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1.
干旱和复水对大豆光合生理生态特性的影响   总被引:22,自引:4,他引:22  
王磊  张彤  丁圣彦 《生态学报》2006,26(7):2073-2078
选用大豆作为实验材料,研究干旱和复水对大豆光合生理的影响,以期为大豆抗旱栽培和高效利用水分提供理论依据.通过研究发现,在土壤相对含水量高于47%时,处理组大豆凌晨叶片水势和对照组相比基本没有下降,但当土壤相对含水量低于47%时,处理组叶片水势急剧下降,表现为一定的阈值反应,存在明显的凌晨叶水势临界值.大豆开花前期叶片的凌晨叶水势阈值约为-1.02MPa,低于此临界值,叶片水势急剧下降,叶片净光合速率也明显降低.研究发现,在实验的第3天,处理组土壤相对含水量为47%,叶片水势与对照组相比下降了7%,蒸腾速率为对照组的67%,净光合速率为对照组的90%,水分利用效率比对照组高35%,这说明大豆的蒸腾比光合对干旱更敏感.因此,可利用这一结果采取适度干旱等措施达到节水增产的目的.复水后大豆叶片水分状况得到改善,大豆叶片的净光合速率和蒸腾速率都表现为接近于直线的上升,气孔导度的恢复也很快,这表明大豆存在着胁迫解除后快速生长的特征.但是,干旱对大豆的生长等生理过程是否存在滞后效应,滞后效应的大小等问题还需要进一步的研究.  相似文献   

2.
开花期土壤短期干旱和复水对大豆光合作用和产量的影响   总被引:4,自引:0,他引:4  
王磊  张彤  丁圣彦 《植物学报》2009,44(2):185-190
以大豆(Glycine max)为材料, 研究开花期土壤水分变动对叶片光合生理以及产量形成的影响, 以期为大豆的节水栽培和水分高效利用提供理论依据。研究发现, 大豆叶片气孔导度(Gs)对土壤水分的匮缺更加敏感。干旱胁迫降低了叶片的净光合速率(Pn), 但复水后, 叶片水势和净光合速率等在实验过程中都可以得到迅速恢复, 并且蒸腾速率(Tr)、气孔导度和胞间CO2浓度(Ci)在复水后的第3 天与对照相比显著提高, 表现出一定的超补偿效应。研究发现, 在开花期即使短期的土壤干旱, 也会对大豆后期的生物量及其分配产生较大的影响, 开花期干旱和复水, 显著降低了大豆叶片和茎的生物量, 使根茎比提高16.7% (P<0.05), 收获指数增加26.3%(P<0.05)。  相似文献   

3.
王磊  张彤  丁圣彦 《植物学通报》2009,44(2):185-190
以大豆(Glycine max)为材料,研究开花期土壤水分变动对叶片光合生理以及产量形成的影响,以期为大豆的节水栽培和水分高效利用提供理论依据。研究发现,大豆叶片气孔导度(Gs)对土壤水分的匮缺更加敏感。干旱胁迫降低了叶片的净光合速率(Pn),但复水后,叶片水势和净光合速率等在实验过程中都可以得到迅速恢复,并且蒸腾速率(Tr)、气孔导度和胞间CO2浓度(Ci)在复水后的第3天与对照相比显著提高,表现出一定的超补偿效应。研究发现,在开花期即使短期的土壤干旱,也会对大豆后期的生物量及其分配产生较大的影响,开花期干旱和复水,显著降低了大豆叶片和茎的生物量,使根茎比提高16.7%(P<0.05),收获指数增加26.3%(P<0.05)。  相似文献   

4.
黄连木对干旱胁迫的生理响应   总被引:9,自引:0,他引:9  
研究了自然干旱条件下黄连木(Pistacia chinensis Bunge)的生理变化。结果表明,随土壤含水量的减少,叶绿素b含量、光合速率、叶片相对含水量与叶水势均下降;叶绿素a和可溶性糖含量、叶绿素a和b的比值及总叶绿素含量呈现上升的趋势;超氧化物歧化酶活性先升后降;丙二醛含量干旱胁迫前期升高,后期变化不明显;净光合速率、气孔导度和蒸腾速率随土壤含水量的减少逐步降低。气孔和可溶性糖含量都是影响黄连木光合速率的关键因子,干旱胁迫前12d光合速率主要受气孔限制,之后为非气孔限制。干旱胁迫前期渗透调节物质以可溶性糖为主,干旱胁迫较重时脯氨酸含量急剧升高,与可溶性糖同时起渗透调节作用。  相似文献   

5.
王磊  王鹏程  张彤  张恒月  丁圣彦 《生态学报》2009,29(6):3328-3334
以大豆为研究对象,研究结荚期土壤水分的短期变动对大豆叶片光合生理生态以及最后产量形成的影响.研究发现,与叶片的水分状况相比,大豆的叶片气孔对土壤水分的匮缺更加敏感,在实验的第2天,处理组叶片气孔导度降为对照的24.9%(P<0.01),但是叶片水势和对照相差不显著(P>0.05);随着土壤干旱的进行,处理组叶片的净光合速率、蒸腾速率等都显著下降,但ФPSⅡ只有在第3天才出现显著的下降.复水后第3天,净光合速率比对照高24.3%(P<0.01),表现出了明显的旱后超补偿效应;研究发现,结荚期即使短期的土壤水分干旱,也会对大豆后期的生物量的分配产生较大的影响,使处理组的豆干重降低13.9%(P<0.01),根茎比增加35.3%(P<0.05),收获指数减少17.4%(P<0.05).  相似文献   

6.
土壤水分、光照和空气湿度对木薯气孔导度的影响   总被引:5,自引:0,他引:5  
为探讨土壤水分、光照等环境因子对华南8号木薯气孔导度的影响,构建气孔导度与相关环境因子的数学模型,设置7个土壤水分梯度(相对含水量20%~80%),盆栽华南8号木薯,测量净光合速率、气孔导度和空气相对湿度等参数.结果表明:空气相对湿度与气孔导度之间呈极显著正相关;光合有效辐射、土壤相对含水量与气孔导度之间呈显著正相关,但它们对气孔导度的影响程度随土壤相对含水量的变化而变化,当土壤相对含水量较低时,土壤相对含水量是影响气孔导度的主导因子,而当土壤相对含水量较高时,光合有效辐射是影响气孔导度的主导因子;土壤相对含水量、光合有效辐射、空气相对湿度与气孔导度的关系可用指数模型表达;华南8号木薯的适宜土壤相对含水量的低限临界值为52%.  相似文献   

7.
赵福年  张强  周广胜  王润元  陈斐  齐月  张凯  王鹤龄 《生态学报》2023,43(13):5581-5591
与缓慢发展的干旱过程不同,骤旱具有发生速度快,短期内可致害的特点。目前,关于作物骤旱致害的临界阈值及其调控机制尚不清楚。以春小麦为供试作物,通过桶栽试验,模拟研究骤旱过程中小麦受旱致害的过程特征及其控制因素。结果发现,发生骤旱时土壤含水量下降呈先快后慢的变化趋势,叶片水分和叶水势则呈先慢后快的指数变化趋势。叶片光合生理指标对土壤水分的下降存在明显的阈值响应,且不同生理指标的阈值并不完全相同,其中净光合速率与表征叶片光合能力的指标(最大羧化速率)对土壤有效含水量的响应阈值为0.4,气孔导度和蒸腾速率对土壤有效含水量的响应阈值分别为0.5和0.4。而小麦光合生理指标对叶片水分和叶水势的阈值响应并不明显。同时依据各生理指标相关和通径分析结果得出,骤旱发生时引起小麦叶片净光合速率快速降低的主导因子为非气孔因素,而并不是以往作物受旱研究中的气孔因素。本研究结果有望丰富干旱影响认知,并可为科学应对干旱提供依据。  相似文献   

8.
不同土壤水分条件下珍珠油杏的光合光响应特征   总被引:1,自引:0,他引:1  
用CIRAS-2便携式光合仪测定了不同土壤水分条件下(土壤相对含水量为84.7%~22.8%)2年生珍珠油杏叶片净光合速率、蒸腾速率、水分利用效率、胞间CO2浓度等光合生理参数的光响应过程,探讨其光合生理特性对土壤水分和光照强度的响应规律。结果表明:(1)随着土壤水分含量的降低,珍珠油杏叶片净光合速率、蒸腾速率、暗呼吸速率、光饱和点均呈降低趋势,表观量子效率先升高后降低,光补偿点先降低后升高。(2)利于珍珠油杏进行高光合作用并维持高水分利用效率的土壤相对含水量为43.6%~84.7%,适宜的光照强度为800~2 000μmol.m-2.s-1,即珍珠油杏对土壤水分和光照强度适应范围较广。(3)在土壤相对含水量43.6%~73.5%范围内,气孔限制是导致珍珠油杏光合速率下降的主要原因,在低于43.6%范围内,非气孔限制是导致光合速率下降的主要原因。研究认为,珍珠油杏是一种抗旱性比较强的植物,适合在华北干旱瘠薄山地引种栽培。  相似文献   

9.
不同土壤水分条件下焕镛木幼苗的生理生态特性   总被引:13,自引:3,他引:10  
在不同的土壤水分条件下 (土壤含水量分别为 2 0 1%、14 3%和 13 2 % ) ,比较研究濒危物种焕镛木幼苗的生理生态特性 ;测定了焕镛木叶片的净光合速率 (A)、气孔导度 (gs)、内在水分利用率效率 (WUE)、比叶面积 (SLA)及叶片的光合作用 光响应曲线。结果表明 :随着土壤含水量的增加叶片的净光合速率和气孔导度相应增高 ,生长在最高土壤含水量下的植株 ,日平均光合速率、气孔导度分别为 8 5 5± 4 32 μmol·m-2 ·s-1和 81 5 7± 8 4 1μmol·m-2 ·s-1,分别比生长在最低土壤含水量下的植株高 2 5 6 1%和 17 6 8% ;另一方面 ,水分利用效率、比叶面积随土壤含水量的降低而趋于增加 ,土壤含水量最低时 ,植株的日平均水分利用率、比别增加0 2 8%和 15 87% ,其中 ,水分利用效率的变幅较小 ;光饱和点随着土壤含水量的增加而增高。较高的土壤湿度有利于焕镛木的生长。  相似文献   

10.
土壤水分对温室嫁接和非嫁接黄瓜生长与生理特性的影响   总被引:22,自引:6,他引:16  
观测了黄瓜生长动态与生理特性对土壤水分状况的反应。结果表明,日光温室嫁接与未嫁接黄瓜分别在土壤相对含水量70%和80%时株高,叶面积和产量增长最快,土壤水分过高与过低均不利于黄瓜的生长;随土壤含水量降低;叶片光合速率,气孔导度,水势与根系活力的下降。  相似文献   

11.
Wang L  Zhang T  Ding S Y 《农业工程》2006,26(7):2073-2078
Field experiments were conducted on soybean Glycine max, yudou29, a major cultivated variety in the Henan Province of China to study the relationship between photosynthetic characteristics and other physioecological parameters of its leaves under soil drying and rewatering treatments. The study showed that the dawn water potential of soybean leaves under the drying treatment was very close to that of soybean leaves under well-watered treatments (CK) when soil water content was higher than 47% of field water capacity (FWC). But when soil water content dropped below 47% of FWC, the leaf water potential decreased rapidly, indicating a significant threshold reaction. The dawn water potential threshold of soybean leaves was about ?1.02 MPa. Below this, the leaf water potential and net photosynthesis ratio dropped rapidly. When the soil water content was 47%, the leaf water potential and net photosynthesis ratio were nearly as high as those in CK, but the transpiration ratio was 67% lower, indicating that transpiration was more sensitive to drought than photosynthesis. After rewatering, the water status of soybean leaves improved, the net photosynthesis ratio and transpiration ratio increased linearly, and leaf stomata conductance (Gs) also recovered quickly. These results showed that after stress removal, soybean had fast-growing characteristics.  相似文献   

12.
短期干旱对水稻叶水势、光合作用及干物质分配的影响   总被引:41,自引:10,他引:41  
采用盆栽水分试验,研究了不同生育期短期干旱处理对水稻叶水势、光合作用和干物质分配的影响.结果表明,干旱胁迫后,水稻叶水势低于对照,午后叶水势回升缓慢。凌晨叶水势随土壤含水量的降低而降低,表现为阈值反应。叶片净光合速率与凌晨叶水势密切相关,低于凌晨叶水势临界值,水稻叶片净光合速率急剧下降在水稻抽穗期和灌浆期叶片净光合速率显著下降的凌晨叶水势临界值为-1.04和-1.13MPa,对应的土壤含水量阈值分别为饱和含水量的61.0%和50.9%,土壤水势分别为-0.133和-0.240MPa干旱胁迫下单叶净光合速率的日变化规律表现为:胁迫较轻时,单叶净光合速率在正午附近出现低谷;胁迫严重时,净光合速率全天低于对照,且不及对照的一半。短期干旱后,水稻叶、根、穗的分配指数均降低,茎鞘的分配指数升高。本研究可为水稻节水灌溉管理和水分限制下水稻的生长模拟提供生理基础和理论依据。  相似文献   

13.
比较研究了1970s、1980s和1990s期间不同大豆 ( Glycine max (L.) Merr.)品种的生理生态特性:光合作用、蒸腾作用、气孔导度、水分利用效率、胞间CO2浓度和叶片水势,分析了各生理生态特性之间以及与产量在不同生育期的关系.研究表明光合速率和产量之间存在显著的相关关系,高产大豆同时具有高的气孔导度和水势,胞间CO2浓度则很低,特别是在鼓粒期关系更为显著.高产大豆的光合作用在鼓粒期达到最高值,光合作用日变化呈双峰曲线.在鼓粒期高产大豆的光合产物大量运往籽粒中,对于高产品种和高光效-"源"固然重要,而"流"-光合产物的合理运转和分配对产量则更为重要.  相似文献   

14.
Waldren  R. P.  Teare  I. D. 《Plant and Soil》1974,40(3):689-692
Summary Free proline accumulation was measured in leaves of intact sorghum (Sorghum bicolor L. cv. Pioneer 846) and soybean (Glycine max. L. cv. Calland) grown in growth chambers and subjected to ‘normal’ drought stress. Stomatal diffusive resistance and leaf water potential were used to determine the degree of stress at the time of proline analysis. Free proline did not accumulate markedly in either species until each was severely stressed, indicating that proline is not a sensitive indicator of drought stress. Free proline accumulated under less stress in soybean than in sorghum. Since soybean is less drought resistant than sorghum, proline accumulation may be an indicator of drought resistance or susceptibility. re]19731003  相似文献   

15.
Nodulated soybean plants (Glycine max [L.] Merr. cv Ransom) in a growth-chamber study were subjected to a leaf water potential (psi w) of -2.0 megapascal during vegetative growth. Changes in nonstructural carbohydrate contents of leaves, stems, roots, and nodules, allocation of dry matter among plant parts, in situ specific nodule activity, and in situ canopy apparent photosynthetic rate were measured in stressed and nonstressed plants during a 7-day period following rewatering. Leaf and nodule psi w also were determined. At the time of maximum stress, concentration of nonstructural carbohydrates had declined in leaves of stressed, relative to nonstressed, plants, and the concentration of nonstructural carbohydrates had increased in stems, roots, and nodules. Sucrose concentrations in roots and nodules of stressed plants were 1.5 and 3 times greater, respectively, than those of nonstressed plants. Within 12 hours after rewatering, leaf and nodule psi w of stressed plants had returned to values of nonstressed plants. Canopy apparent photosynthesis and specific nodule activity of stressed plants recovered to levels for nonstressed plants within 2 days after rewatering. The elevated sucrose concentrations in roots and nodules of stressed plants also declined rapidly upon rehydration. The increase in sucrose concentration in nodules, as well as the increase of carbohydrates in roots and stems, during water stress and the rapid disappearance upon rewatering indicates that inhibition of carbohydrate utilization within the nodule may be associated with loss of nodule activity. Availability of carbohydrates within the nodules and from photosynthetic activity following rehydration of nodules may mediate the rate of recovery of N2-fixation activity.  相似文献   

16.
Rubisco activity decreases under water stress, for reasons as yet unclear. Here, the covariation of stomatal conductance (gs) and relative water content (RWC), often observed during water stress, was impaired to assess the separate effects of these factors on Rubisco activity. Three different treatments were applied to soybean (Glycine max) and tobacco (Nicotiana tabacum): leaf desiccation (LD), in which stomatal closure was accompanied by large decreases of RWC; water stress (WS), in which minor decreases of RWC were observed along with stomatal closure; and exogenous application of abscisic acid (ABA), which triggered stomatal closure without changing RWC. Decreased RWC did not induce decreased initial Rubisco activity, which was impaired only in soybean by 40% when the gs dropped below 50 mmol m(-2) s(-1), regardless of the treatment. The mechanism for decreased activity differed among treatments, owing to decreased activation in LD and to total activity and protein content in WS and ABA. Despite the occurrence of Rubisco regulation, CO2 availability in the chloroplast, not impairment of Rubisco activity, limits photosynthesis during WS.  相似文献   

17.
Soil water deficit is a major limitation to agricultural productivity in arid regions. Leaf photosynthesis can quickly recover after rewatering and remains at a higher level for a longer period, thus increasing crop yield and water-use efficiency (WUE). We tested our hypothesis that leaf photosynthesis and root activity of water-stressed cotton (Gossypium hirsutum L.) plants could quickly recover after rewatering at a certain growth stage and it should not influence a cotton yield but increase WUE. Treatments in this study included two degrees of water stress: mild water stress (V1) and moderate water stress (V2) imposed at one of four cotton growth stages [i.e., S1 (from the full budding to early flowering stage), S2 (from early flowering to full flowering), S3 (from full flowering to full bolling), and S4 (from full bolling to boll-opening)]. The soil water content before and after the water stress was the same as that in the control treatment (CK, 70–75% of field capacity). Water deficit significantly reduced the leaf water potential, net photosynthetic rate, and stomatal conductance in cotton. The extent of the decline was greater in S2V2 treatment compared to others. Water deficit also reduced root activity, but the extent of inhibition varied in dependence on soil depth and duration. When plants were subjected to S1V1, the root activity in the 20–100 cm depth recovered rapidly and even exceeded CK one day after rewatering. An overcompensation response was observed for both photosynthesis and aboveground dry mass within one to three days after rewatering. Compared with the CK, S1V1 showed no significant effect on the yield but it increased total WUE and irrigation WUE. These results suggest that even a short-term water stress during the S1, S2 and S4 stages mitigated, with respect to the root activity, the negative effect of drought and enhanced leaf photosynthesis compensatory effects of rewatering in order to increase cotton WUE with drip irrigation under mulch in arid areas.  相似文献   

18.
不同类型作物对干湿交替环境的反应   总被引:28,自引:1,他引:27  
山仑  苏佩 《西北植物学报》2000,20(2):164-170
通过对干湿交替环境下春小麦、马铃薯、大豆和玉米等作物的产量,水分利用效率及光合作用、蒸腾作用、气孔导度等生理变化的研究表明:(1)春小麦和马铃薯在干湿交替环境下可获得与充分供水相当的产量而它们的水分利用效率却显著提高,大豆减产幅度较大,玉米减产严重,其水分利用效率显著低于全湿处理;(2)浇水后各作物的光合速率、蒸腾速率和气孔导度都有所增加,但不同作物增加的幅度不同,就是同一作物各指标的增幅也不同;  相似文献   

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