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71.
高等植物GS/GOGAT循环研究进展   总被引:34,自引:2,他引:34  
高等植物体内 95%以上的NH4+通过GS/GOGAT(谷氨酰胺合成酶 /谷氨酸合成酶 )循环同化。GS、GOGAT在植物叶片、根瘤以及根中均有分布 ,但在不同器官中GS/GOGAT循环的作用不尽相同。在绿色组织中 ,GS/GOGAT循环的主要作用是同化光呼吸产生的NH4+以及硝酸盐在叶中还原产生的NH4+,在根瘤中则主要同化根瘤菌固N产生的NH4+,而在根中则是同化吸收到体内的NH4+以及硝酸盐被吸收后在根中还原产生的NH4+。迄今有关植物GS/GOGAT循环的研究还不太深入 ,但是随着基因工程技术、免疫组织化学技术以及现代植物生理学技术的发展 ,GS/GOGAT循环研究展示广阔前景。对该循环及其调控机制的进一步了解 ,可为合理利用氮肥、提高植物N的利用率提供理论依据。本文综述了近年来对GS/GOGAT循环的研究进展情况  相似文献   
72.
Summary The turnover of interlayer NH inf4 sup+ in a loess-derived agricultural soil from the Shaanxi Province in China was studied. The concentration of 15N-labeled interlayer NH inf4 sup+ and total interlayer NH inf4 sup+ (labeled + unlabeled) in a soil grown with winter wheat was significantly higher at the beginning of the season (March) than when the crop was mature (June). In a further experiment with winter wheat it was shown that under field conditions the concentration of interlayer NH inf4 sup+ decreased significantly in the two upper soil layers (0–20 and 20–55 cm) during March and in the deeper soil layer (55–75 cm) during April. When the heading stage of wheat was reached, about 200 kg N ha-1 of interlayer NH inf4 sup+ had been released. During the following growth period (heading until flowering of wheat) the concentration of interlayer NH inf4 sup+ increased significantly in the upper soil layers. Fertilizer application in the form of 70 kg N ha-1 as urea led to a considerable increase in the nitrate concentration in the upper soil layer but had no influence on the level of interlayer NH inf4 sup+ concentration. It is concluded that interlayer NH inf4 sup+ takes part in the N cycle of the soil and that it contributes to the N nutrition of the crop. NH inf4 sup+ originating from the mineralization of soil organic N may be rapidly incorporated into the interlayer of clay minerals and later released, when the N demand of the crop is high.  相似文献   
73.
黄土高原典型土壤矿物固定态铵变化的南北差异   总被引:3,自引:0,他引:3  
采集从北向南依次分布的干润砂质新成土(神木)、黄土正常新成土(延安)和土垫旱耕人为土(杨陵)等典型土壤剖面0200.cm土层土样,通过测定土样全氮和矿物固定态铵,以阐明黄土高原典型区域土壤全氮和矿物固定态铵及二者比率随地理位置和土层的变异规律,为全面了解黄土高原土壤相对稳定氮库累积提供科学数据。结果表明,不同地理位置、不同土层全氮和矿物固定态铵含量存在显著差异。从南到北全氮和矿物固定态铵呈下降趋势,但各土壤全氮和矿物固定态铵的分布显著不同,全氮含量在060.cm随土层深度增加下降很明显,60120.cm有一定下降,120.cm以下低而稳定。矿物固定态铵在全剖面上的分布比较均匀,随土层深度的变化差异不显著,不同土层间的差异基本在误差范围内,土垫旱耕人为土、黄土正常新成土和干润砂质新成土表层(010.cm)矿物固定态铵平均含量分别为215.807.45、165.808.73和146.501.83.mg/kg,表层以下(10200.cm)平均含量分别为193.409.67、157.145.75和142.025.47.mg/kg。从地理位置分析,干润砂质新成土、黄土正常新成土和土垫旱耕人为土表层(010.cm)矿物固定态铵占全氮的百分比分别为(39.570.78)%、(32.916.82)%和(29.747.01)%;在表层以下所占比例更高,干润砂质新成土10200.cm土壤矿物固定态铵含量占全氮比例为(89.5213.42)%,黄土正常新成土为(59.5213.86)%,土垫旱耕人为土为(47.269.01)%。供试土壤中矿物固定态铵与0.01.mm物理性粘粒含量存在极显著正相关关系,说明物理性粘粒是矿物固定态铵的主要载体;矿物固定态铵与全氮含量也有极显著正向相关性。以上结果揭示,在黄土高原黄土母质上形成的土壤,全剖面矿物固定态铵相对均匀,而有机氮相差较大,两种氮库的这种地理位置和剖面分布特征,是黄土母质形成的必然结果,也进一步支持了黄土高原黄土母质的风成学说;同时也反映了需要对有机氮占全氮比例及矿物固定态铵在全氮中地位的传统观念予以重新评价。  相似文献   
74.
李紫燕  李世清 《水土保持研究》2007,14(2):306-310,314
以黄土高原从北向南不同地区典型土壤类为对象,采用Bramner淹水培养法,研究黄土高原不同生境条件下土壤有机氮矿化过程中非交换性铵态氮的变化。结果表明:土壤非交换性NH4^+ -N随Bremner法淹水培养时间延长,含量增加。不同土壤类型在培养20d时非交换性NH4^+ -N的增加量存在显著差异(p=0.0229),而培养40d和60d时差异不显著(P分别为0.1379和0.1159)。培养期间非交换性NH4^+ -N的增加量均表现为以土垫旱耕人为土最大,其次是黄土正常新成土,简育干润均腐土和干湿砂质新成土较小;添加有机物料极显著影响培养期间的非交换性NH4^+ -N增加量(培养20d、40d和60d时P分别为0.0002,0.004和0.0003),表现为紫花苜蓿和长芒草土壤非交换性NH4^+ -N的增加量均极显著高于不添加有机物料的对照土壤;在培养20d、40d和60d时,加(NH4)2SO4土样非交换性NH4^+ -N的增加量显著大于不加(NH4)2SO4土样(户分别为0.0037,0.0033和0.0027),这是土壤对(NH4)2SO4中NH4^+ -N固定的必然结果;不同植被类型土壤培养20d时的非交换性NH4^+ -N增加量差异显著(P=0.0434),培养40d和60d时差异不显著(p分别为0.7378和0.5375);长期秸秆和氮肥配施土壤非交换性NH4^+ -N增加量大于不施肥对照土壤,但差异不显著土壤黏粒、全氮和有机质与培养0d、20d、40d和60d时土壤的非交换性NH4^+ -N含量均呈极显著正相关;而非交换性NH4^+ -N的增加量与粘粒无相关性,但与全氛和有机质呈显著正相关。  相似文献   
75.
Precipitation chemistry in Japan was discussed on a wet-only sample database obtained in a nationwide survey from April 1989 to March 1993. Wet-only samples were collected at 29 stations over Japan on a biweekly basis. Commonly determined chemical parameters were measured in laboratories. The volume-weighted annual mean pH at each site ranged from 4.50 to 5.83 with a mean of 4.76. Concentration ranges and means (parenthesized) on an equivalent basis for major ions were as follows: nss-SO4 2–; 5.2–58.9 (38.6), NO3 ; 1.8–25.0 (14.1), NH4 +; 0.55–29.8 (18.3), nss-Ca2+; 2.0–34.5(14.2), Na+; 6.4–275.3 (49.1), Cl; 13.7–322.4 (63.5) eq L–1. Acid-base relationships for Phase-II records were quantitatively discussed in terms of three measures: pH, fractional acidity, and our proposed pAi.  相似文献   
76.
在不同处理条件下,进行分子筛(4A型与13X型)对木材阻燃剂聚磷酸铵(APP)处理试件的载药量、吸湿性、氧指数的影响试验。结果表明,随着APP浓度的升高,处理材的载药量、吸湿率与氧指数均呈上升趋势;分子筛在增大木材载药量的同时可降低其吸湿率;20%的APP与2%的4A分子筛复配溶液处理杨木单板的载药量最高,为51.11 kg/m3;2种分子筛使木材的吸湿率降低了14%~18%;浓度为15%的APP处理木材的氧指数为48.7%,加入2%的4A或13X分子筛后,杨木单板的氧指数分别为41.5%与46.7%,均达到难燃B1级材料的氧指数标准。  相似文献   
77.
Nitrogen (N) by form of nutrition, ammonium (NH4+) or nitrate (NO3?), affects metabolic and physiological processes of plants. In general, a high proportion of N in NH4+ form results in poor growth. Nonetheless, a number of species exhibit optimum growth when high levels of NH4+ are provided. In the present study, lisianthus [Eustoma grandiflorum (Raf.) Shinn] was grown in rockwool cultures and irrigated with nutrient solutions containing 15 mM N with varying proportions of NH4+ and NO3?. The results showed that an increase in NH4+-N form increased plant height, number of flowers and leaves, leaf area, and shoot, stem, and leaf dry weight. The proportion of NH4+ also affected leaf concentration of phosphorus, potassium (K), calcium (Ca), and magnesium (Mg), although leaf N concentration was unaffected. Potassium leaf concentration was higher when a low proportion of NH4+ was supplemented in the nutrient solution; however, plants exhibited a decrease in leaf K concentration and a decrease in leaf Ca as the proportion of NH4+-N increased. Shoot dry weight was higher with low leaf K whereas high leaf Ca was associated with high shoot dry weight. Net photosynthesis rate was higher in plants irrigated with solutions containing 75% of total N in NH4+ form than in those irrigated with solutions of 0 or 25%. The results suggest that lisianthus can tolerate high levels of NH4+, probably associated with a higher assimilation of Ca.  相似文献   
78.
粉砂壤土对铵离子的吸附特性   总被引:3,自引:0,他引:3  
平衡状态下粉砂壤土吸附铵离子的实验结果表明,土壤溶液中NH4+的质量浓度产ρ(NH4+)影响土壤对NH4+的吸附模式。当ρ(NH4+)低于某一数值ρk(NH4+)时土壤中的NH4+将被溶解到土壤溶液中;当ρ(NH4+)较大时土壤对NH4+的吸附作用可用Langmir吸附模式描述;当ρ(NH4+)较小(但大于ρk(NH4+)时,土壤对NH4+的吸附作用可用线性等温的Frundlich吸附公式描述。  相似文献   
79.
This study chose Shangshu 19 (S19) and Jixu 23 (J23) categorized by valid tuber root number per plant as analyzing varieties and arranged treatment combinations consisted of two nitrogen forms ammonium nitrogen (AN) and amide nitrogen (XN) integrated with two nitrogen rates 60 kg hm-2 (LN60) and 180 kg hm-2 (HN180), using field and pot trial assays, plus a check treatment received no nitrogen supply in order to make research on the anatomical observation on sweet potato tuber root differentiation and expression characteristics of IbEXP1 gene associated with tuber root formation in ammonia nitrogen in 2014 and 2015. Our results showed that the storage root yield of Shangshu 19 associated with more valid tuber root number per plant was significantly higher than Jixu 23 at harvest stage, which was significant difference compared with each other. In addition, nitrogen levels and nitrogen forms had significant interaction effects. The 60 kg hm-2 ammonium nitrogen treatment in two sweet potato genotypes achieved the highest final storage root yield in field experiment and showed higher valid tuber root number per plant, which attributed to the younger tubers whose root diameter between 0.5 cm and 5.0 cm during the canopy closure period. It had been observed that 60 kg hm-2 ammonium nitrogen treatment possessed the most vessels in the primary xylem bundle and the lignified parenchyma cells of the stele tissues in the pre-cambial period, followed with possessing high level expression of IbEXP1 gene, the biggest root diameter and stele diameter and the most number of primary and secondary xylem bundles in the course of primary cambium growth. As the vascular cambium was initiated, relative expression of IbEXP1 gene at 60 kg hm-2ammonium nitrogen treatment and the degree of parenchyma cells lignification were intermediate between no nitrogen application and high nitrogen treatments, however, the diameter of root and stele and the ratio of them were highest, which achieved the perfect harmony in lignification and division of parenchyma cells in tuberization.  相似文献   
80.
采用温室盆栽法研究了7种季铵盐阳离子表面活性剂对啶虫脒在防治烟粉虱的增效作用,为阳离子助剂在杀虫剂领域的开发利用提供一定的依据。结果表明:季铵盐阳离子1227、12143、31506与啶虫脒混用,在高浓度(200mg/L)处理下增效作用明显;1427、31551、31527与啶虫脒混用可延长其持效期;31503无增效作用。  相似文献   
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