species to provide scientific basis for fertilization practice in alpine meadow.MethodFour levels nitrogen combined with four levels silicon was applied to E. nutans plants in the alpine meadow. Leaf nitrogen content and net photosynthetic rate of E. nutans were measured.Important findings The results showed that there was a significant improvement in leaf nitrogen content and net photosynthetic rate of the E. nutans with nitrogen or silicon application alone; However, there was a significant interaction between nitrogen and silicon treatments on leaf nitrogen content and net photosynthetic rate; Combining with the three different levels nitrogen, low level silicon (Si1) application did not increase leaf nitrogen content and net photosynthetic rate, but middle level silicon (Si2) could significantly increase the leaf nitrogen content; Combining with the low (N1) or middle (N2) level nitrogen, middle level silicon (Si2) application could significantly increase the net photosynthetic rate; Compared with that control without fertilization, the middle level nitrogen combined with the same level silicon treatment had the highest average of leaf nitrogen content and net photosynthetic rate, which increased by 119.99% and 85.70%, respectively. This study indicated application of nitrogen combined with silicon application enhanced leaf nitrogen content and net photosynthetic rate of E. nutans, and 8 g·m-2silicon application had the best result among other treatments.  相似文献   

18.
Nitrogen fertilization strategies were widely adopted to enhance grain production and improve nitrogen utilization in rice all over the world. For fertilization timing strategy, ear fertilization was usually employed in recent years. For fertilization amount strategy, nitrogen fertilization would continually increase to meet the demands of increasing people for food. However, under heavy ear fertilization as well as great nitrogen amount (NA), physiological N-use efficiency (PE, defined as grain production per unit nitrogen uptake by plants) decreased. Under three NA and two ratios of fertilization given during ear development period to total NA (ear fertilization distribution ratio, EFDR), net photosynthetic rate (Pn), Pn to nitrogen content per unit area (photosynthetic N-use efficiency, Pn/N), nitrogen accumulation in plant tissues and PE of three rice (Oryza sativaL.) genotypes, Jinyou 253, Liangyoupeijiu and Baguixiang were screened in the first and second seasons in 2002 so as to understand the fluctuation patterns of Pn/N and nitrogen distribution in leaf blades under great NA & EFDR and relationship with PE in rice. Results showed that under greater NA & EFDR, Pn in flag leaves at heading and plant nitrogen accumulation at maturity always increased and PE & Pn/N always decreased in spite of increased grain production. Rice distributed more nitrogen in leaf blade under greater NA and EFDR. PE indicated significantly (P<0.05) positive relationship with Pn/N and negative relationship with nitrogen distribution ratio in leaf blades at heading and maturity, and no association with Pn in two growing seasons. Results suggested that low PE in rice under great NA and heavy ear fertilization is associated to more nitrogen distribution in leaf blades and decreases in photosynthetic efficiency.  相似文献   

19.
小麦开花后,随着旗叶的衰老,旗叶中1,5-二磷酸核酮糖羧化酶(RuBPC)、磷酸烯醇式丙酮酸羧化酶(PEPC)和乙醇酸氧化酶(GO)活性呈下降趋势。随着追施氮肥时期的推迟,光合酶活性呈增加趋势,这意味着氮肥追施时间后移有利于提高小麦光合速率。在旗叶衰老后期,大穗型品种小麦旗叶中光合酶活性略高于多穗型品种小麦。  相似文献   

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