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1.
克隆获得桃蚜电压门控钠离子通道基因cDNA序列,明确钠离子通道的典型特征,为研究桃蚜抗性分子机理奠定基础。采用实验技术主要有RT-PCR和PCR,克隆桃蚜钠离子通道基因cDNA序列,利用相关软件对其序列进行生物信息学分析。克隆得到两段cDNA序列MpNav-1(NCBI登录号:MN124170)和MpNav-2(NCBI登录号:MN176136)。MpNav-1长度为2945 bp,包括2877 bp的完整开放阅读框,共编码958个氨基酸;MpNav-2长度为3546 bp,包括3486 bp的完整开放阅读框,共编码1161个氨基酸。MpNav-1和MpNav-2共同组成桃蚜的钠离子通道α亚基,MpNav-1包含同源结构域Ⅰ和同源结构域Ⅱ,MpNav-2包含同源结构域Ⅲ和同源结构域Ⅳ。同源比对发现,桃蚜与豌豆蚜和高粱蚜钠离子通道基因相似度分别高达97.67%和97.65%,所克隆序列包含昆虫钠离子通道α亚基典型特征,具有MFM模块,并含有蚜虫类钠通道特有模块DENS。成功地克隆桃蚜钠离子通道基因,为阐明其对拟除虫菊酯类药剂产生靶标抗性的分子机制奠定基础。  相似文献   
2.
Little is known about the effect of fertilization on the N uptake of sunflowers. A 42 factorial trial with 0, 60, 120 and 180 kg N ha−1 and 0, 15, 30 and 45 kg P ha−1 was conducted over three years. The N content and concentration of leaves, stems and capitula were determined at three growth stages. High N levels increased the N content and concentration of all plant parts at all growth stages sharply. High P levels increased the N content of all plant components through better growth. P has an inconsistent effect on N concentration but tended to decrease it. After flowering the crop assimilated 20 to 25 % of the total N. This implies that N applied can still be applied and utilized by the crop at a late stage. This should be substantiated by further research.  相似文献   
3.
Root development of sugar beet plants on a sandy loess site with regard to nitrogen nutrition.
Root development of sugar beet plants in a sandy loess soil (Haplic Phaeozem) was observed from the early seedling stage up to harvest by measuring at first the greatest vertical and lateral extension of the root systems of single plants and later the rooting density of the whole plant stands (auger method, profile wall method).
During the seedling stage not only the subsoil, but also large parts of the topsoil between the plants remained unoccupied by the root systems. In this phase the greatest lateral extension of single roots reaches nearly the length of the greatest leaf of the plant. With the closure of the canopy the rooting density in the topsoil accounts to 1–2 cm cm−3.
In summer roots penetrate to a depth of 100–150 cm with rooting densities of 0.1 to 1 cm - cm−3. Thus, the plants gain not only access to water reserves, but sometimes meet remarkable amounts of nitrate which under the relatively dry conditions of the region tends to accumulate in 60–120 cm depth and – when taken up by the beet plants in the late stage of growth – affects crop quality negatively.  相似文献   
4.
盐分对碱茅种子发芽影响的机制   总被引:15,自引:0,他引:15  
耐碱茅种子在盐(NaCl与Na2SO4)及干旱(PEG-6000模拟)胁迫下发芽及其机制的比较研究表明,种子发芽率随溶液渗透势的降低而下降,在等渗条件下三种溶液中的发芽率次序为Na2SO4>NaCl>PEG。NaCl与Na2SO4主要通过影响种子吸水量及对膜的毒性影响发芽,根据相关及通径分析结果,其机制为:(1)溶液渗透势及Na+浓度决定的种子吸水对发芽的直接正效应(通径系数0.73);(2)溶液Na+浓度引起的膜毒性对发芽的直接负效应(-0.51);(3)种子从溶液中吸收Na使种子吸水增加对发芽的间接正效应(0.30)及使膜毒性增大对发芽的间接负效应(-0.24)。  相似文献   
5.
按 0 .2 m g/ kg单剂量对健康仔猪肌注亚硒酸钠溶液后 ,研究了其在血液中的药物代谢动力学。结果表明 :血液动力学特征符合一级吸收二室开放模型 ,其理论方程为 :C=0 .1773e- 0 .0 548t+0 .0 72 7e- 0 .0 0 2 6 t- 0 .2 5 0 0 e- 1 3.882 3t。主要动力学参数为 :吸收半衰期 (t1 /2 Ka)为 0 .0 4 99h;达峰时间 (tmax)为 0 .4 2 37h;消除半衰期 (t1 /2β)为 2 71.9311h;曲线下面积 (AU C)为 31.72 6 0 m g/ L·h;表观分布容积 (Vd)为 2 .4 72 1L/ kg。根据单剂量药动学参数 ,计算多剂量给药参数 ,为临床治疗制定给药方案。先导剂量 (D* )为 0 .5 0 89m g/ kg,维持剂量 (D0 )为 0 .2 mg/ kg,给药间隔 (τ)为 192 h,平均稳态血药浓度 (c)为 0 .16 5 2 mg/ L。  相似文献   
6.
Field experiments were conducted at Tamil Nadu Rice Research Institute, Aduthurai, India, during the wet seasons of 1992 and 1993 to study the effect of full and partial substitution of fertiliser N with green manure N (Sesbania rostrata) on nitrogen uptake, yield attributes and yield of rice. The experiment consisted of eight treatments with two levels of N (100 and 200 kg ha−1) and three sources of N application viz., fertilizer, integrated (1:1 fertilizer and green manure N) and green manure N compared to the recommended practice (150 kg fertilizer plus 6.25 t ha−1 (72 kg N) green manure) and a no N control. Nitrogen application markedly increased the N uptake. Combined use of the two N sources at 200 and 222 kg N ha−1 and of single fertilizer N at 200 kg N ha−1 recorded the maximum N uptake, increased the yield attributes such as number of panicles per unit area, weight per panicle, number of total and filled grains per panicle and test weight. At 200 kg N ha−1 full substitution of N by green manure reduced the grain yield but only partial substitution of N by green manure resulted in almost similar yield as single fertilizer N. Thus 200 kg N ha−1 applied in equal proportions of fertilizer and green manure N can be recommended for medium duration rice cultivars.  相似文献   
7.
Application and crop safety parameters for soil fumigants   总被引:2,自引:0,他引:2  
Metam sodium alone and in combination with 1,3-dichloropropene plus 17% chloropicrin (1,3-D+C-17) were evaluated under polyethylene mulch film as alternatives for methyl bromide in tobacco and tomato transplant production for both efficacy against pests and crop safety. Eight different weed species, 10 genera or species of fungi and several agronomic criteria were evaluated at three different sites. In general both the metam sodium alone and in combination with 1,3-D+C-17 were highly efficacious when compared to methyl bromide. Short polyethylene film retention times and short aeration times resulted in poor stands and poor crop vigor while relatively long polyethylene film retention times and long aeration periods at the same rates typically resulted in high stand counts and vigor. Combination treatments were more phytotoxic to germinating seed of tobacco and tomato. Vigor and stand counts of the seedlings were higher as aeration time increased, suggesting phytotoxic residues dissipate with time. Method of application of metam sodium, either injected with chisels or sprayed onto the soil surface and incorporated with a tractor-powered tiller alone or co- applied with 1,3-D+C-17 chisel injected, did not affect the efficacy of the treatments. Caution regarding phytotoxicity must be exercised when seeding into soil fumigated with metam sodium alone or combined with 1,3-D+C-17. Additional work will be required to establish safety periods required prior to transplanting crops into fumigated soil.  相似文献   
8.
杨泽新  蔡维湘 《草业科学》1995,12(2):17-21,24
通过对放牧山羊的牧草适口性,嗜食性和采食率及其相互关系的分析,表明山羊放牧对灌丛草地的植物适口性、嗜食性比率和采食率均以灌木嫩枝叶,中禾草和苔草属植物较优。季节性规律为:春季山羊喜哺食灌木嫩枝叶,灌木嗜食性比率较高,采食率也较高,夏季山羊喜草本植物,草本植物的嗜食性比率高于灌木,秋季山羊较喜啃食灌木枝叶,嗜食性比率灌木高于草本植物,采食率低于春季,灌木采食率高于草本植物。  相似文献   
9.
A field experiment was set up in 1988 to study the development of rhizomania disease of sugar beet at different inoculum levels of beet necrotic yellow vein virus (BNYVV) in soil. Five, tenfold different, inoculum levels were created by addition of the approximate amounts of 0, 0.5, 5, 50 and 500 kg infested soil per ha (the latter corresponding to 0.01% v/v calculated to the tillage layer). A drip irrigation treatment was applied to study the influence of soil moisture on disease. Susceptible sugar beet, cv. Regina, was grown for three consecutive years.In the first year, root symptoms were not observed, but BNYVV-infected plants were detected by ELISA in low numbers at all inoculum levels at harvest. After late drilling in 1989, high numbers of infected plants, up to 90–100% in plots with the highest inoculum level, were detected already in June. Root symptoms were also observed from June onwards. In both these years disease incidence increased in time and was significantly influenced by the initial inoculum level. In the third year, the whole field was heavily diseased, and only for the non-irrigated plots incidence differed for different initial inoculum levels. The expression of symptoms by BNYVV-infected plants was influenced by initial inoculum level, thus by the amount and timing of primary infection.Root weight at harvest was not affected, but sugar content decreased with increasing inoculum level already in 1988, leading to a reduction in sugar yield of 10% at the highest inoculum level. In 1989, both root weight and sugar content decreased progressively with increasing inoculum level, resulting in sugar yield reductions of 11–66% (down to approximately 3000 kg ha–1) for low to high inoculum levels compared to the control. As the control plots became contaminated, all yields were low in 1990, still showing a decrease with increasing inoculum level in the non-irrigated plots, but an overall mean sugar yield of 3323 kg ha–1 for the irrigated ones.Sodium and -amino nitrogen content of the root, additional quality parameters determining extractability of sucrose, showed an increase and decrease, respectively, with increasing initial inoculum level already in the first year. The relative differences in contents compared to those from the control were largest for Na content. A significant negative correlation was found between Na (mmol kg–1 root) and sugar content (% of fresh weight); linear for 1988, exponential for 1989 and 1990.In spring 1989, the infestation of individual plots was assessed using a quantitative bioassay estimating most probable numbers (MPNs) of infective units of BNYVV per 100 g dry soil. The relationship between the MPns determined and root weight, sugar content and sugar yield at harvest could be described by Gompertz curves. The increase in disease incidence with increasing MPN in 1989 was adequately fitted with a logistic equation.  相似文献   
10.
为明确温度和外源砷对水稻生长发育的影响,选取江苏地区常见的8个水稻品种为试验材料,通过添加不同浓度外源砷[0(As0)、0.5(As0.5) 和1 mg?L-1(As1)]和模拟不同温度[白天/夜晚分别为30 ℃/25 ℃(T0)和35 ℃/30 ℃(T1)],在人工气候箱内进行了发芽和苗期培养试验,并分析了8个品种水稻种子萌发、幼苗生长及砷含量状况。结果表明,外源砷对水稻的芽长和活力指数具有抑制作用,与对照(T0As0)相比,T0As1处理使不同品种水稻的芽长和活力指数分别降低13.69%~43.34%和28.14%~52.88%。 而温度对水稻种子萌发的影响与水稻品种有关。在T1处理下,盐两优1618的发芽率、芽长和活力指数均优于其他品种。温度和外源砷的共同作用显著降低了不同品种水稻的芽长(P<0.05)。与T0As0相比,T1As1使水稻芽长显著降低5.66%~43.34%。水稻根长和根系活力显著受到温度和外源砷的单一因素的影响。与T0As0相比,T0As1处理使水稻根系活力降低3.01%~58.21%。温度和外源砷的共同作用抑制了水稻根长和根系活力,其中T1As1使水稻根系活力显著降低53.80%~89.01%。不同品种水稻的苗高和根系活力在相同温度或外源砷处理下具有显著差异(P<0.05),其中盐两优888的苗高和根系活力均处于较高水平。水稻茎叶砷含量在外源砷处理下显著增加,在增温处理下却降低。与单一的砷处理相比,温度和外源砷的共同作用降低了水稻茎叶的砷含量。综上可知,温度和外源砷影响水稻的生长及砷吸收,但水稻生长状况具有明显的品种间差异,其中盐两优888和盐两优1618在增温和外源砷共存条件下的种子萌发和生长状况优于其他水稻品种。  相似文献   
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