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91.
水稻根际含氧量对根系生长的影响   总被引:12,自引:0,他引:12  
以多个水稻品种为材料, 采用营养液培养试验, 通过气泵增加水稻根际的含氧量, 研究水稻根际含氧量与根系生长的关系。结果表明, 在水稻生长过程中, 抽穗期根系吸收氧气的能力最强, 需氧量最大。根际含氧量对水稻根系形态与分布有影响, 增氧显著增加根长, 提高根系自根基到根尖10~20 cm、>20 cm部分所占的生物量比例, 同时减少根数; 而在缺氧环境下生长的水稻根数增多, 根长缩短。氧溶量对水稻根系活力的影响存在品种间差异, 提高水稻根际的氧溶量, 杂交稻汕优63和国稻1号齐穗期根系的活跃吸收面积和根系活力显著增加; 根系活力较高的常规籼稻湘早籼11和甬粳18在充氧处理中的根系活力也明显提高, 但根际氧含量的增加对根系活力较低的水稻品种湘早籼24和春江06的根系活力并无明显作用; 缺氧环境下生长的水稻根系的活力降低。  相似文献   
92.
不同腐殖酸含量基质对烟苗品质的影响   总被引:1,自引:0,他引:1  
为探索腐殖酸应用于烟草漂浮育苗的前景,改进烟草漂浮育苗基质提升烟苗品质,以‘K326’为材料,研究不同腐殖酸含量对烟苗生长及生理特性的影响。结果表明:(1)基质中添加腐殖酸能影响烟苗的生长发育,主要包括烟苗的茎高、生物量及根冠比,且腐殖酸促进烟苗生长的作用随着基质中腐殖酸含量的增加呈现先促进后抑制的作用。(2)基质中添加腐殖酸对烟苗的还苗期时间影响较小,但能显著影响烟苗的移栽成活率,以30%的腐殖酸含量下烟苗的还苗期最短,且移栽后的成活率最高。(3)基质中添加腐殖酸能一定程度影响烟苗的叶绿素含量、硝酸还原酶活性、转化酶活性及根系活力的大小,且以腐殖酸含量为30%的处理烟苗生理特性各指标较适宜。综合来看,育苗基质中添加腐殖酸能影响烟苗的品质,适宜的腐殖酸含量能显著提高烟苗的整体品质,基质中最适宜的腐殖酸含量为30%。  相似文献   
93.
育苗轻型基质块配方研究   总被引:1,自引:0,他引:1  
为充分利用南方果树废弃物资源,以香蕉菠萝废弃茎叶堆肥和椰糠作为基质材料,添加粘合剂、固化剂、改良剂,制作出基质块。采用正交法设定基质块配方,通过测试分析基质块的理化性状,确定最佳的基质块配方。结果表明,香蕉菠萝废弃茎叶堆肥和椰糠的配比是影响基质块理化性状的主要因素,各因素影响的主次顺序为:基质配比改良剂粘合剂固化剂;综合分析,A3B2C3D3组合配方具有最佳的理化性状,即基质配比(堆肥:椰糠)为4:6,粘合剂(聚乙烯醇)为4%,固化剂(硼砂)为2.5%,改良剂为140%。  相似文献   
94.
为探讨钙元素对桃果实品质、耐贮藏性的影响,确定最佳的叶面喷施钙元素的浓度,研究了喷施钙后,桃果肉组织中钙元素的分布特征、叶片叶绿素的含量以及对果实可溶性固形物含量(SSC)、大小、硬度和耐贮藏性的影响。结果表明,果肉中Ca2 的含量随着喷施钙元素浓度的提高而增加,当喷施CaCl2浓度为0.5%时叶绿素的含量最大,当喷施CaCl2浓度为1%时,SSC、果实大小和果肉硬度达到最大值;当喷施CaCl2浓度为2%时,放置3天后果实硬度最大。本研究确立了最佳的喷施浓度,为深入研究果实钙离子浓度梯度在果实品质形成方面的作用提供了依据。  相似文献   
95.
为了揭示空气负氧离子浓度与林种及相关气象条件之间的关系,笔者于2013年夏、秋两季对北极村地区选取的具有代表性的样地进行负氧离子浓度的观测及研究,通过时间尺度平均值及相关性分析的方法,对采集数据进行统计分析,并得出北极村地区负氧离子浓度的总体水平以及其与林种和气象因子之间的变化关系。结果表明:漠河北极村空气负离子浓度的总体水平处于548~1203个/cm~3,平均值为892个/cm~3,负氧离子浓度大体上与空气温度呈正相关、与空气湿度呈负相关。落叶松样地整体负氧离子水平高于樟子松样地,不同季节对负氧离子浓度也有较大影响。揭示出北极村地区负氧离子浓度与林种、季节以及气象因子之间的变化关系。  相似文献   
96.
Healthy and comfortable dormitory environment has a major impact on students daily life. Indoor thermal environment parameters and CO2 concentration of typical student dormitories under natural ventilation during cold spell was studied through a 29-day co  相似文献   
97.
Quinoa (ChenopodiumquinoaWilld.) is a highly nutritious Andean seed crop which shows great potential to grow under a range of hostile environments. The objective of this study was to investigate the differences of drought tolerance of a Bolivian (Achachino) and a Danish (Titicaca) variety, and especially drought‐related adaption strategies. Soil water status was expressed as the fraction of transpirable soil water (FTSW). Relative stomatal conductance (RSC), relative transpiration (RT) and relative leaf water potential (RLW) were calculated by determining stomatal conductance, transpiration rate and leaf water potential of the drought‐treated plants relative to those of fully irrigated plants. The responses of RSC, RT and RLW to decreasing FTSW were described by a linear‐plateau model. The critical value of FTSW was the threshold of FTSW where the parameters studied decreased. The thresholds increased CS for stomatal conductance, CT for transpiration and CLfor leaf water potential. Achachino showed significantly lower CT and CL when compared with Titicaca, implying that transpiration and leaf water potential were less affected under mild drought conditions in the Bolivian variety. CS in Achachino was significantly higher than CL and CT, which indicated that stomatal conductance declined before transpiration and leaf water potential were reduced. Such difference was found in Titicaca where reduction of leaf area had more effect on transpiration than stomatal closure. Slower growth rate and smaller leaf area in combination with a lower stomatal conductance was found to contribute to drought resistance in Achachino. ABA concentration in the xylem sap tended to increase in both varieties after 2 days onset of drought, prior to decline in leaf water potential. Titicaca showed significantly (P < 0.05) higher ABA concentration when compared with Achachino under both fully irrigated and drought conditions. Titicaca had higher xylem nutrient concentration in comparison with Achachino in both fully‐watered and drought plants at day 2 after onset of soil drying. It was concluded that Titicaca was more sensitive to progressive drought than Achachino which avoided water loss by means of lower growth rate and smaller leaf area.  相似文献   
98.
鲜活水产品中甲醛本底含量状况调查   总被引:3,自引:0,他引:3  
运用乙酰丙酮分光光度法法,先后对12种314个淡水鱼类样品、19种356个海水鱼类样品、9种147个虾蟹类样品、5种137个贝类样品和4种59个头足类样品共计1013个鲜活水产样品中本底甲醛含量进行了测定。研究结果表明,鲜活水产品中甲醛含量中位值为0.25mg/kg,平均值为6.31mg/kg,中位值远低于平均值,因而多数水产品中甲醛的本底含量处于低端水平。在调查的49个水产品样品种类中,龙头鱼、鳕、中国枪乌贼、口虾蛄、梭子蟹等种类甲醛本底含量较高,另外淡水鱼类样品中的罗非鱼甲醛含量要显著高于其它种类的淡水鱼类(p<0.05)。不同类型的水产品之间甲醛含量也存在一定差异(p<0.05),具体表现为海水鱼类样品中甲醛含量最高,其次为头足类样品、甲壳类样品和贝类样品,淡水鱼类样品中甲醛含量最低 。  相似文献   
99.
The relationship between grain protein concentration and grain yield in different cultivars of winter wheat was examined in a series of field experiments carried out over three years, in which 13, 12 and 8 cultivars were studied in each year, respectively. The plants were grown at sites located in Shropshire, west-central England, in years 1 and 2, and at three other locations in eastern England in year 3. Above ground plant samples were collected at an thesis and again at maturity, when they were separated into grain and straw, and analysed for dry matter and N content. Analysis of residuals from regression of grain protein concentration on grain yield (grain protein deviation, GPD) showed that some cultivars had a higher grain protein concentration than was predicted from grain yield alone. It was deduced that the capacity to accumulate a higher grain protein concentration than predicted from grain yield is under genetic control and thus may be improved through breeding. Other factors (weight of N accumulated in the biomass at anthesis, weight of N accumulated in the biomass between anthesis and maturity and the concentration of N remaining in the straw at maturity) were added step-wise into the regression to enable statistical analysis of their relative contributions to grain protein. High GPD may be achieved through increased N accumulation after anthesis, combined with efficient re-translocation of vegetative N reserves. The use of GPD provides a selection criteria in wheat breeding programs to screen for increased grain protein concentration without a concurrent grain yield reduction. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   
100.
Addition of citric acid to enhance the bioleaching chalcopyrite tailings   总被引:1,自引:0,他引:1  
The effect of mixed sulphur bacilli on the bioleaching of chalcopyrite tailings in shake flask and the effect of different citric acid concentrations and slurry densities on leaching tailings are studied. The results show that the concentration of citric acid in a certain range can promote chalcopyrite tailings bioleaching, and the highest of leaching rate is 44.8%. The citric acid concentration and slurry density directly affect the oxidation activity of bacteria and the effect of leaching.  相似文献   
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