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1.
通过研究3种不同种类,但浓度相同的常见阔叶树(法国梧桐、大叶白蜡、洋槐)落叶水浸提液对对小麦种子发芽率、小麦幼苗生长、根长、苗高、根系活力及叶绿素含量的影响,发现不同种类的常见阔叶树落叶水浸提液对小麦种子存在化感作用,都有一定的抑制作用。大叶白蜡对其抑制作用相对较弱,在农林复合系统中是3种植物中最为合适的搭配树种。  相似文献   

2.
以中性溶液(pH=7.0)为对照,研究了pH值为1.0,2.0,3.0,4.0,5.0和6.0模拟酸雨对小麦种子萌发和幼苗生长的影响。结果表明,小麦种子萌发和幼苗生长各指标随着pH值的降低而降低,弱酸(pH5.0~6.0)条件下小麦种子能够正常萌发和生长,种子萌发和幼苗生长各指标与对照没有显著差异(P > 0.05);在pH低于5.0时,小麦种子萌发和幼苗生长严重受阻,种子萌发和幼苗生长各指标均显著低于对照(P < 0.05);pH为1.0时,小麦种子则完全失去活性;不同pH值模拟酸雨胁迫对小麦幼苗生理指标影响较大,叶绿素含量、类胡萝卜素含量、保护酶(SOD,POD,CAT)和非保护酶(PPO,PAL)活性随酸性的增强呈降低趋势,而相对电导率和丙二醛(MDA)含量呈上升趋势。综合分析认为,小麦幼苗生长比种子萌发对模拟酸雨的响应更为敏感。  相似文献   

3.
通过培养皿发芽试验,设计5个沼液浓度水平(0%,10%,25%,50%,75%)和3个浸种时间水平(4,5,6 h),探讨沼液浓度和浸种时间对蒙古黄芪种子发芽势、发芽指数、活力指数、根长、苗高、根重、叶绿素(Chl)含量、丙二醛(MDA)含量、抗氧化酶活性(CAT、POD、SOD)及根系活力的影响,以寻求最佳沼液浸种浓度和时间组合,为黄芪产量和质量的提高提供理论依据。结果表明,25%沼液浸种5 h黄芪种子发芽势最高,显著高于清水浸种4、5 h处理(P0.05);25%沼液浸种5 h的发芽指数、活力指数、根长、根重,Chla、Chlb、Chla+Chlb含量,根系活力、POD活性、SOD活性均显著高于其他14个浸种处理(P0.05);25%沼液浸种4、6 h苗高均显著高于其余13个处理(P0.05);丙二醛含量与CAT活性测定结果一致,均以25%沼液浸种5 h最低(P0.05)。说明适宜的沼液浸种有利于黄芪种子萌发和幼苗生长。其中25%沼液浸种5 h对黄芪种子萌发和幼苗生长效果最佳。  相似文献   

4.
Cu~(2+)对黄瓜发芽期发育和生理特性的影响   总被引:1,自引:1,他引:0  
研究了Cu2+浓度对黄瓜发芽期发育和生理特性的影响。结果显示,低浓度Cu2+(25 mg/L)处理对黄瓜种子萌发和幼苗生长有促进作用,其种子发芽率、发芽势、发芽指数、活力指数、根长、下胚轴长、下胚轴粗度、生物量和相对含水量均高于对照及其他浓度处理;而幼苗的质膜相对透性、丙二醛含量、可溶性糖含量、脯氨酸含量及保护酶活性均在此浓度得达最低。但在高浓度Cu2+(Cu2+浓度在50~300mg/L时)处理下,随着Cu2+浓度增加,黄瓜种子萌发的各项指标开始下降,幼苗生长的各项生理指标开始上升,对黄瓜种子发芽和幼苗生长产生抑制作用,并在300mg/L时抑制作用最显著。  相似文献   

5.
外源NO对盐胁迫下甜高粱种子萌发和幼苗生长的影响   总被引:2,自引:0,他引:2  
为探究外源NO对盐胁迫下甜高粱种子萌发和幼苗生长的影响,以国能4号甜高粱为试验材料,采用不同浓度(0.05、0.1和0.2 mmol·L-1)硝普钠(SNP,NO供体)处理1.6%NaCl胁迫下的种子和幼苗,统计种子发芽数,测定幼苗叶片叶绿素、脯氨酸、可溶性糖、可溶性蛋白、丙二醛(MDA)含量及超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)和抗坏血酸过氧化物酶(APX)活性等生理生化指标。结果表明,盐胁迫抑制了甜高粱种子的萌发,种子发芽指标(种子发芽率、发芽势和发芽指数)显著降低,1.6%NaCl是甜高粱种子萌发的敏感盐浓度;喷施不同浓度SNP可显著提高盐胁迫下甜高粱种子的发芽率及幼苗叶片叶绿素、可溶性糖、可溶性蛋白和脯氨酸含量,降低叶片MDA含量,增强抗氧化酶活性,其中0.1 mmol·L-1SNP处理效果最佳。0.1 mmol·L-1SNP处理下,与单独盐浓度处理相比,甜高粱种子发芽率、发芽势和发芽指数分别增加了29.51%、39.21%和38.91%;幼苗叶片叶绿素a、叶绿素b、总叶绿素、可溶性糖、可溶性蛋白和脯氨酸含量分别提高了230.00%、184.38%、214.13%、17.00%、8.78%和40.63%;MDA含量降低了34.01%;SOD、POD、CAT和APX活性分别增强了33.38%、55.75%、23.17%和116.46%。综上,盐胁迫下适宜浓度的SNP处理,可提高甜高粱幼苗叶片渗透调节物质含量,增强抗氧化酶活性,清除体内活性氧,从而促进幼苗生长,增强植株抗盐性。本研究结果为提高甜高粱耐盐性及揭示其耐盐机制提供了理论依据。  相似文献   

6.
多裂骆驼蓬对食荚豌豆的化感作用研究   总被引:3,自引:0,他引:3       下载免费PDF全文
试验研究了多裂骆驼蓬醇提取物浸种对食荚豌豆种子萌发、幼苗生长及生理生化性状的影响。结果表明,多裂骆驼蓬醇提取物浸种显著抑制食荚豌豆种子的萌发和幼苗生长,萌发率、发芽指数和与萌发有关的淀粉酶活性降低,株高、根体积、根系和地上部干重减小,根茎比下降;多裂骆驼蓬醇提取物浸种处理的幼苗根系活力和叶片硝酸还原酶活性、叶绿素和可溶性蛋白质含量下降;超氧化物歧化酶(SOD)、过氧化氢酶(CAT)活性降低,丙二醛(MDA)含量和过氧化物酶(POD)活性升高,根系过氧化物同工酶表达受抑。  相似文献   

7.
Cd对油菜种子发芽与幼苗生长的生态毒性   总被引:8,自引:0,他引:8  
通过水培实验研究了Cd胁迫下,油菜种子发芽及幼苗生长状况。结果表明:Cd胁迫下,发芽率、发芽势、发芽指数以5 mg L-1Cd浓度为阈值呈现低促高抑现象,发芽指数与Cd浓度曲线相关性好于发芽率和发芽势;活力指数、总长、芽长、根长、总重、芽重、根重表现为单抑现象。Cd对根生长抑制作用大于芽,逐步回归发现,Cd主要通过抑制根生长达到对幼苗生长抑制。种子电解质外渗率和根细胞有丝分裂指数分别与Cd浓度成极显著相关,相关系数分别为0.603**和-0.571**。因子分析发现,根长较其它指标对Cd敏感,可用于Cd污染的监测指标。  相似文献   

8.
模拟酸雨下氯化镧处理对小麦发芽及幼苗生长的影响   总被引:6,自引:1,他引:5  
陆晓民  盛伟  杨吉 《核农学报》2008,22(6):851-855
模拟酸雨下采用不同浓度的氯化镧浸泡小麦种子,测定其对种子萌发及幼苗生长的影响。结果表明:在模拟酸雨下,1~100mg/L浓度的氯化镧可以促进小麦发芽、增加幼苗干重、促进根系生长、提高根系活力及叶绿素含量,并能抑制丙二醛和脯氨酸增多,增强了小麦对酸雨逆境的抵抗能力。从不同浓度的氯化镧对小麦的发芽、营养生长及生理指标的影响进行综合判断可知,以10mg/L的氯化镧处理效果最好。  相似文献   

9.
三种作物根际土壤水浸液对当归的化感效应   总被引:1,自引:0,他引:1  
为探究适宜当归育苗的熟地土壤资源,本研究在当归道地产区甘肃省岷县培育小麦、蒙古黄芪和马铃薯茬口基础上,通过盆栽试验研究3种作物根际土壤对当归种子萌发和幼苗生长的化感效应。结果表明,小麦根际土壤水浸液对当归种子萌发出苗及幼苗生长均表现出低促高抑的浓度效应,而蒙古黄芪和马铃薯根际土壤水浸液均表现出抑制效应,其中蒙古黄芪抑制作用更强;当归幼苗的化感敏感部位为根部,可抑制当归幼苗根的加粗生长,但对幼苗根伸长生长的效应因作物不同而异,小麦根际土表现为低浓度促进效应,其余2种作物土均表现为抑制效应。0.2 g·mL~(-1)小麦根际土壤水浸液条件下,当归幼苗的超氧化物歧化酶(SOD)、过氧化物酶(POD)活性最高,过氧化氢酶(CAT)活性较低,且均显著高于蒙古黄芪和马铃薯根际土壤水平,幼苗氨基酸泄漏率维持在较低水平;根际土壤水提液浓度为0.8g·mL~(-1)时,3种作物根际土壤水浸液培育的当归幼苗CAT活性均较高,但氨基酸泄漏率较大。综上所述,低浓度小麦根际土壤水浸液在一定程度上可促进当归种子萌发出苗率,并奠定幼苗抗逆生化基础,岷县正茬小麦茬口是适宜当归熟地育苗的床土资源。本研究结果为制定合理的当归轮作倒茬制度提供了科学依据。  相似文献   

10.
本文研究了不同浓度甘露醇(MA)对海水胁迫下冬小麦种子萌发及幼苗生长的影响。我们采用不同浓度的甘露醇溶液处理海水胁迫的小麦种子及幼苗,记录小麦种子发芽率、发芽势及发芽指数并在幼苗生长期测定幼苗相关生理指标。结果表明低浓度甘露醇(≤0.5mmol/L)可提高种子的发芽率、发芽势及发芽指数,高浓度的甘露醇溶液(〉1mmol/L)对种子的萌发有抑制作用,一定浓度的甘露醇溶液(≤1mmol/L)可以提高海水胁迫下幼苗的叶绿素含量,降低游离脯氨酸(Pro)和游离丙二醛(MDA)含量,并可通过分析结果观察施加海水胁迫与甘露醇后叶绿素、类胡萝卜素、脯氨酸(Pro)和丙二醛(MDA)的含量随时间在冬小麦幼苗中的积累情况。低浓度的甘露醇对海水胁迫下的冬小麦萌发及幼苗生长具有一定的保护作用,为缓解农业生产中的盐害问题提供了新的思路。本研究为小麦的盐渍化土壤种植提供了新思路,并为甘露醇进一步开发利用于农业提供了一定的理论依据。  相似文献   

11.
□ Effects of different arsenic (As) concentration (0–30 mg L?1) on seed germination, root tolerance index, relative shoot height, root and shoot biomass, photosynthetic pigments and arsenic accumulation in two wheat varieties were investigated. Low concentrations of arsenic (0–2.5 mg L?1) stimulated germination percentage, shoot and root elongation, plant biomass as well as chlorophyll content as compared with control, however, these factors all decreased gradually at high concentrations of arsenic (5–30 mg L?1). ‘Zarin’ variety had a significantly higher tolerance to arsenic than ‘Sardari.’ Arsenic accumulation by plants root and shoot increased with the increasing arsenic concentrations in medium, which ‘Zarin’ had a higher ability to absorb and translocate arsenic to the shoots. Root accumulated more arsenic than shoot. The similar trend of chlorophyll content and wheat growth under different arsenic concentration suggesting that arsenic toxicity affects the photosynthesis which ultimately results in the reduction of wheat growth and yield.  相似文献   

12.
Two separate experiments were conducted to investigate the aluminium (Al) and calcium (Ca) effects on wheat seedling growth and on seed germination. Wheat (Tritcum aestivum L, cs Yangmai No. 5) seedlings were grown for a 15‐day period and treated with 0.5 mM Al with low Ca (1 mM Ca) or high Ca (5 mM Ca). The growth of seedlings was signficantly inhibited by Al. Supplement of Ca improved the growth of Al‐treated plants, increased dry matter weight of plant and leaf area, and decreased shoot/root ratio. This showed that Ca ameliorated Al toxicity in wheat. In experiments on seed germination, Al concentrations less than 2 mM in the germinating medium had little or no visible effect on length of shoot and root of germinating seed. The germinating rate of seed was not affected significantly by Al, when Al concentrations lower than 5 mM Al. The addition of 3 mM Ca did not increase the length of shoot and root and germination rate of seeds. Both pretreatments with 6 mM Ca and 1 μM GA had no significant effect on the length of shoot and root and amylolytic activity of Al‐treated germinating seeds. No significant differences were found in the total amylolytic activity in Al‐treated and control seeds two days and five days after germination. The results of Al and Ca effects on seedlings and seed germination showed that Al‐toxicity on germinating seeds was different from on seedling growth. The high concentrations of Al inhibit growth of roots and shoots of germinating seeds by other toxicity mechanism rather than interaction of Al with Ca and mobilization of carbohydrate reserves.  相似文献   

13.
High zinc (Zn) concentration of seeds has beneficial effects both on seed vigor and human nutrition. This study investigated the effect of Zn biofortification on growth of young durum wheat (Triticum durum cv. Yelken) seedlings under varied Zn and water supply. The seeds differing in Zn concentrations were obtained by spraying ZnSO4 to durum wheat plants at different rates under field conditions. Three groups of seeds were obtained with the following Zn concentrations: 9, 20, and 50 mg Zn kg?1. The seeds differing in Zn were tested for germination rate, seedling height, shoot dry matter production, and shoot Zn concentration under limited and well irrigated conditions in a Zn‐deficient soil with and without Zn application. In an additional experiment carried out in solution culture, root and shoot growth and superoxide dismutase activity (SOD) of seedlings were studied under low and adequate Zn supply. Low seed Zn concentration resulted in significant decreases in seedling height both in Zn‐deficient and sufficient soil, but more clearly under water‐limited soil condition. Decrease in seed germination due to low seed Zn was also more evident under limited water supply. Increasing seed Zn concentration significantly restored impairments in seedling development. Drought‐induced decrease in seedling growth at a given seed Zn concentration was much higher when soil was Zn‐deficient. Increasing seed Zn concentration also significantly improved SOD activity in seedlings grown under low Zn supply, but not under adequate Zn supply. The results suggest that using Zn‐biofortified seeds assures better seed vigor and seedling growth, particularly when Zn and water are limited in the growth medium. The role of a higher antioxidative potential (i.e., higher SOD activity) is discussed as a possible major factor in better germination and development of seedlings resulting from Zn‐biofortified seeds.  相似文献   

14.
Thirty-nine wheat accessions were used to evaluate their extract phytotoxicity against annual ryegrass (Lolium rigidum Gaud.). Aqueous extracts of wheat shoot residues significantly inhibited the germination and root growth of a biotype of annual ryegrass resistant to herbicides of acetyl CoA carboxylase inhibitors (group A), acetolactate synthase inhibitors (B), photosystem II inhibitors (C), and tubulin formation inhibitors (D). The germination of the herbicide resistant (HR) biotype was inhibited by 3-100%, depending upon the wheat accession. The phytotoxic effects on ryegrass root growth ranged from 12% stimulation to 100% inhibition, compared to a control. The germination and root growth of a herbicide-susceptible (HS) biotype of annual ryegrass were also inhibited by the wheat extracts, with germination inhibited by 4-100%, and root growth by 19-100%. Bioassays with two known wheat allelochemicals showed that p-coumaric acid and propionic acid significantly inhibited the growth of both HR and HS biotypes of annual ryegrass. The two compounds completely inhibited the root growth of HR ryegrass at concentrations greater than 5.0 mM. In comparison with p-coumaric acid, propionic acid was more inhibitory to seed germination, shoot, and root growth of both ryegrass biotypes. The root growth of the HR biotype was more sensitive when exposed to wheat extracts, to p-coumaric acid, and to propionic acid. The results suggest that residues of certain wheat cultivars with strong allelopathic potential could provide a nonherbicidal alternative for the management of herbicide-resistant weed species.  相似文献   

15.
We investigated the effects of silicon (Si) and the levels and sources of salinity on the growth and some physiological properties of wheat (Triticum aestivum cv. Chamran) in a sandy loam soil under greenhouse conditions. Treatments comprised four Si levels (8, 50, 100 and 150 mg kg?1 soil), four salinity levels (0.46, 4, 8 and 12 dS m?1) and two salinity sources (sodium chloride (NaCl) and four-salt combination). Salts combination included NaCl, sodium sulfate (Na2SO4), calcium chloride (CaCl2) and magnesium sulfate (MgSO4) at a molar ratio of 4:2:2:1. The experiment was arranged as a completely randomized design in a factorial manner, with three replications. Increasing salinity level resulted in a significant decrease in shoot dry weight, chlorophyll content and catalase (CAT) activity, and it caused a marked increase in proline and glycine betaine (GB) concentrations and superoxide dismutase (SOD) enzyme activity. The stimulating effect on GB accumulation and SOD activity was more intense in NaCl-treated plants. However, the source of salinity had no significant effect on shoot dry weight, chlorophyll and proline concentrations, and CAT activity. Si application enhanced all the above-mentioned parameters, except for proline. The suppressing effect of salinity on shoot dry weight, chlorophyll concentration and CAT activity was alleviated by Si supplementation. The stimulating effects of Si fertilization on shoot dry weight and chlorophyll concentration became more pronounced at higher salinity levels. It could be concluded that a decrease in soil osmotic potential, nutrient imbalance and increasing reactive oxygen species (ROS) in salt-treated plants caused growth suppression, while Si supply decreased the deleterious effects of excess salt on wheat growth. Consequently, it appears that when wheat plants are to be grown in salt-affected soils, it is highly recommended to supply them with adequate available silicon (Si).  相似文献   

16.
通过高等植物生态毒理试验,以根长、芽长和发芽率为主要测定指标,研究了镉-苯并(a)芘单一/复合污染对小麦种子萌发的影响,以考察两者复合污染的生态效应并筛选敏感毒性诊断指标。结果表明,镉与苯并(a)芘单一/复合污染条件下,小麦根伸长、芽长和发芽率均受到不同程度的影响。其中,镉单一污染条件下小麦的根长和芽长显著高于对照,表现为刺激生长效应;苯并(a)芘单一污染胁迫显著抑制了小麦根长和芽长的伸长;两者复合污染促进了小麦的生长。单一污染条件下,苯并(a)芘对小麦种子早期生长的毒害效应大于镉。两种污染物在供试浓度范围内相互作用的联合毒性效应为拮抗特征。3个指标中,小麦发芽率的指示效应最不明显。  相似文献   

17.
The effects of cadmium (Cd) and their amelioration with phosphorus (P) on plant growth, antioxidative components, and accumulation of Cd, iron (Fe), and zinc (Zn) were studied in wheat (Triticum aestivum L.) seedlings. Reduced biomass and chlorophyll contents under the influence of Cd were observed to be increased on P application. As compared to control, the content of NP-SH, proline, and cysteine were observed to be increased in Cd treated seedlings which was also comparatively higher in Cd with P exposed seedlings. The activities of CAT, POX, SOD, APX, and GR were increased both in root and shoot at lower dose of Cd but reduced at higher dose, while P application enhanced the activity of these enzymes even at higher dose. Application of P, reduced the uptake of Cd but enhanced the accumulation of Fe and Zn both in root and shoot tissue. A close relationship existed between lipid peroxidation and tissue metal concentration.  相似文献   

18.
Soil contamination with heavy metals can lead to losses in agricultural yield and affect human health as the metals enter the food chain, which has become a worldwide problem. Compared with other heavy metals, lead (Pb) contamination is high because of its long persistence in soil and highly toxic effects on crop production and human health. Wheat is the world's most widely grown cereal and can be cultivated in a wide range of soils. Recently, wheat has been grown widely in northern China. The aims of the present studies are to investigate the effect of Pb on antioxidative metabolisms and chlorophyll synthesis of wheat ‘Jinan No. 17.’ Moreover, calcium ion (Ca2+) levels and bioaccumulation of Pb in the leaves of wheat were investigated. The soil was artificially contaminated with different concentrations of Pb [0, 100, 500, and 2000 Pb mg kg?1 dry weight (DW) soil as lead nitrate, Pb(NO3)2]. The catalase (CAT) activity and glutathion (GSH), chlorophyll a, chlorophyll b, and total chlorophyll contents in the leaves of wheat were analyzed with a spectrophotometer at different stages of wheat growth. Calcium levels and bioaccumulation of Pb in the leaves of wheat were studied with inductively coupled plasma sector field mass spectrometry (ICP-SF-MS). The results indicated that Pb stress can increase the content of GSH in leaves of wheat, thereby affecting the activity of CAT. Both low and high concentrations of Pb stimulated chlorophyll synthesis at early stages of wheat growth and inhibited chlorophyll synthesis at later stages of wheat growth. Furthermore, Ca and Pb in leaves of wheat increased with increasing concentrations of Pb on day 34 as determined with ICP-SF-MS.  相似文献   

19.
为阐明小麦化感抑草的生理机制,选择强化感小麦‘115/青海麦’、‘92L89’和弱化感小麦‘抗10103’,通过添加浓度为0.2%、0.5%和1.0%的小麦根水提液进行水培试验3周后,测定了各处理看麦娘的鲜重,分析叶片中叶绿素(SPAD值)、可溶蛋白、MDA、类黄酮、总酚的含量以及SOD、POD、CAT活性。结果表明,水提液处理显著抑制了看麦娘的生长,抑制率在不同处理浓度及小麦品种间均存在显著差异,强化感小麦的抑制率显著高于弱化感小麦。在处理浓度范围内,不同小麦根水提液的抑制率大小依次为‘115/青海麦’(24.7%~74.3%)‘92L89’(15.7%~71.6%)‘抗10103’(13.8%~61.4%);0.2%、1.0%和5.0%水提液处理的抑制率大小依次为13.8%~24.7%、41.7%~66.4%和61.4%~74.2%。看麦娘叶绿素含量(SPAD值)随处理浓度增大显著降低,可溶蛋白含量,SOD、POD、CAT活性,MDA、类黄酮含量随处理浓度增大显著升高,强化感小麦对看麦娘的生理刺激作用高于弱化感小麦。1.0%‘115/青海麦’及5.0%各小麦水提液处理的看麦娘总酚含量高于对照。可见,小麦化感胁迫提高了看麦娘的保护酶系统活性,增强了抗氧化物质代谢,但显著增强了细胞膜脂质过氧化和叶绿素降解,不利于靶标植物看麦娘的生长。  相似文献   

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