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1.
以厚皮甜瓜品种‘哈密绿’种子为材料,在70℃、75℃和80℃温度下分别处理24h、48h和72h,研究不同干热处理对甜瓜种子活力萌发和生理生化指标变化及细菌性果斑病的防治效果。结果显示:(1)随着处理温度的升高和时间的延长,干热处理甜瓜种子发芽指标和成苗率显著下降,而70℃处理24h和48h对种子发芽指标(活力指数除外)和成苗率无显著影响。(2)与对照相比,干热处理种子胚芽中的SOD活性、可溶性糖和脯氨酸含量升高,在同一温度处理下,SOD活性和可溶性糖含量随着处理时间的延长基本呈增长趋势,脯氨酸含量则随着处理时间的延长呈下降趋势,POD和APX活性以及可溶性蛋白含量变化随着温度的升高和处理时间的延长呈下降趋势;与对照相比,胚芽中CAT活性在70℃处理下降低,而在75℃和80℃处理下升高,但其随着处理时间的延长呈下降趋势;胚芽中O-·2产生速率在70℃和75℃处理下与对照接近,而在80℃处理下随着处理时间的延长呈上升趋势,且均显著高于对照。(3)随着处理温度的升高和时间的延长,甜瓜接菌种子幼苗细菌性果斑病发病率较对照显著降低。研究表明,适宜干热处理温度和时间诱导甜瓜种子中抗氧化酶活性增强,渗透调节物质含量增加,超氧阴离子产生速率降低,种子活力和出苗率有效提高,‘哈密绿’种子有效、安全的干热处理组合为70℃、48h。  相似文献   

2.
人工老化处理对结球甘蓝种子生理生化特性的影响   总被引:3,自引:0,他引:3  
以结球甘蓝品种‘冬升’种子为材料,研究高温(40℃)高湿(相对湿度100%)人工老化处理过程中种子的萌发特性、种子浸出液相对电导率和丙二醛、可溶性蛋白、可溶性糖含量以及抗氧化酶活性的变化,以揭示种子劣变的机理。结果表明:(1)人工老化处理甘蓝种子的含水量和不正常苗率均随着老化时间的延长逐渐增加,而种子发芽势、发芽率、发芽指数和活力指数的增加均逐渐降低。(2)随着处理天数的延长,老化处理甘蓝种子的浸出液电导率显著增大,浸出液可溶性糖含量逐渐升高,可溶性蛋白含量表现出显著下降趋势,而种子MDA含量呈先升高后逐渐下降的趋势。(3)在结球甘蓝种子老化进程中,其种子中SOD、POD、CAT活性变化的趋势相似,均随老化程度的加深而逐渐降低;而APX活性在老化处理的最初2d显著增加,第6天显著降低。研究发现,在结球甘蓝种子老化进程中,种子活力和萌发率显著降低,其种子浸出液电导率、可溶性蛋白含量、可溶性糖含量、保护酶活性变化与种子老化及劣变程度密切相关,膜脂过氧化作用可能是引起或加剧种子老化劣变的重要原因之一。  相似文献   

3.
将苦马豆和披针叶黄华种子在恒温25℃下吸胀,每24 h取出吸胀种子,16 d后未吸胀的种子为硬实种子(H),硬实种子用硫酸处理后恒温吸胀24 h,与非硬实种子进行发芽试验和各项活力指标测定。结果显示每日内吸胀的种子数量随时间推移以一定比列下降,苦马豆非硬实种子第3天后吸胀率下降到1%,第13~16天突然上升后又下降到1%,披针叶黄华非硬实种子第3天后下降到1%,第9、10天突然上升后又下降到1%。两种豆类都显示出硬实种子发芽率、发芽指数、活力指数、脱氢酶活性、呼吸速率和超氧化物歧化酶(SOD)活性均高于非硬实种子,而电导率、浸出液可溶性糖和丙二醛(MDA)含量低于非硬实种子,缓慢吸胀的硬实种子活力指标高于快速吸胀的硬实种子,这表明硬实种子活力高于非硬实种子,硬实种子吸胀过程中存在吸胀损伤。而在非硬实种子中,根据以上活力指标判断,晚吸胀的种子比早吸胀的种子活力高。  相似文献   

4.
茎瘤芥品种‘永安小叶’老化种子经聚乙二醇(PEG)浸种后,其种子活力和幼苗生长与PEG浓度有一定的相关性,不同浓度PEG浸种后的茎瘤芥种子膜透性均降低,种子发芽率、发芽势、发芽指数和活力指数增大,幼苗根干重、茎干重和根长也均增大,幼苗叶片中丙二醛(MDA)含量降低。幼苗生长与种子活力的变化趋势一致,PEG浓度小于30%时呈增大趋势,大于30%时呈减小趋势,但均大于不做PEG处理的;幼苗叶片中MDA含量与种子膜透性变化趋势一致,PEG浓度小于25%时,呈降低趋势,大于25%时则呈升高趋势,但这些指标均低于不做PEG处理的。  相似文献   

5.
研究了不同浓度硝酸镧对黑麦草种子萌发和幼苗生长的影响及其生理生化变化。结果表明,低浓度硝酸镧(1000mg·L^-1)处理能够提高黑麦草种子的活力和萌发种子的淀粉酶、蛋白酶和脂肪酶活性及IAA、GA和CTK含量;促进幼苗光合速率提高和干物质积累,这可能与硝酸镧提高幼苗叶片叶绿素含量和叶绿体希尔反应活力,促进光合电子传递和磷酸化反应及激活Rubisco羧化活性、PEP羧化酶活性有密切关系,其中以30mg.L^-1浓度处理的效果最佳;高浓度硝酸镧(70-100mg·L-1)处理则降低种子活力和抑制幼苗生长。而10-100mg.L-1硝酸镧对种子的萌发率、ABA含量和Rubisco的加氧活性影响不大。由此可见,低浓度硝酸镧可通过参与萌发和光合过程的调控提高黑麦草种子的活力,促进幼苗生长。  相似文献   

6.
为了解缺苞箭竹(Fargesia denudate Yi)种子的老化机理和不同大小种子间的差异,对其进行了人工老化处理和大、中、小三组种子的区分,并分别对种子活力,总抗氧化能力,酶活性,丙二醛含量和电导率进行测定。发现经人工老化后种子活力显著降低,电导率和丙二醛含量随老化程度加深而上升,总抗氧化能力和过氧化氢酶活力随老化程度加深而下降,超氧化物歧化酶的活力则出现上升的趋势,但超氧化物歧化酶与丙二醛的比值呈现先升后降的趋势。总抗氧化能力、超氧化物歧化酶与丙二醛的比值能够很好的反映种子老化的程度和抗氧化能力的变化;总抗氧化能力、电导率和种子活力有很好的相关性。中等大小种子活力最高,总抗氧化能力和几种酶活性均随种子增大而提高,丙二醛含量和电导率则随种子增大而减小,种子大小是与各指标相关的因素。  相似文献   

7.
以不结球白菜品种‘寒笑’种子为材料,研究高温(42℃)高湿(相对湿度100%)人工老化处理过程中种子活力及抗氧化相关特性的变化。结果显示:不结球白菜种子的发芽率、发芽势、发芽指数和活力指数随老化处理时间的延长而逐渐下降,不正常苗率逐渐增加;种子的超氧阴离子(O2.-)产生速率先增高后降低,过氧化氢(H2O2)含量逐渐增加,脂氧合酶(LOX)活性和丙二醛(MDA)含量下降,种子浸出液相对电导率增加;种子超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽还原酶(GR)活性随老化处理时间的延长逐渐下降,抗坏血酸过氧化物酶(APX)和谷胱甘肽过氧化物酶(GPX)活性在老化处理初期(老化3 d前)均增加,APX活性随后降低,GPX活性无显著变化;种子抗坏血酸(AsA)和还原型谷胱甘肽(GSH)含量在老化处理1 d后即显著降低并持续保持较低水平。研究表明,不结球白菜种子在人工加速老化过程中其抗氧化系统代谢紊乱并造成活性氧累积伤害,这可能是引起不结球白菜种子老化的重要原因。  相似文献   

8.
大金发藓和小蛇苔化学他感作用的生物测定   总被引:8,自引:0,他引:8  
以绿豆、油菜和萝卜种子为生测材料,以大金发藓(Polytrichum commune Hedw.)和小蛇苔(Conocephalum japonicum(Thunb.) Grolle.)的水提取液为处理液,测定了二种苔藓植物提取液在三种浓度下对三种作物种子萌发率、萌发指数、萌发势、种子活力、幼苗根重和鲜重和根长等指标的影响。发现绿豆是理想的生测材料,种子活力指数、幼苗鲜重、根重和根长是理想的生测指标;二种苔藓植物的水提取液表现出类似于激素样的作用方式,对种子萌发和幼苗生长,表现为低浓度下促进、高浓度时抑制的化学他感效应。  相似文献   

9.
利用室内水培实验,研究了外源一氧化氮(NO)供体硝普钠(SNP)对Pb2+处理下小麦(Triticum aestivum L.)种子萌发、幼苗生长及相关生理指标变化的影响。结果表明,Pb2+处理使小麦种子发芽势、发芽率、幼苗根长和茎长均显著降低,诱导叶绿素a、叶绿素b含量减少及叶绿素荧光参数Fv/FmFv/Fo的比值减小,25 μmol·L-1 SNP明显缓解Pb2+胁迫对种子萌发及幼苗生长的抑制作用,提高Pb2+胁迫下叶绿素a、叶绿素b含量及Fv/FmFv/Fo的比值,而100 μmol·L-1SNP无明显缓解作用。此外,25和100 μmol·L-1SNP诱导Pb2+胁迫下小麦幼苗叶片过氧化氢酶(CAT)活性增强和可溶性蛋白含量增多,但100 μmol·L-1SNP处理降低了过氧化物酶(POD)活性。结果说明,外源NO促进Pb2+胁迫下小麦种子萌发及幼苗生长,提高叶绿素和可溶性蛋白含量,诱导CAT活性升高,从而增强小麦对Pb2+胁迫的适应性。  相似文献   

10.
为明确鸡冠花(Celosia cristata)种子对短期高温的耐受性,种子经短期高温处理30 min,采用纸上发芽法测定种子活力及早期幼苗生理指标。结果表明,60℃下,鸡冠花种子的相对发芽率、发芽势、相对发芽指数分别为101.68%、70%、101.41%,而相对伤害率仅为-1.41%,其早期幼苗根系长度与侧根数、根系活力、叶绿素含量、超氧化物歧化酶(SOD)活性与丙二醛(MDA)含量与对照的差异不显著(P0.05),而过氧化物酶(POD)与过氧化氢酶(CAT)活性显著高于对照(P0.05)。温度再升高,种子活力逐渐降低,早期幼苗CAT活性、根系活力与叶绿素含量均迅速降低。这说明鸡冠花种子可耐受的短期极限高温为60℃,且CAT对高温较SOD与POD敏感,可作为评价植物对短期高温反应的一个指标。  相似文献   

11.
Papaya mealybug (PMB) is a serious insect pest for papaya production in Sub-Saharan Africa, limiting production potential in farming communities. We did a household survey to evaluate the Characteristics of farmers' knowledge, challenges, and current (PMB) control practices in four papaya growing regions of Tanzania namely, Tanga, Dodoma, Pwani, and Katavi involving 100 papaya farmers. The study found that 96% of farmers reported PMB, as a major challenge in papaya production. Very few (0.8%) of the farmers were knowledgeable on insect pest identification. Chemical pesticides were the only option for PMB control, and 43.0% of farmers were able to access and apply. We also found that 36.4% of the farmers were aware of the adverse effects of chemical pesticides. Furthermore, the study observed that 0.3% of farmers use botanical pesticides. Additionally, the study observed that 44.1% of farmers use control measures against PMB, the remaining 55.9% did not practice any control measure, thus leading to low papaya yields observed in the study regions. Our findings provide insights to farmers into the use of plant-based pesticides, mainly plant essential oils, and its benefits that may promote farmers' attitudes towards increasing papaya yield and reducing chemical pesticide use to avoid pest resistance.  相似文献   

12.
The Malthusian prognosis has been undermined by an exponential increase in world food supply since 1960, even in the absence of any extension of the arable area. The requisite increases in yield of the cereal staples have come partly from agronomic intensification, especially of nitrogenous fertilizer use made possible by the dwarfing of wheat and rice, in turn made feasible by herbicide development. Cereal dwarfing also contributed to a marked rise in harvest index and yield potential.<br>Although there is still scope for some further improvement in harvest index and environmental adaptation, it is not apparent how a doubling of yield potential can be achieved unless crop photosynthesis can be substantially enhanced by genetic engineering. Empirical selection for yield has not enhanced photosynthetic capacity to date, but nitrogenous and other fertilizers have done so, and there is still scope for agronomic increases in yield and for new synergisms between agronomy and plant breeding. <br>  相似文献   

13.
奈曼地区灌溉麦田蒸散量及作物系数的确定   总被引:10,自引:0,他引:10  
利用大型蒸渗仪测定了奈曼地区春小麦(Triticum aestivum L.)全生育期的蒸散量,并引用FAO Penman-Monteith等5种方法计算了相应时期的参考作物蒸散量,比较了FAO Penman-Monteith公式与其它4种方法间的关系,最后运用作物蒸散量和参考作物蒸散量计算了春小麦的作物系数.结果表明,春小麦苗期每周日平均蒸散量小于3mm·d^-1,随着叶面积系数增大,日平均蒸散量达到最大值6.49mm·d^-1(抽穗开花期),最终下降至1.94mm·d^-1(灌浆成熟期);根据试验年份的降雨分布情况,该地区的自然降水不能满足春小麦对水分需求,小麦苗期、拔节期和抽穗开花期水分亏缺比较严重,是田间水分管理的关键时期;与FAO Penman-Monteith公式的计算结果相比较,用Penman公式和FAO-24 Blaney-Criddle公式估算奈曼地区参考作物蒸散量误差较小;奈曼地区春小麦苗期、营养期、生殖期、成熟期4个生长阶段的作物系数分别为0.45、0.90、1.1l和0.52,其中成熟期的作物系数值与FAO-24给出的小麦作物系数值差异较大.  相似文献   

14.
《Journal of Asia》2020,23(3):653-659
This investigation reports on the biological control of Sphenarium purpurascens by using different concentrations of conidia from a native strain of Beauveria bassiana (MABb1) isolated in Puebla, Mexico under laboratory and in situ conditions. Formulations containing this native strain combined with two mesoporous materials (diatomaceous earth “D” and zeolite “Z”) were assayed in order to determine their effect on the mortality of the grasshopper. Concentrations of 3.67 × 108 to 10.30 × 108 conidia mL−1 caused a substantial mortality rate in the fourth-instar nymphs and adults of S. purpurascens. The observed mortality was directly proportional to the concentration of conidia. Under controlled conditions, the highest specific death rate K(d−1) was 0.78 for the formulation containing Z + D + MABb1 at 72 h post-infection. The formulations of D + MABb1 and Z + D + MABb1 caused a noticeable decrease in the population of grasshoppers in the experimental plots with statistical significant differences (α < 0.05). Interestingly, an increase in the mortality of S purpurascens occurred in July, August and September 2017 when the highest incidence of the grasshopper was recorded. Remarkably, the treatment based on Z + D + MABb1, produced an improvement in the yields of experimental maize plots (7847.4 ± 0.70 Kg ha−1) in comparison to control plots (4453.9 ± 0.50 Kg ha−1). These favorable consequences are reported for the first time in corn crops from Mexico.  相似文献   

15.
Biomass production of annual crops is often directly proportional to the amounts of radiation intercepted, water transpired and nutrients taken up. In many places the amount of rainfall during the period of rapid crop growth is less than the potential rate of evaporation, so that depletion of stored soil water is commonplace. The rate of mineralization of nitrogen (N) from organic matter and the processes of nutrient loss are closely related to the availability of soil water. Results from Kenya indicate the rapid changes in nitrate availability following rain.<br>Nutrient supply has a large effect on the quantity of radiation intercepted and hence, biomass production. There is considerable scope for encouraging canopy expansion to conserve water by reducing evaporation from the soil surface in environments where it is frequently rewetted, and where the unsaturated hydraulic conductivity of the soil is sufficient to supply water at the energy limited rate (e.g. northern Syria). In regions with high evaporative demand and coarse-textured soils (e.g. Niger), transpiration may be increased by management techniques that reduce drainage.<br>Increases in atmospheric [CO2] are likely to have only a small impact on crop yields when allowance is made for the interacting effects of temperature, and water and nutrient supply. <br>  相似文献   

16.
17.
Papaya mealybug (PMB) is a serious insect pest for papaya production in Sub-Saharan Africa, limiting production potential in farming communities. We did a household survey to evaluate the Characteristics of farmers'' knowledge, challenges, and current (PMB) control practices in four papaya growing regions of Tanzania namely, Tanga, Dodoma, Pwani, and Katavi involving 100 papaya farmers. The study found that 96% of farmers reported PMB, as a major challenge in papaya production. Very few (0.8%) of the farmers were knowledgeable on insect pest identification. Chemical pesticides were the only option for PMB control, and 43.0% of farmers were able to access and apply. We also found that 36.4% of the farmers were aware of the adverse effects of chemical pesticides. Furthermore, the study observed that 0.3% of farmers use botanical pesticides. Additionally, the study observed that 44.1% of farmers use control measures against PMB, the remaining 55.9% did not practice any control measure, thus leading to low papaya yields observed in the study regions. Our findings provide insights to farmers into the use of plant-based pesticides, mainly plant essential oils, and its benefits that may promote farmers'' attitudes towards increasing papaya yield and reducing chemical pesticide use to avoid pest resistance.  相似文献   

18.
“九五”期间,国家将“主要农作物种质资源评价与利用研究”列入国家重点科技攻关计划,取得了重大进展。通过该计划的完成,进一步丰富了中国作物种质资源多样性,使中国拥有作物种质资源达37万份。跃居世界第二;通过鉴定评价,筛选出的241份优异种质已在当前的作物育种和生产上发挥重要作用,并获得“九五”国家科技攻关重大成果;通过考察,抢救了三峡、赣南、粤北等山区一批珍、稀、优种质和近缘野生植物;五大作物种质资源指纹图谱绘制,重要性状基因的标记,以及库存种质保存理论和方法研究取得重要进展。提出了中国栽培稻和小麦核心种质建立的原则和方法。作物种质特性分布信息系统的建立和种质特性分布图的绘制,为种质特性的形成和分布规律研究提供了重要依据。  相似文献   

19.
Managing crop damage by wildlife is a complex challenge in agrarian-wildlife landscapes. Losses to farmers and their negative attitude towards crop-raiding wildlife, compromise wildlife conservation and farmer-wildlife coexistence. Priority crop types, crop-raiding wildlife and socio-ecological factors are highly integrated. Here we use cross-sectional network analysis as a conservation planning tool to simultaneously identify the crop types used by crop-raiding wildlife, and evaluate the importance of these crop-wildlife interactions relative to the socio-ecological factors that affect these interactions. The most vulnerable crops were maize, millet and fruit trees, while the most problematic crop-raiding wildlife were African elephant, bushpig, hippo, warthog and red-billed quelea. Crop damage declined with countermeasure effectiveness, farm size, and distance from river to farm, but increased with richness of attractive crops. Undamaged crops included cash crops, such as chili, onion, ginger, lemon grass and garlic. Applying network analysis to different crops and damage scenarios enables identification of the most important and influential crops, crop-raiding wildlife and socio-ecological factors needed to develop effective crop protection strategies.  相似文献   

20.
Existing crop models produce unsatisfactory simulation results and are operationally complicated. The present study, however, demonstrated the unique advantages of statistical crop models for large-scale simulation. Using rice as the research crop, a support vector machine-based open crop model (SBOCM) was developed by integrating developmental stage and yield prediction models. Basic geographical information obtained by surface weather observation stations in China and the 1:1000000 soil database published by the Chinese Academy of Sciences were used. Based on the principle of scale compatibility of modeling data, an open reading frame was designed for the dynamic daily input of meteorological data and output of rice development and yield records. This was used to generate rice developmental stage and yield prediction models, which were integrated into the SBOCM system. The parameters, methods, error resources, and other factors were analyzed. Although not a crop physiology simulation model, the proposed SBOCM can be used for perennial simulation and one-year rice predictions within certain scale ranges. It is convenient for data acquisition, regionally applicable, parametrically simple, and effective for multi-scale factor integration. It has the potential for future integration with extensive social and economic factors to improve the prediction accuracy and practicability.  相似文献   

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