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1.
PEG引发三倍体无籽西瓜种子萌芽研究初报   总被引:3,自引:3,他引:0  
为了探索一条能大批量处理无籽西瓜种子,有效提高种子活力的途径,应用水势0、-0.2、-0.6和-1.2MPa的聚乙二醇(PEG-6000)溶液对三倍体无籽西瓜种子进行3、6、9、12h引发处理,并与常规萌发条件下的种子萌芽情况进行比较分析。结果表明:(1)各种水势的PEG-6000溶液引发对无籽西瓜种子发芽各项指标均没有显著影响。(2)3h引发处理相对于其他引发时间处理,能最大程度地提高无籽西瓜种子发芽能力,在发芽率、发芽势、发芽指数和活力指数的影响上均存在明显差异,这与常规生产上无籽西瓜浸种时间结果一致。  相似文献   
2.
本研究以新疆特有濒危保护植物矮沙冬青(Ammmopiptanthus nanus(M.Pop.)Chengf)的种子为材料,用不同渗透势浓度的聚乙二醇(PEG6000)模拟干旱胁迫,探讨干旱胁迫对矮沙冬青种子发芽率、平均发芽速度、胚轴和胚根长度及发芽指数、活力指数的影响。结果表明,不同浓度PEG胁迫处理均降低了种子的发芽率,延缓了矮沙冬青种了萌发进程;种子的发芽率、发芽指数和活力指数均随胁迫强度的增加呈明显下降趋势。当-1.20MPa的PEG胁迫处理的种子在试验结束时仍未能萌发,表明-1.20MPa是矮沙冬青种子萌发的临界水势。PEG模拟十旱胁迫中,当PEG处理为-0.2MPa时,虽然最终发芽率与对照一样,但其胚根、胚轴的长度都比对照短,说明矮沙冬青胚根、胚轴的生长比发芽率对干旱胁迫更敏感。干旱胁迫可能是导致矮沙冬青种群天然更新能力弱的原因之一。本研究将为矮沙冬青种质资源的保护和种群的恢复提供科学依据。  相似文献   
3.
基于种子萌发试验,测定了10℃低温对实葶葱种子发芽的影响及浓度为0%、10%、15%、20%、25%、30%的PEG处理对实葶葱种子低温吸胀1、2、3、5、7 d的缓解作用.结果表明:10℃低温吸胀持续时间超过临界时间(1 d)时就会抑制实葶葱种子的萌发.10℃低温吸胀通过PEG的渗透调节,可显著改善实葶葱种子的萌发,其中以处理浓度15%时效果最好,并随着低温吸胀时间的延长PEG的作用越明显.各浓度PEG处理10℃低温吸胀的实葶葱种子1d时种子萌发效果最佳.  相似文献   
4.
大豆种子发芽期耐旱性鉴定的适宜PEG-6000浓度筛选   总被引:2,自引:0,他引:2  
以抗旱性不同的3个大豆品种(湘豆3号、Lee68和宁镇1号)为试材,研究了不同浓度(5%、10%、15%、20%、25%和30%)的PEG-6000模拟发芽期干旱胁迫对大豆种子发芽、子叶苗膜脂过氧化以及渗透调节物质含量的影响。结果表明:10%以下的PEG-6000能起引发作用,促进大豆种子的萌发,显著提高发芽势和发芽率;随着PEG-6000浓度的升高,大豆种子的发芽明显受抑制,当PEG-6000浓度大于25%时抑制更明显,发芽势、发芽率、发芽指数和简易活力指数显著下降;随着PEG-6000浓度的升高,大豆子叶苗中的丙二醛(MDA)、脯氨酸(Pro)、可溶蛋白和可溶性糖含量显著增加,PEG-6000浓度在15%~25%间增加幅度最大,PEG-6000浓度小于15%或大于25%时增加不明显。综合种子发芽、子叶苗的膜脂过氧化程度以及渗透调节物质含量的变化,可初步确定室内采用PEG-6000浸种法模拟干旱胁迫鉴定大豆发芽期耐旱性的适宜浓度为20%~25%。  相似文献   
5.
以网片断裂强力、网片断裂伸长率和网片断裂强力保持率为指标,研究了不同K型网目对渔用乙纶网片拉伸力学性能的影响。结果表明:K型网目下网目内径之比在1.01~1.20时,网片断裂强力随着网目内径之比的增大而下降,两者呈密函数相关。同规格线的网片,K型网目下且两网目内径之比相同时,小规格网目尺寸的网片断裂强力损失小,断裂伸长率高,而大规格网目尺寸的网片断裂强力损失大.断裂伸长率低。  相似文献   
6.
A grazing experiment, conducted for 90 days compared the effect of polyethylene glycol (PEG) supplementation on postpartum reproductive traits and productivity of suckling goats grazing Acacia cyanophylla Lindl. A total of 54 native adult goats (34.4 ± 5.49 kg) were randomly allocated, 24 h after kidding, to 2 treatment groups balanced for age and the number of reared kids. Goats in both treatment groups designed C and PEG grazed in acacia for approximately 5 h every day and received each on daily basis 0.3 and 0.4 kg of hay and concentrate respectively. In addition, goats in treatment PEG were initially supplemented with 10 g/day of PEG and this supplement was then increased to 20 g /goat/day over the last 60 days of the trial. Goats receiving PEG tended (P > 0.05) to spend more time browsing acacia than those in treatment C. There were no treatment effects on live weight change of the goats, growth of their kids until 90 days of age or composition of their milk in terms of fat, protein and urea contents. Similar proportions of 74.1 and 77.8% of goats resumed postpartum ovulation with a mean ovulation rate of 1.50 ± 0.61 and 1.67 ± 0.47 (P > 0.05) in respectively the PEG and C treatments. PEG supplementation was associated with an increase (P < 0.05) in ovulation rate at the second postpartum ovulation occurring approximately 27 days after the application of the nutritional treatments (1.76 ± 0.60 versus 1.25 ± 0.45); 9 of the 13 goats ovulating in the PEG treatment were bearing more than one corpus lutuem in comparison to only 3 out of 12 females in the C group (P < 0.05). The likely increased availability of proteins in the PEG receiving goats could explain their higher ovulation rate.  相似文献   
7.
Degradation and decomposition of cellulose were studied in an acid-catalyzed solvolysis treatment of biomass using polyethylene glycol (PEG) and ethylene carbonate (EC). The solvolysis reaction was followed by a typical reaction system of wood liquefaction that uses sulfuric acid catalyst at 140° or 150°C at atmospheric pressure. The methods of fractionation and chemical analysis of the degraded cellulose in the solvolyzed product are discussed. The solvolyzed product was separated into several fractions, and they were hydrolyzed to release glucose and levulinic acid to determine the quantity of glucosides and levulinates in the solvolysis product. The data clearly showed that the solvolysis reaction had the same mechanism when using PEG or EC. Degradation of cellulose leads to the formation of glucosides, which then decompose, resulting in a levulinic acid structure, and producing a water-insoluble fraction. The conversion rates of both glucosides and levulinates strongly depend on the reaction conditions of the solvolysis. In particular, EC promotes faster conversion of the reactions. The method discussed here is a chemical analytical technique for characterization of the products of wood liquefaction.  相似文献   
8.
《保鲜与加工》1997,(6):28-34
This paper presents properties.advantages and useable rane of polyethylene pipe in City Gas Engineering.  相似文献   
9.
以老化油菜种子为材料,研究聚乙二醇(PEG)渗透处理对种子过氧化及细胞膜透性的影响.在10—15℃下,老化油菜种子经20%PEG6000渗透处理后,发芽率和发芽指数显著提高,种子的过氧化物含量及脂质过氧化水平降低,细胞膜透性下降,种子抗逆性明显提高.  相似文献   
10.
The composition of the soil atmosphere is an indicator of biological processes, and soil CO2 gradients have been used to estimate CO2 efflux from the surface. Soil atmosphere samplers, constructed with gas-permeable materials, have been used to quantify soil CO2 concentrations. The type of material used can influence the perceived real-time concentrations of CO2 in the soil. Previous works have not directly compared different types of materials under the same conditions. The objective of this study was to determine the diffusion coefficient (D) and time of 95% equilibrium (teq) of CO2 through several materials, and to evaluate the effect of long-term soil burial (183 days) on diffusion characteristics. Materials tested included silicone, expanded Teflon (ePTFE), and ultra high molecular weight polyethylene (PE) tubing. The D of each material was determined using a closed-loop system consisting of a CO2-enriched (7800 ppm) chamber, a CO2 analyzer and an inner tube (experimental tubing) placed inside the chamber. Air was re-circulated through the inner tube, and as CO2 diffused from the chamber into the tubing, the analyzer recorded the increase in concentration. The silicone tubes had values of D ranging from 8.64 to 5.80×10−6 cm2 s−1 with corresponding teq between 3.9 and 9.7 h. Diffusion coefficients of the ePTFE (1.25×10−4 cm2 s−1) and PE (7.70×10−4 cm2 s−1) materials were 2 orders of magnitude greater, with teq<6 min. Exposure to the soil environment for 183 days did not visibly deteriorate the materials or significantly affect the D or teq values. Use of the ePTFE or PE materials, over the silicone materials, may allow for better characterization of dynamic CO2 concentrations in the soil based on the greater D and lesser teq values of these materials.  相似文献   
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