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1.
两种热带切花衰老过程中呼吸代谢的调控   总被引:4,自引:1,他引:4  
以蝴蝶兰(phalaenopsisamabilis)与florijn非洲菊(gerberajamesonii)切花花瓣为材料,研究比较2种切花衰老过程中呼吸的差异,以及外源乙烯、活性氧、水分胁迫对2种切花呼吸的效应,寻找缓解2种切花衰老的技术措施,并讨论其相应的机理。实验结果表明,蝴蝶兰呼吸速率低于非洲菊,且蝴蝶兰以糖酵解途径(EMP)、抗氰氧化酶(AP)为主,而非洲菊以磷酸戊糖途径(HMP)为主;蝴蝶兰对外源乙烯的效应大于对外源活性氧的效应,而非洲菊却相反。蝴蝶兰对外源乙烯敏感性大大超过非洲菊。适当浓度乙烯抑制剂能降低呼吸速率,延缓蝴蝶兰切花衰老,而适当浓度活性氧清除剂能缓解对呼吸的抑制,延缓非洲菊衰老,延长瓶插寿命。对2种切花进行干旱胁迫18h,可加速切花衰老,瓶插寿命相应缩短,但胁迫前用0.01%TritonX-100预处理1h,能有效缓解水分胁迫效应,瓶插寿命与正常瓶插不经水分胁迫的对照切花相同。   相似文献   

2.
水分胁迫下油梨幼苗活性氧代谢对光合作用的影响   总被引:8,自引:0,他引:8  
研究水分胁迫下油梨幼苗叶片活性氧代谢的动态变化及其对光合作用的效应,结果表明:水分胁迫前期(胁迫的最初2 d),叶片含水量轻微下降,但H2O2和1O2迅速积累,AsA和 Car含量降低,MDA开始增加,光合速率下降。随胁迫程度的加深(3~10 d),叶片含水量显著下降,O2-累积并呈现高峰,清除活性氧的酶系统活性和非酶系统的含量明显降低,可溶性蛋白、光合色素大量降解,MDA含量进一步提高,光合速率急剧下降并丧失(第6d)。说明水分胁迫下油梨幼苗光合抑制与活性氧的积累有关。   相似文献   

3.
试验在盆栽人工控制水分的条件下,比较了不同水分胁迫强度对不同抗旱性玉米杂交种叶片水分代谢的影响。结果表明,水分胁迫下玉米叶片水势、相对含水量、气孔导度和蒸腾速率均明显降低,随胁迫程度增强,降低幅度增大。其中叶片水势和叶片相对含水量与品种抗旱性密切相关,蒸腾速率和气孔阻力与品种抗旱性关系不明显。  相似文献   

4.
干旱和涝渍灾害是影响作物正常生长发育常见的水分胁迫,对作物形态建成、生长发育及生理生化等代谢反应都会产生显著影响,最终导致农作物产量和品质下降。一氧化氮(NO)是植物体内一种关键的信号分子,可调控植物多种生理生化反应和发育过程,在应答植物水分胁迫方面发挥着重要作用。水分胁迫是限制麻类生产的重要因素。文章结合文献报道,重点综述了水分胁迫对植物生长发育的影响,以及NO信号分子对植物水分胁迫的应答调控机制,并对NO在麻类作物水分胁迫应答和生产应用中的前景进行了展望,以期为麻类作物抗逆栽培与品种改良提供新的思路。  相似文献   

5.
茶树水分生理与抗旱性研究进展   总被引:5,自引:0,他引:5  
综述了近年来国内外有关茶树水分生理和抗旱研究的主要文献,就水分胁迫对茶树的光合作用、激素代谢、脯氨酸含量、酶活性以及茶树生育和产量品质等方面的影响进行了分析总结。  相似文献   

6.
采用盆栽与蒸渗仪栽培平行进行的方法,研究了水分胁迫对水稻形态、腾发量及产量的影响,结果表明:水稻分蘖期遭受胁迫使其分蘖数显著减少,叶面积指数明显减小,轻度胁迫日腾发量比对照平均降低0.82 mm,中度胁迫平均降低2.26 mm,重度胁迫平均降低3.43 mm。拔节孕穗期遭受水分胁迫在单阶段胁迫中减产幅度最大。多阶段连续轻度水分胁迫,对水稻分蘖、叶面积指数及产量的影响极为显著,影响程度超过任一时段单阶段重度水分胁迫。  相似文献   

7.
蝴蝶兰切花活性氧代谢及其调控   总被引:3,自引:0,他引:3  
以蝴蝶兰(Phaloenopsis amabilis)切花为材料,研究了切花衰老过程中活性氧代谢变化以及外源乙烯对活性氧代谢的效应,阐述了活性氧和乙烯在切花呼吸跃变中互动互促,推进切花衰老的机理,探索延缓切花衰老的相应措施。研究结果表明:蝴蝶兰切花衰老过程中,活性氧代谢由瓶插前期(0-7d)的相对平衡,转向后期(7~18 d)的不平衡,特别是H2O2的代谢更为明显。活性氧大量的积累,引发膜脂过氧化加剧,MDA、电导率骤增,导致切花衰老:外源乙烯能诱发切花活性氧大幅度产生与积累,也导致抗氧化物GSH含量、切花含水量大幅度下降,促进活性氧破坏效应,加速切花衰老,瓶插寿命大大缩短;当使用乙烯抑制剂(AOA、AgNO3)作为瓶插液的主要成分时,能明显抑制乙烯诱发活性氧产生与积累的效应,从而有效延长瓶插寿命。在蝴蝶兰植物体内,由乙烯诱发活性氧产生与积累,由此引起体内代谢加剧。是导致切花衰老的主要原因。  相似文献   

8.
水分胁迫对番木瓜糖代谢和膜脂过氧化的影响   总被引:1,自引:0,他引:1  
以番木瓜(CaricapapayaL.)穗中红品种的5叶期小苗为试材,在水培条件下,研究了体积分数5%,7.5%,10%聚乙二醇(PEG)水分胁迫对番木瓜糖代谢和膜脂过氧化的影响。结果表明:随水分胁迫强度的增大,葡萄糖和果糖、相对电导率、饱和脂肪酸含量、乙烯释放率和脂氧合酶(LOX)活性均不同程度的提高,而叶片相对含水量、不饱和脂肪酸含量及脂肪酸不饱和指数则降低。相对电导率和LOX活性分别与干旱乙烯的生物合成有密切的关系。   相似文献   

9.
为区分水稻根系与地上部对水分胁迫的生理响应,采用分根营养液培养及聚乙二醇(PEG6000)模拟水分胁迫的方法,研究了局部根系在水分胁迫下不同形态氮素营养(NH4+、NO3- 、NH4+与NO3-等体积混合) 对水稻幼苗水分与氮素吸收利用的影响。结果表明: 1)全根水分胁迫显著抑制了单供NO3- N营养条件下水稻的生长,而对单供NH4+ N营养条件下水稻生长的影响较小。局部根系水分胁迫对3种供氮形态营养下水稻总生物量没有明显影响,但对单供NO3- N营养水稻根系的生物量、根系总长、根体积、平均直径以及根表面积的影响最大,均以未受水分胁迫的一侧根系生物量明显高于另一侧(受水分胁迫)。2)水分胁迫促进根系对NO3- N的消耗。3)全根水分胁迫严重抑制了单供NO3- N营养水稻的光合速率,但对单供NH4+ N营养水稻的影响较小。不论局部根系水分胁迫还是全根水分胁迫对3种供氮形态的生理水分利用率均无显著影响。4)全根水分胁迫显著降低了单供NO3- N营养水稻的光合氮素利用率。  相似文献   

10.
水分亏缺是限制作物生长的最主要因素之一,研究水分胁迫下大豆生长发育规律,对于提高大豆产量具有重要意义。试验在盆栽条件下,研究了花期水分胁迫对大豆器官平衡和产量的影响。结果表明:花期在不同时间、不同强度水分胁迫下,不同时期大豆各器官的物质分配比例不同,且不同品种表现出各异差异。水分胁迫是通过影响各器官物质分配比例来影响大豆产量的。不同时间、不同强度的水分胁迫经济系数不同,不同品种间的经济系数也有差异。大豆花期水分胁迫影响产量形成,14d中度、重度水分胁迫对产量影响显著;而7d水分胁迫处理影响不显著。辽51064和辽51095均以7d中度水分胁迫(土壤含水量为19%-21%)为适宜,单株产量分别达到了18.36g、17.53g。  相似文献   

11.
进行了水分胁迫及复水过程中斑茅和甘蔗活性氧代谢和渗透调节变化的研究。结果表明,随着水分胁迫程度的提高,斑茅丙二醛(MDA)含量提高幅度低于拔地拉,但超氧化物歧化酶(SOD)、过氧化物酶(POD)比活性较高,同工酶谱带较强(SODb1、SODb2和PODa1)且明显不同于拔地拉,而且其在严重胁迫后复水出现与拔地拉相同的新的诱导谱带PODb2o。过氧化氢酶(CAT)比活性分析结果还表明,拔地拉在水分胁迫下,比活性明显下降,而斑茅则呈上升趋势。  相似文献   

12.
There is a growing interest in the use of deficit irrigation and perennial pasture species other than perennial ryegrass (Lolium perenne L.) in temperate agriculture, in response to the decreasing availability of irrigation water. Deficit irrigation requires an understanding of plant responses to drought stress to ensure maximum dry‐matter return on water applied. A glasshouse study was undertaken to investigate some of the morphological and physiological responses of perennial ryegrass, cocksfoot (Dactylis glomerata L.) and tall fescue (Festuca arundinacea Schreb.; syn. Schedonorus phoenix Scop.) to varied moisture availability. One water treatment involved frequent applications of water to maintain a soil water potential of approximately ?10 kPa (100% treatment), and three other treatments involved applications at the same frequency, but using 33, 66 or 133% of the water applied in the 100% treatment. The water treatments continued over two plant regrowth cycles, followed by a ‘recovery’ phase of a single regrowth cycle during which all plants received the same water allocation as the 100% treatment. Depletion and replenishment of stubble water‐soluble carbohydrate (WSC) differed between the three species in response to soil moisture availability. By the second regrowth cycle, stubble WSC concentration and content in moisture‐stressed cocksfoot plants had increased, followed by a decrease during the subsequent recovery phase when the stored WSC reserves were utilized to support regrowth. The changes in stubble WSC reserves corresponded to the maintenance of relatively stable (i.e. the smallest reduction in leaf DM in response to moisture stress), but consistently lower DM production for cocksfoot compared with the other species. In contrast, moisture stress had no effect on the stubble WSC reserves of perennial ryegrass and tall fescue, with the exception of a significant decrease in WSC concentration under the 33% water treatment for perennial ryegrass. Perennial ryegrass achieved an intermediate DM yield and maintained positive growth rates throughout the study, even when watered at 33% of the requirement for optimal soil moisture levels. However, a more pronounced reduction in leaf DM in plants under moisture stress compared with the other species, combined with declining WSC reserves and the death of daughter tillers, highlighted the vulnerability of perennial ryegrass to poor persistence under prolonged drought conditions. Tall fescue appeared to have the greatest scope under moisture stress in terms of maintaining productivity and displaying attributes that contribute to persistence. Its leaf DM was consistently greater than that of the other species, displaying a smaller decline in growth under water stress compared to perennial ryegrass and an ability to recover faster upon re‐watering. This study has expanded the information available that compares and defines the potential of each species under moisture stress and emphasizes the importance of balancing short‐term DM production with long‐term persistence in choice of pasture species.  相似文献   

13.
D. Levy 《Potato Research》1983,26(4):315-321
Summary The effect of repeated short periods of water stress during the hot season on six potato cultivars was investigated. The number of tubers per plant tended to decrease in response to water stress in cultivars which had more than 9.8 tubers per control plant (Désirée, Alpha, Elvira). In the other cultivars, no consistent effect of water stress on tuber number per plant was observed. Except for Spunta, the percentage of large tubers (>60 g/tuber) was reduced in the water-stressed plants. Consequently, the average weight of these tubers was greater than that of tubers harvested from the unstressed plants, indicating that the sink force of the individual tuber was not impaired by drought. However, tuber yield per plant was reduced due to drought in all cultivars tested. The smallest decrease in dry matter accumulation as well as the greatest lowering of the osmotic potential in the tuber tissue was found in Alpha. No consistent effect of water stress on the percentage of misshapen and sprouting tubers was observed, indicating the marked effect of the high temperature on these traits. Contribution from the Agricultural Research Organization, The Volcani Center, Bet Dagan, Israel, No 310-E, 1981 series. This investigation was sponsored by a grant from the Ministry for Development Cooperation of the Netherlands.  相似文献   

14.
 通过严格控制土壤水分的盆栽试验,研究了超级杂交稻组合叶片丙二醛(MDA)含量对不同水分亏缺的生理响应及产量性状受到的影响,分析了叶片MDA含量与产量性状间的关系。结果表明,不同生育时段的水分亏缺均导致叶片MDA含量显著增加,受影响程度随控水时段的推迟而加重。随着叶位的降低,叶片MDA含量呈显著上升趋势,倒3叶最高,其次是倒2叶,剑叶相对较低,水分亏缺导致叶片尤其是下部叶片的MDA含量显著升高。水分亏缺均导致产量显著降低,开花至花后15 d和穗分化后15~30 d的控水处理影响较大,其次是花后15~30 d的控水处理,各组合减产均在20%以上,原因主要在于结实率和千粒重下降。叶片MDA含量的生理响应与稻株生长发育和最终产量表现存在相关性,不同组合的叶片MDA含量和产量性状对水分亏缺的响应有所不同,超级杂交稻组合所受影响小于普通杂交稻组合。作物对水分亏缺的响应除了表现胁迫程度 效应关系和胁迫时间 效应关系,还存在生育进程 效应关系。  相似文献   

15.
对设施蝴蝶兰栽培中常用的单一基质(水苔、椰糠、树皮等)及复合基质的性能及研究现状进行了综述,指出了当前设施生产中蝴蝶兰基质应用存在的问题及解决办法,并对我国今后蝴蝶兰栽培基质研究的发展方向进行展望,为今后蝴蝶兰设施栽培基质的研究提供了参考依据。  相似文献   

16.
 为比较不同形态氮素营养下籼稻与粳稻对水分胁迫的响应,采用室内营养液培养,通过供应不同形态氮素及100 g/L PEG6000模拟水分胁迫的方法,对4种不同基因型水稻的生长状况及渗透调节能力进行了分析。结果表明:1)与铵态氮营养相比,水分胁迫明显抑制了硝态氮营养籼稻和粳稻的地上部生长,降低了叶片净光合速率,且对粳稻的抑制效果更加显著;2)水分胁迫条件下,铵态氮营养籼稻和粳稻植株内的游离氨基酸和K+可以更有效地积累、转运和穿梭,以致伤流液和韧皮部汁液拥有更强的渗透调节能力;3)铵态氮营养籼稻和粳稻在通过渗透调节降低叶片渗透势的同时,能够提高或维持叶片含水量。由此可见,铵态氮营养下,籼稻和粳稻均可通过渗透调节促使叶片在渗透势下降和维持含水量之间达到合理的平衡,保证叶片在水分胁迫下维持正常的光合速率,提高了水稻的抗旱能力。  相似文献   

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