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1.
落叶果树冬季进入休眠期,果农田间管理时间长,农事操作方便,而在生产中,不少果农忽视了冬季这个果园管理的关键时期,造成树势衰弱、树形杂乱、病虫害严重。做好落叶果树冬季管理技术措施,对于增强树势,提高翌年果树产量、品质和效益起到关键性的作用。  相似文献   
2.
Excessive use of nitrogen(N) fertilizers in agricultural systems increases the cost of production and risk of environmental pollution. Therefore, determination of optimum N requirements for plant growth is necessary. Previous studies mostly established critical N dilution curves based on aboveground dry matter(DM) or leaf dry matter(LDM) and stem dry matter(SDM), to diagnose the N nutrition status of the whole plant. As these methods are time consuming, we investigated the more rapidly determined leaf area index(LAI) method to establish the critical nitrogen(N_c) dilution curve, and the curve was used to diagnose plant N status for winter wheat in Guanzhong Plain in Northwest China. Field experiments were conducted using four N fertilization levels(0, 105, 210 and 315 kg ha-1) applied to six wheat cultivars in the 2013–2014 and 2014–2015 growing seasons. LAI, DM, plant N concentration(PNC) and grain yield were determined. Data points from four cultivars were used for establishing the N_c curve and data points from the remaining two cultivars were used for validating the curve. The N_c dilution curve was validated for N-limiting and non-N-limiting growth conditions and there was good agreement between estimated and observed values. The N nutrition index(NNI) ranged from 0.41 to 1.25 and the accumulated plant N deficit(N_(and)) ranged from 60.38 to –17.92 kg ha~(-1) during the growing season. The relative grain yield was significantly affected by NNI and was adequately described with a parabolic function. The N_c curve based on LAI can be adopted as an alternative and more rapid approach to diagnose plant N status to support N fertilization decisions during the vegetative growth of winter wheat in Guanzhong Plain in Northwest China.  相似文献   
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为明确水地强筋冬小麦高产、优质、高效的灌溉技术,试验设3个灌水时期8个灌溉处理[越冬期灌1水(W1),拔节期灌1水(W2),孕穗期灌1水(W3),越冬期和拔节期灌2水(W12),越冬期和孕穗期灌2水(W13),拔节期和孕穗期灌2水(W23),越冬期、拔节期和孕穗期灌3水(W123),全生育期不灌水处理(CK)],于小麦成熟期测定籽粒产量、总蛋白及其组分含量和淀粉含量。结果表明,与不灌水的CK比较,所有灌水处理的籽粒产量、有效穗数、穗粒数、千粒重、蛋白质产量以及籽粒淀粉含量均显著增加,但籽粒的总蛋白及其组分含量均呈不同程度降低(W1处理除外)。越冬期灌水对有效穗数、籽粒产量、总蛋白及其组分含量、淀粉含量的提升作用较大;拔节期灌水对穗粒数的提升作用较大,但对淀粉含量的提升作用较小,对总蛋白及其组分含量的降低作用较大;孕穗期灌水对千粒重的提升作用较大,对蛋白质产量的提升作用较小。随着灌水次数增加,小麦籽粒产量显著提高,淀粉含量先显著提高后基本不变,而籽粒总蛋白及其组分含量降低。W123处理籽粒产量最高,其次是W13处理;W1处理籽粒蛋白质及其组分含量最高,其次是W12及W13处理;W23处理淀粉含量最高,其次是W12或W13处理。综合各项指标,最好的灌水组合是越冬期和孕穗期灌2水(W13)。  相似文献   
5.
Environmental conditions influence phenology and physiological processes of plants. It is common for maize and sorghum to be sown at two different periods: the first cropping (spring/summer) and the second cropping (autumn/winter). The phenological cycle of these crops varies greatly according to the planting season, and it is necessary to characterize the growth and development to facilitate the selection of the species best adapted to the environment. The aim of this study was to characterize phenological phases and physiological parameters in sorghum and maize plants as a function of environmental conditions from the first cropping and second cropping periods. Two parallel experiments were conducted with both crops. The phenological characterization was based on growth analyses (plant height, leaf area and photoassimilate partitioning) and gas exchange evaluations (net assimilation rate, stomatal conductance, transpiration and water-use efficiency). It was found that the vegetative stage (VS) for sorghum and maize plants was 7 and 21 days, respectively, longer when cultivated during the second cropping. In the first cropping, the plants were taller than in the second cropping, regardless of the crop. The stomatal conductance of sorghum plants fluctuated in the second cropping during the development period, while maize plants showed decreasing linear behaviour. Water-use efficiency in sorghum plants was higher during the second cropping compared with the first cropping. In maize plants, in the second cropping, the water-use efficiency showed a slight variation in relation to the first cropping. It was concluded that the environmental conditions as degree-days, temperature, photoperiod and pluvial precipitation influence the phenology and physiology of both crops during the first and the second cropping periods, specifically cycle duration, plant height, leaf area, net assimilation rate, stomatal conductance and water-use efficiency, indicating that both crops respond differentially to environmental changes during the growing season.  相似文献   
6.
探明周年产量20,000kghm–2以上冬小麦–夏玉米种植模式周年气候资源分配与利用特征,并建立资源优化配置定量指标,为进一步提升黄淮海该模式周年产量潜力和气候资源利用效率提供理论依据,具有重要意义。本研究利用2006—2010年黄淮海区9个高产点共45个田间试验的数据,定量分析了冬小麦–夏玉米模式高产形成与季节间光温水资源分配的关系。结果表明,三省9个试验点冬小麦–夏玉米均实现了周年20,000kghm–2以上高产,但区域间差异较大,河南和山东小麦产量最高,山东夏玉米产量最高,河南和山东周年产量分别高于河北16.9%和21.5%。产量的变化主要由光温水分配差异造成,河南和山东小麦季积温量在1924.2~2608.0°C和降雨量小于201.1mm范围时产量均高于河北,山东玉米季辐射量在2168.5~2953.8 MJ m–2、积温量小于2990.7°C和降水量小于591.3 mm范围时产量均高于河南和河北。然而省份间冬小麦–夏玉米模式季节间热量资源分配率和分配比值相对固定,即小麦季和玉米季积温分配率分别为43%和57%,两季间积温比值为0.7,这是该区当前生产和生态条件下冬小麦–夏玉米模式季节间资源合理配置的定量标准。在不增加任何投入的前提下依据该定量指标来指导黄淮海不同生态区冬小麦–夏玉米种植模式的资源优化配置,对促进黄淮海该种植模式可持续发展具有重要意义。  相似文献   
7.
Milt quality of Waigieu seaperch was sampled at the beginning, the middle, and the end of the spawning season to assess if the sampling season has an effect on milt quality parameters. The milt volume and total sperm production were higher at the middle of the spawning season while the sperm concentration in milt was significantly higher at the beginning and the end of the spawning season. Sperm morphology and the major parameters of seminal plasma (pH, total protein, Mg2+, or Ca2+ concentrations) did not differ throughout the spawning season. The concentrations of Na+ and the osmolality increased throughout the spawning season. The percentage of motile cells did not differ during the spawning season while the duration of sperm motility (swimming duration) and velocity (swimming speed) were significantly different during the spawning season. The fertilization rate (75.7 ± 6.8%) and hatching rate (56.5 ± 3.1%) at the middle of the spawning season were higher than at the beginning and end periods. Results indicated that milt quality parameters and fertility success in the middle of the spawning season were higher compared to earlier and later sampling dates. Thus, we recommend collecting milt during this time for maximal fertilization and hatching success.  相似文献   
8.
为深入认识四川冬春季参考作物蒸散量(ET0)的变化特征,利用1980—2016年四川35个气象站的逐日气象观测资料,采用泰森多边形、气候倾向率和克里金空间插值等方法对其冬春季ET0的时空变化特征进行分析,并通过敏感性和贡献率分析了ET0的变化成因。结果表明:ET0的年代际变化呈先降后增的趋势,空间上呈明显的西南高东部低的分布特征,且高值区范围持续扩大,低值区范围波动缩小。ET0的年际变化呈上升趋势,春季ET0气候倾向率和空间差异明显大于冬季,且ET0高值区与低值区空间分布受海拔高度影响明显。ET0的同一日多年平均值自初冬至初春逐渐上升,1月22日—5月2日仅有8 d的ET0值低于多年日平均值,具有明显连续的高值时段。ET0对日照时数的变化最敏感,其次是对相对湿度与平均气温,对三者均呈高敏感性。平均气温的正贡献率是引起ET0变化的主导因子,其次是相对湿度。研究时段内平均气温的升高对ET0的正效应和相对湿度的降低对ET0的负效应,超过了日照时数减少对ET0的减少效应,导致四川地区冬春季ET0呈上升趋势。  相似文献   
9.
为探究影响北方冬油菜农艺性状的气象因子,以新疆自治区阿勒泰、乌鲁木齐和喀什为研究试点,选择陇油6号、陇油7号、陇油8号、天油2号、天油4号、天油7号共6个抗寒性不同的白菜型冬油菜品种为研究材料,采用适定性分析法和相关性分析法,研究气象因子对冬油菜的株高、主花序角果数、单株角果数、角粒数等农艺性状的影响。结果显示:随纬度降低越冬率增加,农艺性状变劣,其中千粒重、株高和角粒数变异系数较小,分别为5.86%、6.23%和12.63%,单株角果数的变异系数较大,为28.25%;参试品种间,强抗寒品种陇油6号和陇油7号的农艺性状变异系数较小,弱抗寒品种天油2号等变异系数较大;农艺性状与越冬率显著正相关(P<0.05),角粒数与各种气象因子的相关性均达显著水平(P<0.05);积雪天数、年降雨量和最大积雪厚度对农艺性状具有正效应,累积贡献率达到0.877,最冷月最低气温、地面极端低温、负积温和年均气温对农艺性状具有负效应,累积贡献率达到-0.871。因此,在北方寒区,选择强抗寒冬油菜品种有利于保持农艺性状稳定,获得较好产量与效益。  相似文献   
10.
季节会影响到大鲵肌肉的脂肪及钙的含量,肝脏的脂肪、钙及游离氨基酸的含量,饥饿对肌肉的酸化成分不产生影响,但饥饿程度的增加,会对肝脏脂肪无氮浸出物及游离氨基酸产生影响;繁殖前雌性大鲵的肌肉肝脏的肪肪含量均高于雄性的。  相似文献   
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