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1.
为了了解落羽杉(Taxodium distichum)、乌桕(Sapium sebiferum)和美国山核桃(Carya illinoensis)等树种的耐涝机制, 采用盆栽模拟涝渍环境的试验方法, 设置了淹水、渍水和对照3个处理, 测定了一年生落羽杉、乌桕和美国山核桃实生苗的生长、组织孔隙度、根氧消耗等指标。结果表明, 涝渍处理抑制了落羽杉、乌桕和美国山核桃的生物量和生物量增量(渍水处理下落羽杉的生长得到了促进), 增加了3树种的根冠比, 从生物量和生物量增量下降幅度来评价, 落羽杉的耐涝性最强, 其次为美国山核桃。淹水和渍水处理下, 落羽杉、乌桕和美国山核桃的根、茎和叶中的组织孔隙度显著增加, 且随着处理时间的延长, 各器官的组织孔隙度有增加的趋势, 3个树种中, 落羽杉的根、茎和叶中的组织孔隙度均较其他2个树种高。淹水和渍水处理下, 移除茎明显增加了落羽杉、美国山核桃和乌桕的根的氧消耗, 表明涝渍处理增强了O2在3个树种体内的运输并通过根系扩散到涝渍土壤中的能力, 并且随着处理时间的延长, 3个树种体内运输O2并扩散到土壤中的能力有逐渐增强的趋势。因此, 涝渍环境总体上抑制了落羽杉、乌桕和美国山核桃等树种的生长, 但各树种为了适应这种生长环境, 形成了大量的通气组织, 从而导致各器官组织孔隙度的增加, 增强了O2通过植物体运输到根系并扩散到土壤中的能力, 解决了根系及根际缺氧的矛盾。  相似文献   

2.
苗期涝渍对黄淮地区夏玉米生长和产量的影响   总被引:5,自引:0,他引:5  
以玉米品种"浚单20"为试验材料,采用盆栽方式,在4叶期分别设置持续淹水(3、5和7 d)和持续渍水(5、10和15 d)处理,研究苗期涝渍对夏玉米生长及产量的影响。结果表明:苗期连续淹水3 d以上或渍水15 d的产量显著降低;与对照相比,淹水3~7 d,产量下降58.8%~69.8%(P0.05);渍水15 d,产量下降47.8%(P0.05);淹水3~5 d以及渍水15 d导致产量下降的主要原因是穗粒数减少,而淹水7 d减产是穗粒数减少和千粒重下降共同作用的结果;产量相对损失率与淹水天数的回归分析表明苗期淹水应控制在1 d以内;涝渍胁迫显著降低了地上部分干物质质量,其后续影响与胁迫方式、涝渍天数和生育期有关;淹水显著降低了拔节期及以后各生育期的地上干物质质量(P0.05),而渍水对成熟期干物质重影响不显著(P0.05);淹水处理可显著降低穗部占地上部分干物质的比例,淹水3~7 d,收获指数下降48.7%~64.1%(P0.05)。由此可判断,玉米产量随涝渍时间的延长而减少,且淹水胁迫对产量的影响大于渍水。  相似文献   

3.
涝渍胁迫对喜树幼苗形态和生理的影响   总被引:11,自引:1,他引:10       下载免费PDF全文
为了解喜树对涝渍土壤条件的适应性, 通过温室土培盆栽试验, 从形态和生理两方面探讨了涝渍胁迫对1年生喜树(Camptotheca acuminata)实生苗的影响, 试验分对照、轻度渍水、渍水和淹水等4个处理, 处理时间为 21 d。结果表明, 喜树根系生长以轻度渍水最好, 其次为对照, 而渍水和淹水的处理初生根系逐渐腐烂、死亡, 与之相对应, 轻度渍水处理的根系活力与对照无显著差异, 但渍水和淹水处理随着处理时间的延长逐渐下降, 同时观察到渍水和淹水的喜树茎在水面以下部位出现较多的皮孔。随着处理时间的延长, 轻度渍水处理喜树叶片内POD和SOD活性一直保持较高水平, 渍水和淹水处理则表现出先升高后下降的趋势, 各个处理叶片中O2 、H2O2和MDA含量有逐渐升高的趋势, 且各处理之间均表现为淹水>渍水>轻度淹水>对照。各处理根系LDH活性在处理前期较对照低, 而在处理的中后期, LDH活性均比对照高, 以渍水和淹水处理最高。因此, 喜树在轻度渍水条件下, 一方面由于皮孔和不定根的增多, 根系能够获得更多的氧气, 另一方面由于POD和SOD抗氧化酶活性的增强, 降低了O2和H2O2对细胞的伤害, 喜树能够在轻度渍水的立地上正常生长。  相似文献   

4.
涝渍逆境下玉米根系苹果酸代谢与耐涝性的关系   总被引:9,自引:0,他引:9  
耐涝玉米品种根系淹水后可各累一定量的苹果酸,与水稻结果相似;而不耐涝品种则不能积累苹果酸,淹水对玉米根系草酰乙酸和内酮酸的影响与品种的耐涝性无关。淹水的玉米根系苹果酸酶和乙醇脱氢酶活性增加,线粒体琥珀酸脱氢酶活性降低,耐涝品种增减幅度较小。  相似文献   

5.
为研究淹涝条件下水稻幼苗株高及碳水化合物消耗对不同外源生长调节剂的响应,本试验选用籼型常规稻IR64和导入耐淹涝基因Sub1的IR64-Sub1为试验材料,秧龄20 d时喷施1-氨基环丙烷-1-羧酸(ACC)、多效唑(PB)、赤霉素(GA)3种外源生长调节剂,以喷施清水为对照(CK).喷施处理2 d后进行0、4、8、12、16 d没顶淹涝胁迫,淹涝胁迫结束后常温恢复7 d,取样分析不同外源生长调节剂对水稻成活率、株高、叶绿素降解及恢复、地上部非结构性碳水化合物(NSC)消耗的影响.结果表明:淹涝导致水稻幼苗株高显著增长,叶片SPAD值快速下降,叶片可溶性糖迅速消耗,但耐淹涝品种IR64-Sub1淹水前茎鞘NSC含量明显高于IR64,淹涝中NSC消耗速率低于IR64,淹水结束后地上部淀粉含量高于IR64.外源PB处理显著抑制水稻幼苗株高增长、叶绿素降解及NSC消耗,提高存活率,且对IR64-Sub1效果更为显著.外源GA处理水稻幼苗叶绿素降解、株高增长和NSC消耗最快,植株恢复能力最低,耐淹涝能力最差,但与IR64相比,GA对IR64-Sub1淹涝耐性的抑制明显减弱.外源ACC促进伸长效果明显低于外源GA处理.淹水前喷施PB可有效抑制植株水下伸长,延缓叶绿素降解,减缓NSC消耗,保留更多NSC,为淹水胁迫解除后水稻快速恢复提供有利条件,这对于易涝地区减轻涝渍危害具有重要意义.  相似文献   

6.
为高效筛选雨水花园适用植物,以香彩雀Angelonia salicariifolia等8种园林地被植物为试材,采用盆栽模拟涝渍的方法,研究不同时间淹水胁迫处理后8种植物的观赏性状及生理指标,通过主成分分析与隶属函数法对其耐涝性进行综合评价,并筛选评价植物耐涝性的有效指标。结果表明,8种园林地被植物的耐涝性强弱依次为香彩雀、水鬼蕉Hymenocallislittoralis、龙船花Ixorachinensis、朱槿Hibiscusrosa-sinensis、大花马齿苋Portulacagrandiflora、朱蕉Cordylinefruticosa、巴西野牡丹Tibouchinasemidecandra、四季海棠Begoniasemperflorens;植物叶片的相对含水量、MDA含量、相对电导率与Fv/Fm值是反映植物耐涝性的重要指标。  相似文献   

7.
涝渍胁迫下5种菊花近缘种属植物生理特性   总被引:3,自引:0,他引:3  
尹冬梅  陈发棣  陈素梅 《生态学报》2009,29(4):2143-2148
采用土培模拟涝害的方法,对5种菊花近缘种属植物的根系活力、叶绿素含量和光合生理特性以及涝渍胁迫后的形态表现进行研究和观察,比较了其耐涝能力.结果表明:涝渍胁迫下,5种菊花近缘种属植物根系活力急剧下降,但紫花野菊在胁迫初期表现出强的根系活力;5种植物叶绿素含量总体呈现先升后降的趋势;涝渍胁迫15d时纪伊潮菊、泡黄金菊的光合强度明显降低,CO2同化作用下降,并出现负值,叶片已丧失光合作用能力,其次是大岛野路菊和那贺川野菊,而紫花野菊维持了一定水平的净光合速率.结合叶片外观形态观察发现,紫花野菊最为耐涝,泡黄金菊最不耐涝,而大岛野路菊、纪伊潮菊和那贺川野菊的耐涝性介于两者之间.  相似文献   

8.
葡萄糖-6-磷酸脱氢酶与6-磷酸葡萄糖酸脱氢酶是植物戊糖磷酸途径中的两个酶.在克隆了水稻质体葡萄糖-6-磷酸脱氢酶基因OsG6PDH2和质体6-磷酸葡萄糖脱氢酶基因Os6PGDH2基础上,分析比较了水稻胞质和质体葡萄糖-6-磷酸脱氢酶基因和6-磷酸葡萄糖酸脱氢酶基因的基因结构、表达特性和进化地位.结合双子叶模式植物拟南芥两种酶基因的分析结果,认为高等植物葡萄糖-6-磷酸脱氢酶基因和6-磷酸葡萄糖酸脱氢酶基因在进化方式上截然不同,葡萄糖-6-磷酸脱氢酶的胞质基因与动物和真菌等真核生物具有共同的祖先;6-磷酸葡萄糖酸脱氢酶的胞质酶和质体酶基因都起源于原核生物的内共生.讨论了植物葡萄糖-6-磷酸脱氢酶与6-磷酸葡萄糖酸脱氢酶基因可能的进化模式,为高等植物及质体的进化起源提供了新的资料.  相似文献   

9.
模拟淹水对杞柳生长和光合特性的影响   总被引:4,自引:0,他引:4  
赵竑绯  赵阳  张驰  徐小牛 《生态学报》2013,33(3):898-906
以1年生红皮柳(Salix integra cv.hongpi)和青皮柳(Salix integra cv.qingpi)为试验材料,研究了人工模拟淹水胁迫对两个杞柳品种的生长、气体交换及叶绿素荧光的影响.经过75d的淹水处理,两个品种的存活率均为100%.在试验过程中,红皮柳和青皮柳都产生了有利于吸收氧气的不定根和肥大的皮孔,但在产生的时间上红皮柳较青皮柳迟lOd左右.渍水处理促进了青皮柳的生长和光合作用,而红皮柳在渍水和轻度淹水胁迫处理下的生长、叶绿素含量(Chl)、净光合速率(PN)和气孔导度(Gs)都明显低于对照.随着淹水时间的增加,红皮柳的非光化学淬灭系数(NPQ)持续增加并高于对照,最大光化学量子效率(Fv/Fm)持续下降且明显低于对照;青皮柳的非光化学淬灭的值增加幅度较小,最大光化学量子效率一直在0.8-0.85之间波动,与对照相比都无显著差异.以上的实验结果表明在淹水胁迫下红皮柳的光合运转机构受到了一定程度的损伤,而渍水处理则促进了大青皮的生长,因此青皮柳较红皮柳而言更耐淹,更适合在河岸带和消落区生长.  相似文献   

10.
不同耐渍基因型芝麻在厌氧胁迫下根系的生理与结构变化   总被引:15,自引:0,他引:15  
利用4种耐渍性不同的芝麻基因型,在厌氧胁迫条件下检测了根部无氧呼吸酶活性、内源乙烯含量并调查了根形态和解剖结构,以比较研究旱生植物耐渍性的主要机制。同时设计了田间分期多次淹水试验,观察早期淹水训练对芝麻生长和产量的影响。结果表明:耐渍种质的乙烯释放量在根中增加了6.06倍,茎中1.76倍,不定根数量增加了4.0~5.0倍,在初生根和不定根皮层形成典型的通气组织。非耐渍种质中未检测到乙烯变化,不定根数量增加了0.79~1.8倍,根中无明显的通气组织发生,但是乙醇脱氢酶(ADH)活性可增加4.2~9.3倍,高于耐渍种质。分期淹水试验以四对真叶期和初花期处理产量较高,与对照无显著差异,而终花期一次性淹水产量损失最大。综合分析认为,不定根增生和根皮层通气组织的形成是芝麻耐渍性的重要机制,根中内源乙烯的增加与结构适应变异有关。淹水训练能够有效地改善芝麻品种耐渍能力为结构适应提供了进一步的证据。  相似文献   

11.
以游离脯氨酸和丙二醛(MDA)含量及相对电导率为指标,比较了水淹条件下10个树种的耐水淹能力。结果表明,水淹胁迫下,不同树种的相对电导率及丙二醛含量均呈上升趋势,而游离脯氨酸含量的变化则有显著差异。根据生理指标的变化可以看出,黄连木(Pistacia chinensis Bunge)和石楠(Photinia serrulata Lindl.)的耐水淹能力较弱,耐水淹时间仅为5至10 d;蓝果树(Nyssa sinensis Oliv.)、薄壳山核桃〔Carya illinoensis(Wangenh.)Koch〕、榉树(Zelkova schneideriana Hand.-Mazz.)和一球悬铃木(Platanus occidentalis L.)具有一定的耐水淹能力,耐水淹时间约为25 d;乌桕〔Sapium sebiferum(L.) Roxb.〕和白蜡(Fraxinus chinensis Roxb.)的耐水淹能力较强,耐水淹时间超过45 d;墨西哥落羽杉(Taxodium macronatum Ten.)和花叶杞柳(Salixintegra‘Hakuro Nishiki’)的耐水淹能力最强,受水淹的60 d内无受害现象。  相似文献   

12.
淹水对甜樱桃根系呼吸强度和呼吸酶活性的影响   总被引:8,自引:0,他引:8  
以美早/东北山樱桃(Prunus serrulataG.Don)和美早/马哈利(P. mahaleb L.)为试材,研究了淹水对甜樱桃根系(生长根和褐色木质根)呼吸强度和呼吸酶活性的影响.结果表明:淹水过程中,两种甜樱桃砧木生长根和褐色木质根呼吸强度均呈下降趋势,生长根降幅更大;东北山樱桃生长根和褐色木质根呼吸强度降幅分别是马哈利的1.47和1.36倍.丙酮酸脱羧酶(PDC)、乳酸脱氢酶(LDH)活性在两类根系中均呈先升后降趋势,乙醇脱氢酶(ADH)活性在生长根中亦先升后降,而在褐色木质根中为上升趋势,3种酶活性变化幅度表现为生长根大于褐色木质根;东北山樱桃ADH和LDH活性增幅大于马哈利,但PDC活性则相反.两类根系苹果酸脱氢酶(MDH)活性均下降,且生长根降幅大于褐色木质根;东北山樱桃MDH活性降幅大于马哈利.说明生长根对淹水的敏感性强于褐色木质根;与马哈利相比,东北山樱桃对淹水更敏感.  相似文献   

13.
Flooding results in induction of anaerobic metabolism in many higher plants. As an important component of anaerobic energy production, alcohol dehydrogenase (ADH) activity increases markedly in response to flooding in white clover, Trifolium repens. Significant inter-individual variation in flood-induced ADH activity exists in natural populations of T. repens. The genetic basis of this variation was analyzed by offspring-midparent regression of data from 75 greenhouse reared families; the estimated heritability of flood-induced ADH activity was 0.55 (±0.13). Genetic variation in flood-induced ADH activity has pronounced effects on physiological response and flood tolerance in this species. ADH activity is positively correlated with the rate of ethanol production, indicating that observed in vitro activity differences are manifested in in vivo physiological function. T. repens plants with higher ADH activities during flooding have greater flood tolerance (measured as growth rate when flooded/unflooded growth rate). Variation in ADH activity during flooding accounts for more than 79% of the variance in flood tolerance. On the basis of a limited field survey of populations occupying three sites differing in exposure to flooding conditions, individuals from site C, the most frequently flooded site, expressed significantly higher average ADH activity when flooded than individuals from site A, a site with no history of flooding. Since ADH activity levels are not correlated with electrophoretic mobility variation in T. repens, this work supports previous suggestions that regulatory variation in enzyme activity may play a central role in biochemical adaptations to environmental stress.  相似文献   

14.
The present investigation was undertaken to identify the possible mode of mechanism that could provide tolerance to maize (Zea mays L.) seedlings under waterlogging. Using cup method, a number of maize genotypes were screened on the basis of survival of the seedlings kept under waterlogging. Two tolerant (LM5 and Parkash) and three susceptible (PMH2, JH3459 and LM14) genotypes were selected for the present study. Activities of antioxidant and ethanolic fermentation enzymes and content of hydrogen peroxide (H2O2), glutathione and ascorbic acid were determined in roots of these genotypes after 72 h of waterlogging. Waterlogging treatment caused decline in activities of superoxide dismutase (SOD), catalase (CAT) and ascorbate peroxidase (APX) in all the genotypes. However, only susceptible genotypes showed slight increase in glutathione reductase (GR) activity. Significant reduction in APX/GR ratio in susceptible genotypes might be the cause of their susceptibility to waterlogging. The tolerant seedlings had higher GR activity than susceptible genotypes under unstressed conditions. Stress led to decrease in H202 and increase in glutathione content of both tolerant and susceptible genotypes, but only tolerant genotypes exhibited increase in ascorbic acid under waterlogging conditions. In the tolerant genotypes, all the enzymes of anaerobic metabolism viz. alcohol dehydrogenase (ADH), aldehyde dehydrogenase (ALDH) and pyruvate decarboxylase (PDC) were upregulated under waterlogging, whereas in susceptible genotypes, only ADH was upregulated, suggesting that efficient upregulation of entire anaerobic metabolic machinery is essential for providing tolerance against waterlogging. The study provides a possible mechanism for waterlogging tolerance in maize.  相似文献   

15.
中山杉(Taxodium ‘Zhongshansha’)具有极强的耐淹性, 但其耐淹机理仍没有明确。该研究以‘中山杉118’ (Taxodium ‘Zhongshansha 118’)幼苗为对象, 在经过93天不同水淹处理(对照、水浸、浅淹、深淹)后测定中山杉叶片和根系的无氧呼吸酶活性、淀粉及可溶性糖含量、生物量以及根系活力, 从能量消耗的角度初步探索了中山杉的耐淹性。结果表明: 长期水淹使中山杉叶片与根系中3种无氧呼吸酶(乙醇脱氢酶、丙酮酸脱羧酶、乳酸脱氢酶)活性显著增加, 且叶片与根系的乙醇脱氢酶活性均高于乳酸脱氢酶活性, 中山杉的根系和叶片是通过加强以酒精发酵为主的无氧呼吸适应长期缺氧环境; 不同水淹处理的叶片中3种无氧呼吸酶活性均高于根系, 叶片对缺氧环境更加敏感; 中山杉叶片和根系淀粉、可溶性糖含量均随水淹深度的增加显著增加, 根系淀粉含量显著高于叶片, 可溶性糖含量低于叶片; 中山杉根系淀粉含量高是其能够长期忍受水淹的重要原因, 且中山杉适应长期水淹的策略为忍耐型; 经受长期水淹后中山杉根茎结合部长出气生根及茎基部膨大, 同时根系外壁的木质化能将根系与外部水淹环境隔离, 具有很强的耐淹性, 可作为湿地生态修复、消落带生物治理的优良植物材料。  相似文献   

16.
土壤盐分及水分含量对落羽杉幼苗生长的影响   总被引:9,自引:0,他引:9  
汪贵斌  曹福亮 《应用生态学报》2004,15(12):2396-2400
One year old Taxodium distichum seedlings were grown in pots with varied soil water and salt (NaC1) levels (alone and in combination) under greenhouse conditions to determine their effects on the growth and biomass allocation of the seedlings. The results showed that there were significant effects of soft salt and water contents on the relative height growth, relative stem diameter growth, biaomass increment and allocation, shoot/root ratio, seedling survival, ratio of branch to stem area, ratio of leaf mass to stem area, and ratio of leaf mass to branch area. According to the biomass increment, relative height growth and relative stem diameter growth, 20 treatments were classified into 3 groups by means of systematic cluster analysis. The first one was the treatments waterlogging, flooding, waterlogging 0.15% NaC1, flooding 0.15% NaC1, and waterlogging 0.3% NaC1, which had a high growth, the second one was the treatments flooding 0.45% NaC1, flooding 0.3% NaCl, 75% of field capacity, and 75% of field capacity 0.15% NaCl, which had a medium growth, and the last onewas the treatments 50% of field capacity, 50% of field capacity 0.15% Nat1, waterlogging 0.45% Nat1,25% of field capacity, 25% of field capacity 0.15% NaC1, 75% of field capacity 0.3% NaC1, 75% of field capacity 0.45% NaC1, 25% of field capacity 0.3% NaC1, 50% of field capacity 0.3% NaC1, 50% of field capacity 0.45% NaC1, and 25% of field capacity 0.45% NaC1, which had a poor growth.  相似文献   

17.
Two forage grasses, timothy (Phleum pratense L.) and ryegrass (Lolium multiflorum Lam.) were exposed to flooding, and activities of alcohol dehydrogenase (ADH) and their isozyme profiles were determined. The flooding stress increased ADH activities in both species. This increase was 2-times greater in timothy than in ryegrass. Only one ADH isozyme was found in non-flooded seedlings of both species, whereas two and four bands were identified in ryegrass and timothy seedlings, respectively, under flooding stress. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

18.
研究珍汕97A和珍汕97B的雌雄蕊原基形成期、花粉母细胞形成期和花粉母细胞减数分裂期的幼穗及单核期、二核期和三核期的花药中呼吸代谢三羧酸循环(TCA)的苹果酸脱氢酶(MDH)和异柠檬酸脱氢酶(IDH)及戊糖途径(PPP)的磷酸葡萄糖脱氢酶(G6PDH)、磷酸葡萄糖酸脱氢酶(6PGDH)和5一磷酸核糖异构酶(RSPI)的活性。结果表明:可育花药的5种酶活性皆高于同期不育花药;而幼穗中,TCA途径中的MDH和IDH在不育系与保持系之间无差异,PPP途径的G6PDH和6PGDH及R5PI则保持系高于不育系。这说明不育系中PPP发生的变化早于TCA途径,PPP途径的改变可能与小孢子败育有着更为直接的关系。  相似文献   

19.
Summary Histochemical analysis for NADP-dependent dehydrogenases, succinate dehydrogenase, NADH and NADPH-tetrazoleum reductases and esterase was conducted on primary cultures of adipose tissue stromal-vascular cells. Enzyme activities were restricted to clusters of lipid laden cells (adipocytes). The number of enzyme reactive adipocytes increased with length of culture. Coverslips were partially coated with collagen to allow comparisons of cell differentiation on coated (C-glass) and uncoated glass (U-glass) surface. There were no reactions for NADH- and NADPH-tetrazoleum reductases (TR) in cells on C-glass whereas adipocytes and stromal cells on U-glass were reactive. Glucose-6-phosphate (G6PDH) and 6-phosphogluconate (6PGDH) dehydrogenase activities were markedly demonstrated in both stromal cells and adipocytes on U-glass. Malate (MDH) and isocitrate (ICDH) dehydrogenase activites were higher in adipocytes than in stromal cells on the U-glass. Stromal cells on C-glass were either devoid of these enzymes (G6PDH, MDH, 6PGDH, ICDH) or activity was restricted to a small area of the cytoplasm. There were two levels of staining intensity in (MDH, ICDH, G6PDH, 6PGDH) adipocyte clusters on C-glass.Elimination of phenazine methosulphate from the NADP-dependent dehydrogeanse medias and SDH media, caused a reduction in enzyme reactive adipocytes on the C-glass. This manipulation did not reduce the number of enzyme reactive cells on U-glass. Cells on C-glass and U-glass were distinctly different in esterase stained coverslips. These studies demonstrated enzyme histochemical reactions of adipocytes and stromal cells in primary culture that were dependent on the type of extracellular matrix. Furthermore, enzyme histochemistry was shown to be useful for delineating adipocytes from stromal cells in primary cultures.  相似文献   

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