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1.
施氮量和花后控水对小麦水分生产效率及产量的影响   总被引:2,自引:0,他引:2  
在防雨池栽条件下,采用施纯氮10kg/667m2、15kg/667m2、20kg/667m2(分别用N1、N2、N3表示)和40%~50%、60%~70%、80%~90%(分别用W1、W2、W3表示)3种土壤含水量进行处理,研究了氮肥和花后土壤含水量对小麦水分生产效率和产量的影响。结果表明:在同一施氮量条件下,表现为花后土壤含水量过高(80%~90%)或过低(40%~50%)导致穗粒数减少,千粒重降低,最终使产量降低。水分生产效率,则随着土壤含水量的增加而降低。在同一土壤含水量下,表现为增加施氮量有利于提高穗粒数,但过多(20kg/667m2)或过少(10kg/667m2)施氮均不利于穗粒数和千粒重的提高,而导致减产。而对于水分生产效率,表现为增加施氮量提高水分生产效率,而施氮量过高(20kg/667m2)造成小麦贪青晚熟,导致水分生产效率下降。因此,小麦生产中可以通过施用氮肥和控制花后土壤水分含量技术,调控小麦水分生产效率和产量,实现高产高效。  相似文献   
2.
【目的】探究不同水源磁化处理对生菜光合特性等生理生化和产量的影响。【方法】在日光温室条件下,以意大利生菜为供试对象,采用随机区组设计,设置2个因素:磁化(M)和灌溉水源(T),磁化设置未磁化处理(M0)和磁化处理(M1)2个水平,灌溉水源设置淡水(T1)、再生水(T2)、微咸水(T3)3个水平,共6个处理。通过盆栽试验研究了3种水源磁化处理对生菜净光合速率、抗氧化酶活性、矿质元素及产量等的影响。【结果】不同水源磁化处理灌溉效果有所差异。生长中期,M1T1、M1T2处理分别较M0T1、M0T2处理的净光合速率显著提高11.16%、14.73%。3种水源磁化处理灌溉的超氧化物歧化酶、过氧化物酶、过氧化氢酶活性显著提高12.77%~23.09%。M1T1、M1T2处理分别较M0T1、M0T2处理的生菜叶片氮质量分数显著提高7.71%、6.83%,生菜产量分别显著提高9.42%、10.15%,但M1T3与M0T3处理的生菜产量无显著差异。不同水源磁化处理的生菜叶片P、Ca、Mg、Na、K质量分数有不同程度的提高,水分利用效率提高5.03%~11.65%。【结论】磁化水灌溉有利于生菜光合等生理生化活动,提高产量和水分利用效率,淡水和再生水磁化效果优于微咸水。  相似文献   
3.
The brown planthopper (Nilaparvata lugens Stål) is one of the most destructive pests of rice crops in Asian countries including China, Vietnam, Thailand, etc. Evolution of resistance in this pest insect to isoprocarb, buprofezin, pymetrozine, imidacloprid and other neonicotinoid insecticides has been reported. In order to investigate the current status of resistance to commonly used insecticides, nine field populations of N. lugens were collected from Central China, East China and South China, and resistance to insecticides was monitored from 2009 to 2012. All the 9 field populations collected in 2012 had developed extremely high resistance to imidacloprid, with resistance ratios (RR) ranging from 209.3 to 616.6. Resistance to imidacloprid was much higher in 2012 than in 2009. The RR of thiamethoxam varied from 17.4 to 47.1, and the RR of nitenpyram varied from 1.4 to 3.7 in 2012. Of the 9 field populations, six populations showed higher resistance to nitenpyram in 2012 than in 2011. RR for buprofezin varied from 110.1 to 221.6 in 2012 whereas resistance was at a medium level (RR 20.4 ∼ 39.4-fold) in 2009. RR for pymetrozine ranged from 34.9 to 46.8 in 2012. As for isoprocarb, RR ranged from 21.7 to 38.1 in 2012. The obvious increase in resistance to widely applied insecticides indicates that insecticide resistance management strategies are urgently needed to prevent or delay further increase of insecticide resistance in N. lugens.  相似文献   
4.
G. Q. Zhang  Y. He  L. Xu  G. X. Tang  W. J. Zhou 《Euphytica》2006,149(1-2):169-177
Summary The results showed that the F1 genotype from the cross (Brassica napus cv. Zheshuang 758 × cv. Z-4115) had good response to embryogenesis, and their embryo yield and rate of plant regeneration reached 69.8 embryo/bud and 46.9%, respectively. Characters from the doubled haploid (DH) populations in B. napus were analyzed and it was showed that the means of each agronomic trait were between their parents, but they were nearer to the paternal in 6 agronomic traits (plant height, branch position, number of pods in the main raceme, length of pod, number of pods/plant and number of seeds/pod). The number of genes controlling each agronomic trait was analyzed based on the DH populations. The results showed that the number of genes controlling number of pods in the main raceme was the highest (15.6), and the least number of genes was involved for stem width (only 7.9). According to estimated coefficients of skewness and kurtosis of the traits tested, gene interaction was found to be absent for stem width, plant height, length of main raceme, number of primary and secondary branches, pod density in the main raceme and seed weight/plant. Complementary interaction was also observed in five agronomic traits (number of pods in the main raceme, length of pod, number of pods/plant, number of seeds/pod and 1000-seed weight). A significantly positive correlation was observed between seed yield/plant and four agronomic traits (length of main raceme, length of pod, number of pods/plant and 1000-seed weight). The experiment also showed that the erucic acid, glucosinolate, oil and protein contents of DH populations were 34.23%, 87.09 μmol/g, 44.09% and 42.67%, respectively. The numbers of genes controlling each quality trait were 7.8, 9.7, 9.4 and 8.7, respectively. Partial correlations between the seed quality traits and the agronomic characters of DH populations were analyzed. In this experiment, the partial correlations among seed quality traits were also analyzed and it was found that the oil content had a negative correlation with the other three seed quality traits.  相似文献   
5.
为对棉花品种进行特异性鉴别,利用SSR(simple sequence repeats)方法对参加国家区试的2个棉花品种(A1、A2)的遗传特异性进行了研究。同时,根据棉花植物新品种DUS(distinctness,uniformity and stability)测试指南,对上述2份材料进行了20个农艺性状的特异性分析。结果表明,2个棉花品种的指纹图谱相同且田间性状相似,是同一个品种。该方法弥补了以往只考虑利用SSR鉴定品种的特异性而没有考虑田间农艺性状鉴定与SSR鉴定差异的不足,可以更客观地反映品种的特异性。  相似文献   
6.
The contribution percentage of inherent soil productivity (CPISP) refers to the ratio of crop yields under no-fertilization versus under conventional fertilization with the same field management. CPISP is a comprehensive measure of soil fertility. This study used 1 086 on-farm trials (from 1984–2013) and 27 long-term field experiments (from 1979–2013) to quantify changes in CPISP. Here, we present CPISP3 values, which reflect the CPISP states during the first three years after site establishment, for a series of sites at different locations in China collected in 1984–1990 (the 1980s), 1996–2000 (the 1990s), and 2004–2013 (the 2000s). The results showed that the average CPISP3 value for three crops (wheat, rice, and maize) was 53.8%. Historically, the CPISP3 in the 1990s (57.5%) was much higher than those in the 1980s (50.3%), and the 2000s (52.0%) (P≤0.05). Long-term no-fertilization caused CPISP levels to gradually decline and then stabilize; for example, in a mono-cropping system with irrigation, the CPISP values in Northwest and Northeast China declined by 4.5 and 4.0%, respectively, each year for the first ten years, but subsequently, the CPISP values stabilized. In contrast, the CPISP for upland crops in double-cropping systems continued to decrease at a rate of 1.1% per year. The CPISP for upland-paddy cropping decreased very slowly (0.07% per year), whereas the CPISP for paddy cropping decreased sharply (3.1% per year, on average) for the first two years and then remained steady during the following years. Therefore, upland crops in double-cropping systems consume the most inherent soil productivity, whereas paddy fields are favourable for maintaining a high level of CPISP. Overall, our results demonstrate a need to further improve China's CPISP3 values to meet growing productivity demands.  相似文献   
7.
榕树粉蚧是一种重要的入侵害虫,对果蔬和园林植物存在巨大的潜在威胁。为满足开展检疫处理、防控、生物学和生理学等研究的需要,本研究以南瓜为饲养材料,在室温条件下(26±1℃,RH 65%±5%)观察榕树粉蚧的生物学特性与发育历期。结果表明,榕树粉蚧具有典型的雌雄二型现象。雄虫主要经历卵、12龄若虫、预蛹、蛹、雄成虫阶段;雌虫经历卵、13龄若虫、雌成虫(产卵前期、产卵期)阶段,其发育历期(mean±SE)分别为8.51±0.03 d、9.79±0.09 d、7.46±0.10 d、6.52±0.11 d、12.13±0.11 d、8.16±0.11 d,世代发育历期54.4±0.25 d。雌成虫产卵量483651粒,平均550.87±51.07粒,卵期711 d,孵化率95.19%±0.75%。该研究结果表明榕树粉蚧繁殖能力强,应高度重视其防控工作。  相似文献   
8.
棉叶螨也称为棉红蜘蛛,属蛛形纲叶螨科,其种类繁多,分布范围广,世代周期短,是为害棉花的一类重要害螨。目前,用于防治棉叶螨的化学药剂主要是神经毒剂及呼吸抑制剂2大类,且棉叶螨对多数药剂产生了不同程度的抗性,以二斑叶螨Tetranychus urticae为首的植食性害螨已成为世界上抗药性最严重的节肢动物之一。美国路易斯安那州棉田二斑叶螨种群对阿维菌素产生了1 415倍抗性,而国内棉花上棉叶螨主要对有机磷类药剂产生了较强抗性,最高为467倍。棉叶螨产生抗药性的机制主要涉及靶标突变及解毒代谢增强,其中靶标突变主要涉及乙酰胆碱酯酶、电压门控钠离子通道和谷氨酸门控氯离子通道等;细胞色素P450单加氧酶、羧酸酯酶和谷胱甘肽S-转移酶等一种或多种解毒酶共同参与害螨对化学药剂的解毒代谢。该文主要从棉叶螨的种类及分布、用于防治棉叶螨的化学药剂、棉叶螨的抗药性现状、抗药性机制解析和抗药性治理策略5个方面进行阐述,提出因地制宜的抗药性治理策略,旨在为棉叶螨的田间防治提供指导。  相似文献   
9.
为了解气候变暖对我国小麦条锈病菌越夏的影响,本研究基于2002—2012年间691个气象站点7、8月份连续最热10 d均温低于越夏临界温度22℃或23℃的年概率,比较了ArcGIS中反距离权重法、局部多项式插值法、径向基函数法和普通克里格法4种插值方法对我国小麦条锈病菌越夏区划的影响,采用指数模型和球状模型下普通克里格插值法进行了条锈病菌越夏区划;以2002—2012年间7、8月份连续最热10 d的平均温度均值作为区划指标,利用ArcGIS的指数模型和球状模型下普通克里格法进行了高程插值。结果表明,2002—2012年每年的7、8月份连续最热10 d均温低于越夏临界温度的年概率在20%以上的地区可以认为是我国小麦条锈病菌的越夏区,年概率在5%~20%的区域可以视为越夏过渡区,年概率在5%以下的地区可以视为不太适合小麦条锈病菌越夏的区域。表明小麦条锈病菌越夏区仍主要集中于我国西北、川西北地区,但越夏范围有一定缩减。  相似文献   
10.
为实现从传统育种向以基因(或基因组)信息为依据的分子育种转型,研究油菜功能基因组是重要的基础和前提。本文综述了近几年异源四倍体油菜功能基因组研究进展,重点概述了油菜雄性不育、产量、品质和养分代谢等重要性状的功能基因研究结果,并针对我国油菜功能基因组研究和生产育种现状,提出推进功能基因组研究成果应用于育种体系,培育我国自主的高效型油菜重大品种的有关建议,以增强我国生物技术育种的国际竞争力。  相似文献   
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