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71.
测墒补灌对冬小麦氮素积累与转运及籽粒产量的影响   总被引:6,自引:0,他引:6  
2007-2009年,在田间条件下,以冬小麦品种济麦22为材料,以0-140 cm土层平均土壤相对含水量为指标设计4个测墒补灌试验处理:W0(土壤相对含水量为播种期80%+拔节期65%+开花期65%)、W1(土壤相对含水量为播种期80%+拔节期70%+开花期70%)、W2(土壤相对含水量为播种期80%+拔节期80%+开花期80%)和W3(土壤相对含水量为播种期90%+拔节期80%+开花期80%),研究不同水分处理对冬小麦氮素积累与转运、籽粒产量、水分利用效率及土壤硝态氮含量的影响。结果表明:(1)成熟期小麦植株氮素积累量为W1处理最高,W3处理次之,W0和W2处理最低,W0和W2处理间无显著差异;氮素向籽粒的分配比例为W2处理显著低于W1处理,W0、W1、W3处理间无显著差异。开花期和成熟期营养器官氮素积累量、营养器官氮素向籽粒中的转移量、成熟期籽粒氮素积累量均为W1>W3>W2>W0,各处理间差异显著。(2)随着小麦生育进程的推进,0-200 cm土层土壤硝态氮含量先降低后回升再降低,在拔节期最低。成熟期W0和W1处理0-200 cm土层土壤硝态氮含量较低,W2和W3处理120-200 cm土层土壤硝态氮含量较高。(3)W0处理小麦氮素吸收效率、利用效率和氮肥偏生产力最低;随灌水量的增加,氮素利用效率呈先升高后降低趋势;W1处理小麦对氮素的吸收效率和利用效率较高,氮肥偏生产力最高。W0处理水分利用效率较高,但籽粒产量最低;灌水处理籽粒产量、灌溉水利用效率和灌溉效益两年度均随测墒补灌量的增加而显著降低。在本试验条件下,综合氮素利用、籽粒产量、灌溉水利用效率及土壤中硝态氮的淋溶,W1是高产节水的最佳灌溉处理,在2007-2008年和2008-2009年度补灌量分别为43.83 mm和13.77 mm。  相似文献   
72.
4种城市绿化树种叶片PAHs含量特征与叶面结构的关系   总被引:1,自引:0,他引:1  
彭钢  田大伦  闫文德  朱凡  梁小翠 《生态学报》2010,30(14):3700-3706
用气质联用仪测定了长沙市樟树(Cinnamomu camphora)、广玉兰(Magnolia grandiflora)、桂花(Opsmanthus fragrans)和红檵木(Redrlowered loropetalum)4个主要绿化树种叶片中PAHs含量,同时测定了叶片的气孔密度、气孔长宽比、叶片的宽长比和叶面积等叶面结构特征值,探讨了叶面结构与叶片中PAHs含量的关系。结果表明:红檵木叶片的PAHs含量最高,为11.13mg·kg-1,16种PAHs在4树种叶片中均有不同程度的检出,其中以3环和4环为主,菲的浓度最高。除桂花外,在气温较低的秋冬季节,其余3种植物叶片气孔密度大PAHs含量高。叶面宽长比、气孔长宽比均与叶片PAHs含量呈极显著正相关,而叶面积与PAHs含量呈极显著负相关。表明叶面结构是影响叶片PAHs含量的重要因素。研究结果可为城市绿化树种合理选择与配置提供科学依据。  相似文献   
73.
底墒与磷肥互作对春小麦产量形成的影响   总被引:7,自引:1,他引:6  
李凤民  刘小兰  王俊 《生态学报》2001,21(11):1941-1946
研究了浇底墒水和施磷肥对春小麦产量形成的影响.实验设4个处理对照(CK);耕作层施磷(P);浇30 nm底墒水(W);施磷加浇30mm底墒水(PW).测定土壤含水量、根系生物量、地上生物量和测产等.结果表明,WP处理根重和中下层分配比例均较高.与W处理相比,WP处理利用底墒并没有增加,但水分利用效率和产量均增加.决定产量的主要因素是小麦早期小穗和小花形成的数量和质量.W和WP两个浇底墒水的处理,其土壤水分利用量平均为34.6 mm,略高于所浇的底墒水的量(30 mm).CK、P、W、WP等4个处理的籽粒产量分别为91 7.7,1191.1,2516.5,2734.1 kg/hrm2,水分利用效率分别为0.186,0.192,0.172,0.207 g/(mm.m2).  相似文献   
74.
长期不同养分投入对土壤养分和水稻生产持续性的影响   总被引:5,自引:0,他引:5  
以中国科学院桃源农业生态试验站15a长期田间定位试验为研究对象,分析了不同养分投入对稻田土壤养分和水稻产量可持续性的影响.结果表明,化肥与系统内循环的有机物料循环的肥力效力和产量效应基本一致,有机物料循环更有利于土壤有机质和氮素的积累;在不同养分投入下,土壤耕层有机质和全氮均呈上升趋势,年均增长率分别为1.5%~5.8%和2.5%~9.4%;与试验前相比,不同养分投入耕层磷素变动幅度在-18.3%到30%之间,钾素养分有所亏缺,下降幅度在8.1%~22.6%之间;通过可持续性指数的分析得出,土壤N素养分的可持续性对化肥的依赖性较大,而P、K养分的可持续性则对有机肥的依赖性更高.稻田生态系统具有良好的自维持能力,系统内有机物循环有利于提高稻谷产量的稳定性和可持续性.  相似文献   
75.
The influence of metabolic rate on otolith accretion in Atlantic salmon parr was investigated by comparing oxygen consumption rate and increment width in fast and slow growing individuals. Increment width was found to be positively correlated to mean daily oxygen consumption in both fast growing (S1) and slow growing (S2) parr. The results support previous suggestions that a process related to metabolic rate, rather than somatic growth, governs the rate of otolith accretion.  相似文献   
76.
Brewers’ spent grain (BSG) is a low‐cost by‐product of the brewing process. BSG liquor names the liquid components of BSG, mainly glucose, maltose, and long‐chain α‐1,4‐glycosidic bond glucose oligomers. These substances should be separated in existing BSG biorefineries, as they might lead to an increased formation of microbe‐inhibiting compounds in well‐established hydrothermal/enzymatic saccharification processes. In most cases, this liquid fraction is discarded. The present study presents for the first time an optimized process with BSG liquor for the purpose of producing bulk chemicals (e.g., lactate) in relevant concentrations. The process comprises the application of yeast extract, produced from own brewing processes, as the sole supplemented complex constituent in a simultaneous fermentation and saccharification process. Kinetic parameters for the final optimized process conditions with the organism Lactobacillus delbrueckii subsp. lactis were: maximum specific growth rate µmax  =  0.47 h?1, maximum lactate concentration cLac, max  =  79.06 g L?1, process yield YPS  =  0.89 gLac gSugar?1, lactate production rate qP  =  4.18 gLac gCDW?1 h?1, and productivity P 15 h  =  4.93 gLac L?1 h?1. BSG liquor, linked with yeast extract from Brewers’ yeast, can be a promising substrate for further bioprocess engineering tasks and contribute to a holistic and sustainable usage of Brewers’ spent grain.  相似文献   
77.
78.
In this review, the recent progress in using transient absorption microscopy to image charge transport and dynamics in semiconducting hybrid organic–inorganic perovskites is discussed. The basic principles, instrumentation, and resolution of transient absorption microscopy are outlined. With temporal resolution as high as 10 fs, sub‐diffraction‐limit spatial resolution, and excited‐state structural resolution, these experiments have provided crucial details on charge transport mechanisms that have been previously obscured in conventional ultrafast spectroscopy measurements. Morphology‐dependent mapping unveils spatial heterogeneity in carrier recombination and cooling dynamics. By spatially separating the pump and probe beams, carrier transport across grain boundaries has been directly visualized. Further, femtosecond temporal resolution allows for the examination of nonequilibrium transport directly, revealing extraordinarily long‐range hot carrier migration. The application of transient absorption microscopy is not limited to hybrid perovskites but can also be useful for other polycrystalline materials in which morphology plays an important role in carrier transport.  相似文献   
79.
Recently, the application of electron backscatter diffraction (EBSD) in halide perovskites has enabled the correlation of the micro‐structural arrangement of polycrystalline grains with other properties (optical, electrical, mechanical, and chemical) in a “pixel‐by‐pixel” approach. Most studies so far have used an ultra‐sensitive electron beam detector that has sensitivity thousands of times higher than a traditional scintillator screen and charge coupled device camera, enabling much lower beam currents. An alternative approach has been the use of low vacuum measurement conditions to avoid charge buildup that leads to damage. This review focuses on introducing the classical EBSD technique to the halide perovskite community, where it has been highly underutilized due to beaminduced damage in these relatively unstable materials. Recent research is used to dispel some common misconceptions about grain boundaries in halide perovskites and highlight what has been learned by comparing and correlating EBSD with other techniques. Additionally, the remaining limitations, development challenges, and future of the EBSD technique for halide perovskites are discussed. Successful utilization of the EBSD technique as a common characterization tool in the halide perovskite community will enable scientists and engineers to develop maps of cross correlated properties, helping to unlock the full potential of this complex material system.  相似文献   
80.
Grain size and plant architecture are critical factors determining crop productivity. Here, we performed gene editing of the MIR396 gene family in rice and found that MIR396e and MIR396f are two important regulators of grain size and plant architecture. mir396ef mutations can increase grain yield by increasing grain size. In addition, mir396ef mutations resulted in an altered plant architecture, with lengthened leaves but shortened internodes, especially the uppermost internode. Our research suggests that mir396ef mutations promote leaf elongation by increasing the level of a gibberellin (GA) precursor, mevalonic acid, which subsequently promotes GA biosynthesis. However, internode elongation in mir396ef mutants appears to be suppressed via reduced CYP96B4 expression but not via the GA pathway. This research provides candidate gene‐editing targets to breed elite rice varieties.  相似文献   
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