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排序方式: 共有1343条查询结果,搜索用时 203 毫秒
1.
月季组织培养过程中的影响因素   总被引:12,自引:0,他引:12  
综述了月季组织培养过程中的影响因素,重点介绍了植物生长调节剂、外植体、培养基和培养条件等对月季试管苗生长的影响。同时分析了月季组培影响因素研究中存在的不足,提出对多因素、复杂因子共同影响行为的研究和探讨是今后月季组培影响因素研究中的重点内容。  相似文献   
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本试验在黄瓜上叶面喷施丰州牌丰产素,其浓度分别为2000倍、4000倍和6000倍。试验结果表明,3种浓度对黄瓜的生长势都有增强的作用,并对早期产量有较大的提高。其中2000倍液对早期产量的增产幅度最大,比对照提高42.81%。并且对黄瓜的营养成份有不同程度的影响,其中6000倍液对维生素c和含糖量都有较大的提高,因此,对黄瓜品质的改进有较好的效果。  相似文献   
4.
In a field trial conducted during 1992–93 and 1993–94, the effect of basal (B) nitrogen (N) (45 and 60 kg N ha−1) and foliar application (F) of water (W) or 10 kg N ha−1 and 400 or 600 ppm ethrel (E) (2-Chloro ethyl phosphonic acid) at 70 days after sowing was studied on leaf area index and dry mass at 90 days and pod number per plant, seeds per pod, 1000 seed weight, seed yield, oil content and oil vield at harvest of mustard ( Brassica juncea L. Czern & Coss.) cv. T-59. Recommended basal (B) application of 90 kg N ha (BN90) was used as control. On the basis of 2 year data it was found that basal application of 60 kg N and foliar spray of 10 kg N ha −1 and 600 ppm ethrel gave higher values for growth and yield characteristics and enhanced seed yield and oil yield by 12.5 and 14.8%, respectively over control BN90.  相似文献   
5.
20%多效唑·甲哌 FEE7 微乳剂防止小麦倒伏和增产机理研究   总被引:1,自引:0,他引:1  
冬小麦二棱期喷施植物生长调节剂20%多效唑·甲哌鎓微乳剂375 mL/hm2,可以显著抑制茎秆基部节间伸长,增加各节间充实度,其中赤霉素(Gas)和生长素(IAA)降低,可显著增强小麦抗倒伏能力和降低田间倒伏率.处理还协调了穗数、穗粒数和粒重的关系,增产幅度6.2%~28.6%.增产原因可能在于促进籽粒灌浆强,增加籽粒中内源Gas、IAA、细胞分裂素(CTKs)的水平,增强了籽粒库活性,同时促进茎叶中干物质向籽粒运转.  相似文献   
6.
20%多效唑·甲哌Wong微乳剂防止小麦倒伏和增产机理研究   总被引:2,自引:0,他引:2  
冬小麦二棱期喷施植物生长调节剂20%多效唑·甲哌鎓微乳剂375 mL/hm2,可以显著抑制茎秆基部节间伸长,增加各节间充实度,其中赤霉素(Gas)和生长素(IAA)降低,可显著增强小麦抗倒伏能力和降低田间倒伏率.处理还协调了穗数、穗粒数和粒重的关系,增产幅度6.2%~28.6%.增产原因可能在于促进籽粒灌浆强,增加籽粒中内源Gas、IAA、细胞分裂素(CTKs)的水平,增强了籽粒库活性,同时促进茎叶中干物质向籽粒运转.  相似文献   
7.
植物生长调节剂在茄果类蔬菜上的应用进展   总被引:4,自引:0,他引:4  
概述了植物生长调节剂的作用和当前茄果类蔬菜作物栽培中常用生长调节剂的种类、主要作用及其调控生理基础,指出了植物生长调节剂使用应注意的问题及其应用前景。  相似文献   
8.
Butter  N. S.  Singh  Gurmeet  Dhawan  A. K. 《Phytoparasitica》2003,31(2):200-203
An insect growth regulator (IGR), lufenuron (Match 5EC), was tested for its toxicity toHelicoverpa armigera on cotton. Potency of the IGR against the larval stage of the pest was demonstrated with respect to larval instars; the LC90 values of 1st, 2nd, 3rd, 4th and 5th instar larvae were 5.63, 7.89, 8.03, 11.39 and 14.76 mg a.i.l −1, respectively. However, different larval instars did not differ significantly with respect to LC50 and LC10. IGR-treated larvae had swollen heads and were significantly smaller (1.5–2.3 mm) than the untreated control (2.9 mm). Larval weight was significantly reduced from 190 mg in the control to 50–70 mg in the lufenuron treatment. IGR treatment in the larval stage significantly affected both pupal length and pupal weight. Pupal duration of the test insect was significantly extended by IGR treatment. Pupal deformities, including an inability to shed the last larval skin and formation of larval-pupal intermediates, occurred following treatment. A significant reduction in adult emergence was recorded. In addition, abnormalities in the form of development of cavities in the forewings of adult were evident. A significant decline in fecundity was noted in the studies. http://www.phytoparasitica.org posting Feb. 3, 2003.  相似文献   
9.
Possibilities to improve maize harvest index and nutrient utilization efficiency by application of plant growth regulators were investigated. In container experiments, the effects of different growth regulators on the development of the maize (Zea mays L.) cultivars Pioneer 3906 and Fabregas were tested. Paclobutrazol (PAC) and chlorocholine chloride (CCC), two inhibitors of gibberellin biosynthesis, as well as gibberellic acid (GA3) were applied at growth stage V5. Three weeks after application of PAC, shoot growth of both maize cultivars was strongly affected with a significant decrease in plant height in the PAC treatment by 44% and 36% for Pioneer 3906 and Fabregas, respectively. The growth‐retarded plants had higher leaf areas and reduced transpiration rates. The higher shoot growth after GA3 application was accompanied by a reduction in leaf area and an increase in transpiration rate during 1 week before anthesis. CCC treatment showed no significant effects on plant height, leaf area and transpiration rate. The PAC‐treated cultivar Pioneer 3906 produced several cobs per plant, which were mainly barren at maturity. However, PAC application to Fabregas resulted in just one cob per plant with good kernel development and a grain yield, which was not significantly reduced in comparison with the control. With this similar grain yield in combination with a straw yield decrease of 32%, the harvest index was significantly improved by 12%. In addition, with PAC‐treated Fabregas plants, a 19% increased water use efficiency of the grain (WUEgrain) during the critical period of kernel setting was achieved. In this maize cultivar, CCC application also improved harvest index by 5%, but no effect on WUEgrain occurred. GA3 treatment decreased harvest index of both maize cultivars, and it either reduced WUEgrain (Pioneer 3906) or showed no effect (Fabregas). Utilization efficiencies of N, P and K were not increased with growth regulator application, even in the PAC‐treated Fabregas plants with a significantly improved allocation of assimilates to the grain, mirrored by the higher harvest index. The results indicate that fertilizer applications must be adjusted to the reduced demand of growth‐retarded plants, most likely leading to higher nutrient utilization efficiencies.  相似文献   
10.
冠菌素对玉米抗倒伏能力及产量的影响   总被引:2,自引:0,他引:2  
在田间条件下,以玉米品种先玉335和郑单958为材料,在八展叶时于叶面喷施不同浓度 (0、0.01、0.1、1和10 μmol/L) 冠菌素 (COR),研究了COR对玉米抗倒伏能力及产量的影响。结果表明:经10 μmol/L COR处理后,先玉335的株高和穗位高分别比对照降低了7.0%和19.9%,郑单958分别降低了20.8%和18.2%,单株叶面积、节间抗折断力、穗下第8~14节间长度和节间最大直径与对照间亦差异显著。且随着COR浓度的增加,先玉335和郑单958的株高、穗位高、单株叶面积和穗下第8~14 节间长度均逐渐降低;第8~14节间最大直径和节间抗折断力逐渐增大。经1 μmol/L COR处理后,2个供试玉米品种的产量、穗数、穗粒数和千粒重较对照均有所增加,其中先玉335的产量较对照增加了9.9%,郑单958增加了4.3%。综上所述,COR可以提高玉米的抗倒伏能力,不同品种玉米对COR的敏感性不同,其中先玉335抗倒伏的最适COR浓度为10 μmol/L,郑单958抗倒伏的最适COR浓度为1 μmol/L。  相似文献   
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