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Salinity reduces crop yield by limiting water uptake and causing ion‐specific stress. Soybean [Glycine max (L.) Merr.] is sensitive to soil salinity. However, there is variability among soybean genotypes and wild relatives for salt tolerance, suggesting that genetic improvement may be possible. The objective of this study was to identify differences in salt tolerance based on ion accumulation in leaves, stems and roots among accessions of four Glycine species. Four NaCl treatments, 0, 50, 75 and 100 mm , were imposed on G. max, G. soja, G. tomentella and G. argyrea accessions with different levels of salinity tolerance. Tolerant genotypes had less leaf scorch and a greater capacity to prevent Na+ and Cl? transport from soil solution to stems and leaves than sensitive genotypes. Magnitude of leaf injury per unit increase in leaf Na+ or Cl? concentrations was lower in tolerant than in susceptible accessions. Also, plant injury was associated more with Na+ rather than with Cl? concentration in leaves. Salt‐tolerant accessions had greater leaf chlorophyll‐meter readings than sensitive genotypes at all NaCl concentrations. Glycine argyrea and G. tomentella accessions possessed higher salt tolerance than G. soja and G. max genotypes.  相似文献   
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为解决喷油泵试验台量油系统测量误差较大的问题,本研究通过采集喷油器针阀升程、喷油压力、转速等信号精确测得喷油量。  相似文献   
4.
选用粳稻品种东优9901和长粒香,研究不同收获时期对稻米味度值与RVA谱特性的影响.结果表明:不同收获期处理间的味度值和粘滞峰消减值没有显著差异;但整精米率、下降粘度和最高粘度均存在显著或极显著的差异,东优9901在灌浆35~40 d时RVA谱特性最佳,而长粒香在灌浆35~45 d时RVA谱特性最好.  相似文献   
5.
Mobile nitrogen (N) forms may be better N indicators of the N status of trees than total nitrogen (TN) due to their higher sensitivity to increasing N supply. A field experiment was carried out over a 3-year period to compare foliar concentrations of total N (TN), soluble N (SN), chlorophyll (Minolta SPAD readings), NH4–N and NO3–N as indicators of soil N availability in nectarine, Prunus persica L. Batsch, cv. ‘Fantasia’ (grafted on ‘Nemaguard’ peach, P. persica × P. davidiana) trees. Young trees were exposed to a range of fertilizer-N application rates. Based on correlation analysis, the best association between leaf N compounds with soil N supply and trunk diameter and/or fruit yield was obtained with TN and chlorophyll SPAD readings. Leaf concentrations of mobile N compounds (NH4–N and NO3–N) increased more than any other N compound under high N supply; however, their inconsistency among years and low leaf concentration difficult their use as N indicators. The optimum foliar TN for growth decreased with tree age, 4.4%, 3.6% and 3.3% in non-bearing 1-year-old trees, non-bearing 2-year-old trees and 3.3 fruit-bearing 3-year-old trees. The optimum SPAD readings were 40 in 2-year-old trees and 42 in 3-year-old trees. Stable N compounds (TN and chlorophyll SPAD) could be used to N diagnosis in the zone of N deficiency, and soluble N compounds (NH4–N and NO3–N) to diagnoses N excess.  相似文献   
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介绍了计算法测量电阻应变的原理及试验,着重分析了试验结果,验证了测量原理.  相似文献   
7.
实验地貌的动态观测装置   总被引:1,自引:0,他引:1  
实验地貌的动态观测对于研究沟坡的侵蚀过程和发生机制具有重要意义.在介绍实验地貌动态观测装置——MX - 2010 -G型地貌仪的基础上,采用传统钢尺+水准仪观测方法以及地貌仪测量方法,测量同一坡体的体积,以率定地貌仪的观测精度.结果表明:对于5组不同坡度、体积约为2.4万cm3的沟坡模型,地貌仪测量的体积相对误差可以控制在±10%以内,其中绝对值最大相对误差为9.0%,绝对值最小误差为-0.4%;对于120 cm×140 cm范围内的坡面,10个检查点空间坐标在x、y、z 3个方向上的均方误差平均值分别为0.99、0.84和0.42 cm;在6个断面测点系列高程值线性回归分析中,回归系数6与相关系数R2值均接近于1.结果表明,该地貌仪能够对沟坡微地貌的变化过程进行精确的观测.  相似文献   
8.
A field trial was conducted over a 3-year period at the Hokkaido Kitami Agricultural Experiment Station to examine whether the grain protein content (GPC) of a winter wheat cultivar (Triticum aestivum L. cv. Chihokukomugi) suitable for Japanese noodle-making could be predicted before harvest. The prediction of the GPC was accurate based on the color of the second leaf (just below the flag leaf) at the end of the emergence of the inflorescence, when nitrogen application was graded. In order to evaluate the reliability of this test, a survey of 95 wheat fields in the eastern part of Hokkaido was also carried out during a 3-year period. The prediction of the GPC for this cultivar based on the color of the second leaf was less accurate across many sites. The results of this survey, however, suggested that the leaf color could be used as an index for ranking the GPC as low or high in relation to processing requirements. When the leaf color value of the second leaf measured with a chlorophyll meter at the end of the emergence of the inflorescence was less than 40, it was predicted that the GPC would be lower than the processing requirement. This index could be applied to the cultivars grown in the eastern part of Hokkaido, except for those grown on peat soils.  相似文献   
9.
应用叶绿素计诊断烤烟氮素营养状况   总被引:13,自引:1,他引:13  
为探讨叶绿素计在估测烤烟叶绿素和氮浓度上的应用价值,进行了3个田间试验。即:郑州点2003年设施N.51.0.kg/hm2与4个品种NC89、RG17、85048、541;2004年设5个氮肥用量:N.30.04、0.5、51.0、61.5、75.0.kg/hm2与2个品种中烟101、云烟85;玉溪点于2005年设5个氮肥用量:N.02、7.0、54.5、81.8、109.0.kg/hm2与K326品种的试验。测定了不同试验条件下烤烟叶片的叶绿素计(SPAD-502和CCM-200)值和实际叶绿素浓度、全氮浓度,并进行了三者关系分析。结果表明,应用叶绿素计监测烤烟叶片最佳测定部位为完全展开叶的中部。叶绿素计测定值因年份、地点、氮肥水平、叶位、同一叶片不同的部位而异。叶绿素计值与叶绿素浓度、叶片全氮浓度之间有稳定的极显著相关性。叶绿素计SPAD-502的SPAD值和CCM-200的CCI值与叶绿素浓度之间的决定系数分别为0.8755(P0.001)和0.9499(P0.001)。SPAD计值(SPAD)与全氮浓度(N)之间回归方程为N=0.0265SPAD+0.9601(R2=0.7649,P0.001),经检验该模型具有较好的精确性和普适性,利用叶绿素计进行烤烟氮素营养监测是可行的。  相似文献   
10.
针对现有玉米精密电驱排种控制系统无法快速适应多类型排种器排种控制的问题,在玉米CAN总线电动排种的基础上,设计了一种对玉米排种器排种驱动进行现场标定的电驱控制系统。系统在排种驱动电动机控制信号与排种盘转速之间的对应关系中,采用分段线性插值的方法现场获取排种器驱动曲线,实现排种盘转速标定与控制。以国产气吸式玉米精密排种器和指夹式玉米精密排种器为试验对象,在模拟车速下,对系统排种盘转速现场标定的控制准确性进行试验。电驱气吸式排种器排种盘转速控制性能试验中,株距设定为25 cm,车速设定为3~12 km/h(间隔3 km/h),结果表明,系统调节时间最长为0.80 s,稳态误差最大为0.81 r/min,控制精度最低为97.42%。电驱指夹式排种器排种盘转速控制性能试验中,株距分别设定为20、25、32 cm,车速设定为4~9 km/h(间隔1 km/h),结果表明,总体排种盘转速平均调节时间为1.09 s,标准差为0.26 s;总体平均稳态误差为0.38 r/min,标准差为0.23 r/min;总体平均控制精度为98.30%,标准差为1.01%。与分段PID排种转速控制系统控制性能进行对比得出,支持转速现场标定的系统具有更好的适应性,平均调节时间减少0.51 s,平均稳态误差增大0.16 r/min,平均控制精度降低0.63个百分点。选用指夹式排种器,进行了播种均匀性田间试验,株距为20 cm,车速范围为4~7 km/h(间隔1 km/h),结果表明,播种合格指数大于等于84.26%,变异系数小于等于18.29%,说明系统能够完成对玉米精密排种器排种转速控制曲线的高控制精度现场标定,能够精准控制电驱排种转速。  相似文献   
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