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1.
以玉米17个自交系和10个杂交种为试材,在田间条件下研究了不同光强、不同叶位、不同生育期、不同源库比例和株间差异状态下的气孔阻力及其与光合(PH)、蒸腾(TR)和叶片水分利用效率(WUE)的关系,结果表明,不同自交系之间RS具有显著的差异,相差最大可达2.3倍以上;光照条件变弱、穗叶位差增加、生育期推延和源/库比例改变等均可引起RS值的增加;在各种情况下导致RS变化的同时也引起TR和PH产生相应的变化,RS与TR、PH表现出显著或极显著的负相关,且相关系数rRS-TR>rRS-PH;RS与WUE的相关关系在不同的条件下表现出不稳定性.  相似文献   

2.
李文娆  李永竞  冯士珍 《生态学报》2017,37(20):6712-6723
研究了分根交替供水(APRI)条件下不同施氮量(高氮HN 200kg/hm~2、中氮MN 120kg/hm~2和低氮LN 80kg/hm~2)和分区氮肥施用比例(1:3,2:2和0:4)处理下,经历干旱胁迫后棉花幼苗(品种:汴棉5号)株高、茎粗、根冠生物量、气体交换参数、水分利用效率(WUE)、总根长和根系表面积以及根源脱落酸(ABA)含量的变化。以期进一步明确根源ABA对棉花幼苗生长和WUE调控的生理生态效应。结果表明:施氮量和氮肥分施显著增强了干旱条件下根源ABA对棉花幼苗生长和WUE的调控作用,但根源ABA对氮利用效率无显著影响。高氮处理下棉花幼苗生长受到干旱的影响最小,具有最好的生长状态和最大的根源ABA含量,但其WUE最低;而低氮处理下的棉花幼苗生长最弱但具有最大的WUE。无论施氮量为何,0:4施氮比例棉花幼苗在干旱条件下生长最弱,1:3施氮比例幼苗则生长最好,且具有最大的WUE和根源ABA含量、根系总长度和表面积;2:2和1:3施氮比例的棉花幼苗在根冠生长和叶面积上未表现出明显的差异;0:4和1:3施肥比例的棉花幼苗在气孔导度、蒸腾速率、WUE和根源ABA含量上差异不明显。因此,施用氮肥以及适当施肥比例能够诱导根源ABA产生更强的信号作用,调控棉花幼苗减少水分消耗、维持更好的根系形态(根长和表面积以及细根比例的维持和增长)和光合能力来维系干旱条件下植株更好的生长和更高的WUE,尤其1:3施肥比例下。虽然干旱条件下低氮耦合1:3施氮比例具有最大的WUE,但中氮耦合1:3施氮处理可以在得到最高生物量的同时得到较高的WUE,同时做到高产、省水和节约氮肥。  相似文献   

3.
王妍  江泽慧  彭镇华  刘杏娥 《生态学报》2010,30(11):2933-2939
通过涡度相关设备监测湖南岳阳长江外滩地杨树人工林生态系统与大气间的碳、水交换,研究生态系统水分利用效率(WUE=FCO2/FH2O)的规律及其与环境因子的响应变化关系。测定了杨树林生态系统WUE不同季节10个晴朗日09:0016:00时半小时平均值的日变化,不同季节,WUE的变化不同。生态系统WUE受环境因子的影响较大,4 9月份,WUE随着温度升高有减小的趋势;10月到翌年3月份,系统WUE随着气温升高而升高。汛期林地土壤淹水的情况下,系统WUE随土壤体积含水量(SWC)增加而增大;林地没淹水情况下,生态系统WUE随着含水量的增加变化不规律。非讯期土壤热通量5d平均值与系统WUE的关系,随着土壤热通量的增加,WUE也增加。生态系统WUE与系统饱和水汽压差呈负相关。经主成分分析,土壤含水量与大气温度在杨树林生态系统WUE影响因子中占较大的特征比例。  相似文献   

4.
为明确大气CO_2浓度升高对宁夏枸杞光合特性及生物量分配的影响,以宁夏枸杞苗木为试材,采用开顶气室(OTC)模拟自然环境大气CO_2浓度变化,设置3个CO_2浓度水平[CK(380±20μmol/mol)、TR1(570±20μmol/mol)、TR2(760±20μmol/mol)],分别于不同CO_2浓度处理90d、120d后,测定其净光合速率(P_n)、光响应曲线、CO_2响应曲线等相关指标及植株不同器官生物量。结果表明:(1)TR1及TR2下Pn于第一年处理至90d时均较CK显著升高(P0.05),且TR1处理在120d时较CK显著降低;第二年处理90d时,TR1处理较CK下降了4.77%,处理120d时TR1、TR2均高于CK,但差异不显著。(2)随着CO_2浓度升高,两年中TR1、TR2处理的胞间CO_2浓度(C_i)较CK均显著升高,处理后120d时,气孔导度(G_s)较CK均显著下降;水分利用率(WUE)在第一年处理中均无显著变化,但在第二年处理120d时,TR1、TR2均较CK显著上升。(3)处理至90d和120d时,TR1、TR2组的宁夏枸杞苗木光饱和点、CO_2饱和点均高于CK,但TR2组初始羧化效率低于CK。(4)随着CO_2浓度升高,宁夏枸杞苗木地上部分生物量分配显著增加,地下部分生物量分配显著降低。研究发现,一定时间内适宜CO_2浓度升高可促进宁夏枸杞苗木光合作用,使得其地上部分生物量分配显著提高,地下部分生物量分配显著降低;但随着处理浓度升高及处理时间延长,其光合作用有下调趋势,表现为净光合速率、气孔导度、初始羧化效率等下降。  相似文献   

5.
李群  赵成章  王继伟  赵连春  徐婷  韩玲 《生态学报》2017,37(15):4956-4962
密度制约下植物比叶面积与水分利用效率的关系,对于认识土壤-植物-大气的物质循环和能量流动机制具有重要意义。采用样方调查法,研究了3种密度(高密度Ⅰ:210—230株/m~2;中密度Ⅱ:130—150株/m~2;低密度Ⅲ:50—70株/m~2)条件下芦苇种群比叶面积(SLA)和水分利用效率(WUE)的关系。结果表明:随着芦苇种群密度的逐渐降低,湿地群落的土壤含水量逐渐减小,芦苇的株高、叶面积、叶干重、SLA和蒸腾速率(Tr)均呈逐渐减小的趋势,净光合速率(Pn)、叶厚度和WUE呈逐渐增加的趋势;不同密度条件下湿地植物芦苇比叶面积(SLA)与水分利用效率(WUE)的关系存在显著差异(P0.05),在高密度(Ⅰ)与低密度(Ⅲ)样地,芦苇SLA与WUE呈极显著负相关关系(P0.01);在中密度(Ⅱ)样地,二者呈显著负相关关系(P0.05)。不同种群密度的湿地生境中,芦苇通过调整叶片形态构造,使比叶面积和水分利用效率形成了相反的变化趋势,反映了植物适应光照条件、土壤含水量等异质性环境因子的资源利用策略和光合产物积累模式。  相似文献   

6.
以黄土丘陵半干旱区白羊草(Bothriochloa ischaemum)和达乌里胡枝子(Lespedeza davurica)为研究对象,通过盆栽控制试验,设置3种土壤水分处理水平(HW、MW和LW,分别为田间持水量的80%±5%,60%±5%和40%±5%)和7个株数比例组合(株数比为0∶12、2∶10、4∶8、6∶6、8∶4、10∶2和12∶0),分析比较白羊草和达乌里胡枝子拔节期、开花期和结实期的叶片光合生理参数,探讨不同土壤水分和草种组合比例下二者叶片光合气孔交换参数随生育期动态变化规律,揭示水分胁迫下2种乡土草混播共存的生理生态机制。结果显示:(1)水分胁迫显著降低了2种草叶片净光合速率(Pn)、蒸腾速率(Tr)和气孔导度(Gs),且以白羊草的光合生理响应更为敏感;除LW土壤水分下达乌里胡枝子结实期的Pn降低原因为非气孔限制因素外,其余处理下均为气孔因素。(2)HW土壤水分下,白羊草混播下的Pn均值显著高于单播,但达乌里胡枝子呈相反趋势;MW和LW土壤水分下,白羊草混播下拔节期与开花期以及达乌里胡枝子结实期的Pn均显著高于各自单播,白羊草各生育期的水分利用率(WUE)均显著高于达乌里胡枝子。(3)在10∶2混播条件下,LW土壤水分处理的白羊草各生育期的Pn和WUE、以及MW和LW土壤水分处理的达乌里胡枝子结实期的Pn和WUE均显著高于各自单播。研究表明,白羊草与达乌里胡枝子株数比为10∶2时,有利于提高水分胁迫条件下二者叶片光合速率和水分利用效率。  相似文献   

7.
冬小麦对有限水分高效利用的生理机制   总被引:18,自引:3,他引:15  
通过对不同土壤供水条件下的孕穗开花期的冬小麦叶片CO2/H2O气体交换参数的系统测定,研究了光合速率(Pn)、蒸腾速率(Tr)、气孔导度(Gs)、细胞间隙CO2浓度(Ci)、叶温(Tl)与水分利用效率(WUE)间的关系。结果表明,WUE并不随Pn的增长直线增长,而是呈现出二次曲线的变化趋势;只有当蒸腾达到一定程度时,Tr才对WUE产生影响,而Tr过大时WUE则有下降的趋势;WUE与Ci呈负相关,随Ci的增加WUE呈递减趋势;叶温升高对光合和蒸腾都有促进作用,当超过了某种限度则表现为抑制作用,表明在一定温度范围内,Tl升高对水分利用不利;随Gs的增大,WUE增大到一定程度则不再增加,甚至出现一种回落趋势.  相似文献   

8.
研究了干旱、CO2 浓度和温度升高对春小麦生育期、光合速率 (Pn)、蒸发蒸腾 (ET)及水分利用效率 (WUE)的影响 .结果表明 ,大气CO2 浓度升高 (5 5 0、70 0 μmol·mol-1)虽可延长抽穗 成熟期 ,但高温 (日平均温度高于正常日平均温度约 4 .8℃ )对生育期的影响远大于高CO2 影响 ,使得高CO2 、高温下抽穗 成熟期缩短 ,且种子提前萌发 ;CO2 浓度升高和高温共同作用使各水分处理的小麦光合增强、气孔阻力增加、叶片水平的水分利用效率 (WUEl)和群体水平的水分利用效率 (WUE)增大 ,但对蒸腾速率影响不显著 .对蒸发蒸腾的影响因不同的土壤水分而不同 ,在高 (田间持水量的 75 %~ 85 % )、中 (田间持水量的 5 5 %~6 5 % )水分条件下 ,高温和高CO2 使蒸发蒸腾增加 ,而在低水分条件 (田间持水量的 35 %~ 4 5 % )下 ,高温和高CO2 使蒸发蒸腾减少  相似文献   

9.
遮荫处理对臭柏幼苗光合特性的影响   总被引:3,自引:0,他引:3  
赵顺  黄秋娴  李玉灵  李晓莹  李雯  程达  尹坤 《生态学报》2014,34(8):1994-2002
为了探明臭柏幼苗在不同遮荫处理下的光合特性和色素含量,通过盆栽实验,测定了0%、25%、50%、75%和90%四个遮荫处理下臭柏光合特性日变化和色素含量。结果表明:(1)随着遮荫率增加,臭柏净光合速率(Pn)、气孔导度(Gs)及蒸腾速率(Tr)随之减小,而胞间CO2浓度(Ci)随之增大,非气孔制限因素是臭柏光合速率下降的主要原因,且90%遮荫会影响臭柏幼苗的正常生长;(2)叶绿素a(Chl a)、叶绿素b(Chl b)和叶绿素总量(Chl a+b)均随着遮荫率增加而增大,Chl a/b则随着遮荫率的增大而呈下降趋势;(3)几乎所有遮荫处理组Gs均与Tr表现出不同程度的相关性,而Gs与Pn的相关性较差;所有遮荫处理组水分利用效率(WUE)与Pn均呈极显著相关,而与Tr相关性不显著,说明臭柏是通过较高的光合速率来实现高的水分利用效率以适应不同的光照条件。同时WUE和Ci也表现出不同程度的相关性。  相似文献   

10.
 研究环境变化下的树木水分利用效率对探讨森林生态系统碳水耦联关系及其对气候变化的响应和适应对策具有重要意义。落叶松(Larix gmelinii)为我国北方森林的建群种之一。将水热条件不同的17个种源落叶松种植在帽儿山森林生态系统研究站的同质园内30年后, 测定其针叶水分利用效率(WUE)及其相关因子。结果表明: WUE、净光合速率(Pn)、蒸腾速率(Tr)、气孔导度(Gs)、比叶面积(SLA)和叶片氮含量(NL)均存在显著的种源差异(p < 0.05)。WUE和Gs呈显著指数相关关系, 当Gs < 0.2 时WUE随Gs的增大而明显增大, 而当Gs > 0.2时WUE趋于稳定。WUE和SLA及NL分别呈线性负相关和正相关关系, 且随种源原地的干燥度指数(AI)的增大其相关性明显增强。WUE和种源原地年平均气温、平均年降水量及AI分别呈线性负相关、负相关和正相关关系, 并且相关系数依次增大; Tr则仅和种源原地年平均气温呈线性正相关关系, 而Pn和种源原地AI呈线性正相关关系。不同种源落叶松由于对种源原地环境条件的适应而存在针叶结构和生理特征的显著差异, 并因此引起针叶水分利用效率的差异。  相似文献   

11.
选取具有不同早衰特性的超级杂交稻组合两优培九、Y两优1号和培两优E32为供试材料,借助14C同位素示踪技术对其不同生育期剑叶14C同化物分配及转化进行了研究。结果表明:随着生育期的推进,剑叶(源)同化物向穗中(库)的转运比例逐渐增加,在供试组合中以两优培九分配效率最高,Y两优1号次之,培两优E32最低;剑叶14C-同化物在供试组合中的转运能力也有类似的趋势,在3个超级杂交稻组合中,以两优培九"源、库、流"的协调性最好,Y两优1号次之,培两优E32最差。  相似文献   

12.
The effect of absorbed photosynthetic photon flux density (PPFD) on leaf expansion is a key issue for analysing the phenotypic variability between plants and for modelling feedback loops. Expansion and epidermal cell division in leaf 8 of sunflower were analysed in a series of five experiments where absorbed photosynthetic photon flux density (PPFD) was reduced either by shading or by covering part of the leaf area. These treatments were imposed at different times during leaf development. Expansion and cell division were affected by a reduction in absorbed PPFD only in the first part of leaf development, while the leaf area was less than 2% of its final value and while absolute expansion rate was slow. In contrast, it was not affected if imposed later when the leaf was visible and absolute expansion rate was at maximum. A reduction in absorbed PPFD caused the same reduction in expansion and in cell division whether it was due to a reduction in incident PPFD or to a reduction in photosynthetic leaf area, suggesting that carbon metabolism was involved. Relative expansion rate recovered to control levels when relative division rate began to decline, in all experiments and in all zones of a leaf. This was probably linked to the source–sink transition, after which the leaf had such a high priority in carbon allocation that it was largely insensitive to changes in absorbed PPFD. The final leaf area was therefore closely related to the cumulated PPFD absorbed by the plant from leaf initiation to the end of exponential cell division.  相似文献   

13.
Source, sink, and translocation capacity of assimilates play important roles during the formation of grain yield. The present study was conducted to characterize the genetic bases of traits representing source, sink and transport tissue, and their relationships with yield traits in rice, by analyzing QTLs for these traits and various ratios among them. The genetic materials were a recombinant inbred population derived from a cross between two indica cultivars Zhenshan 97 and Minghui 63, the parents of the most-widely grown hybrid rice in China. Using a linkage map that covers a total of 1,796 cM based on 221 molecular marker loci, a total of 81 QTLs were identified for the 15 traits studied (three leaf areas as the source, total spikelets per panicle as the sink, the number of large vascular bundles in the stem as transport tissue, three source to sink ratios, three transport tissue to source ratios, one transport tissue to sink ratio and three yield traits). The amount of variation explained by individual QTLs ranged from 1.12% to 24.14%. Five QTLs were identified to show interaction effects with the environment, which explained from 3.19% to 9.15% of the variation. The results showed that close linkage or pleiotropy is the genetic basis for the correlations of grain yield traits with source, sink, transport tissue and the various ratios among them. Of the 25 QTLs identified for source-sink-transport tissue trait, and 43 for various ratios, 8 and 22 QTLs, respectively, were mapped to the similar genomic blocks harboring QTLs for yield traits, especially for grain weight. Co-location of QTLs for yield traits with those for ratios among source, sink and transport tissue may provide a genetic explanation for the physiological expression of yield traits, and also suggest that improvement in ratios among source, sink and transport tissue may result in improvement in yield potential.  相似文献   

14.
Five recombinant inbred lines (RILs) of Arabidopsis (Arabidopsis thaliana), previously selected from the Bay-0 x Shahdara RIL population on the basis of differential leaf senescence phenotypes (from early senescing to late senescing) when cultivated under nitrogen (N)-limiting conditions, were analyzed to monitor metabolic markers related to N assimilation and N remobilization pathways. In each RIL, a decrease of total N, free amino acid, and soluble protein contents with leaf aging was observed. In parallel, the expression of markers for N remobilization such as cytosolic glutamine synthetase, glutamate dehydrogenase, and CND41-like protease was increased. This increase occurred earlier and more rapidly in early-senescing lines than in late-senescing lines. We measured the partitioning of (15)N between sink and source leaves during the vegetative stage of development using (15)N tracing and showed that N remobilization from the source leaves to the sink leaves was more efficient in the early-senescing lines. The N remobilization rate was correlated with leaf senescence severity at the vegetative stage. Experiments of (15)N tracing at the reproductive stage showed, however, that the rate of N remobilization from the rosettes to the flowering organs and to the seeds was similar in early- and late-senescing lines. At the reproductive stage, N remobilization efficiency did not depend on senescence phenotypes but was related to the ratio between the biomasses of the sink and the source organs.  相似文献   

15.
Knowledge of natural variation among ecotypes and recombinant inbred lines of Arabidopsis thaliana L. Heynh for season-long water-use efficiency (WUE, moles of carbon accumulated per mole of water used) is useful in the design of experiments to understand the genetic control of this phenomenon. Water-use efficiency among 31 container-grown Arabidopsis ecotypes ranged from a high of 2.40 to a low of 1.86 mg/g (grams of dry aerial biomass per gram of water used). Genetic variance for WUE was observed among 80 F5 recombinant inbred lines (RILs) derived from a cross between the highest (Lip-0) by the lowest (Edi-0) ecotype. The heritability of WUE was calculated as 0.18 ± 0.07. The mean WUE for the ten highest and ten lowest RILs was 2.42 and 1.05 mg/g, respectively. A significant difference was observed in the composition of stable isotopes of plant carbon (δ13C) between the mean of the ten highest (-31.23±) and the mean of the ten lowest (-31.96±) RILs based on WUE. Characterization of the 80 RILs provides a structured population for further genetic and physiologic study of WUE.  相似文献   

16.
研究品种之间群体耗水特性的差异及其关键影响因素,为品种耗水特性评价与低耗水品种鉴选方法提供依据。选用水分亏缺条件下产量差异不显著,但耗水量差异极显著的冬小麦品种晋麦47和京411及其15个近等基因系为实验材料。利用防雨池和防雨棚开展实验,模拟水分亏缺条件。监测全生育期土壤水分含量,计算总耗水量,收获后测定籽粒产量,计算水分利用效率(WUE)。同时,分别在拔节-孕穗期、抽穗-开花期和灌浆期3个不同生育期监测冠层-大气温度差值(CTD)、叶片蒸腾速率和气孔导度。结果表明,3个不同生育期,15个近等基因系及其亲本之间,CTD均达到显著差异。CTD的方差分析表明,基因型和年份均对不同生育期的CTD有显著影响,但是二者之间仅在抽穗-开花期存在互作(P=0.0002)。15个近等基因系及其亲本之间耗水量存在显著差异,产量没有显著差异。源于耗水量的差异,部分品种/系之间WUE达显著差异。3个不同生育期,15个近等基因系及其亲本之间,CTD与总耗水量均呈极显著负相关关系。抽穗-开花期最高,2012—2013年度和2016—2017年度分别达到0.7042和0.6095。叶片蒸腾速率和气孔导度与群体总耗水量之间相关性很弱,3个生育期均未达到显著水平。对该组近等基因系材料,影响群体总耗水量的关键因素不是叶片蒸腾生理特性,而是群体冠层生长特性。表明构建合理的群体冠层结构不仅是获得高产的途经,而且是调控群体总耗水量,提高品种水分利用效率的重要途径。  相似文献   

17.
Response of predators to herbivore-induced plant volatiles can affect the length of time a predator spends in a prey patch and the probability of a predator finding a new prey patch. Variation in response to herbivore-induced plant volatiles may lead to different foraging decisions among individuals, thereby affecting both within-patch dynamics and between-patch dispersal. We found significant phenotypic and additive genetic variation in two behavioral assays of response to herbivore-induced plant volatiles among inbred isofemale lines of the predatory mite, Phytoseiulus persimilis. In wind-tunnel tests to measure patch residence time, adult female predators from certain lines left prey patches sooner than others when a distant source of herbivore-induced plant volatiles was presented; whereas such variation disappeared when no distant volatiles were presented. In a measure of patch location, certain lines were more likely than others to locate a prey-infested leaf disc; again there was no difference when uninfested leaf discs were used. Patch location was negatively correlated with patch residence. That is, lines that were more likely to leave a prey patch in the presence of distant volatiles were also more likely to find an odor source (ie, prey patch) from a distance of 20 cm. These two foraging-related behaviors are heritable. A continuous distribution of both behaviors indicated that several to many loci may be responsible for these behavioral traits. Our line-crossing experiments suggested that maternal influence could be excluded. Substantial phenotypic variation in two other foraging-related traits, consumption and oviposition, were also detected among inbred lines. Consumption and oviposition were positively correlated; however, the relationship (slope) varied among inbred lines, suggesting that predatory mites vary in food conversion efficiency. A relationship was detected between patch residence and consumption. Patch location, as one important foraging trait, appeared to be negatively related to consumption, suggesting a trade-off between searching for patches and reproduction.  相似文献   

18.
金矮生苹果土壤水分合理供给范围研究   总被引:3,自引:2,他引:1  
王克勤 《应用生态学报》2003,14(9):1533-1537
对7年生田间和2年生盆栽金矮生苹果(Malus pumila)不同土壤水分(SWC)条件下水分利用效率(WUE)研究表明。SWC约为10%时,WUE最大值在所有处理中最高(230μmolCO2·g-1 H2O);在水分供应充足时,WUE最大值只有160μmolCO2·g-1 H2O左右,各SWC水平间差异不显著.WUE随SWC的变化与光照条件有关。  相似文献   

19.
不同年代推出的冬小麦品种叶片气体交换日变化的差异   总被引:3,自引:0,他引:3  
选择 6 0年来北京地区广泛种植的 3个冬小麦 (TriticumaestivumL .)品种 ,在相同的环境条件下种植。为了研究它们的产量与单位叶面积的净光合速率 (Pn)的关系 ,测定了不同生育期Pn、蒸腾速率 (Tr)的日变化 ,并用Pn/Tr计算叶片瞬时的水分利用率 (WUE)。结果表明 :单位叶面积净光合速率与产量之间的关系随生育期不同而变化。在拔节期高产品种“京冬 8号”(九十年代推出 )的光合速率和蒸腾速率在一天中总是最高 ,一天中差异最大时 ,分别比低产品种“燕大 1817”(四十年代推出 )高 77%和 6 9%。而其水分利用率却小于低产品种。这种差异随小麦的生长发育而变化 ,一般上午 10 :0 0前“京冬 8号”的光合速率较高 ,而 10 :0 0后“燕大 1817”的光合速率较高。到腊熟期 ,低产品种“燕大 1817”的光合速率在一天中始终最高。蒸腾速率的变化规律与光合速率相似 ,然而“燕大1817”叶片的水分利用率一般最高。与现代推出的品种不同 ,老品种“燕大 1817”叶片的光合作用午休现象不明显 ,说明它可能具有一定的抗光氧化性。我们认为 ,在品种改良的过程中 ,叶片光合作用的潜力可能有所提高 ,但它的抗光氧化性可能减弱。  相似文献   

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