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1.
开放式空气CO2浓度增高对水稻颖花分化和退化的影响   总被引:16,自引:4,他引:12  
在大田栽培条件下 ,研究开放式空气CO2 浓度增加 (FACE) 2 0 0 μmol·mol-1的处理对水稻每穗 1、2次枝梗及其颖花的分化数、退化数、现存数及退化率的影响 .结果表明 ,FACE处理对每穗 1、2次枝梗的分化数及 1次枝梗的退化数、退化率均无显著影响 ,但使 2次枝梗的退化数、退化率显著提高 ,使 2次枝梗现存数明显减少 ;FACE处理对每穗 1、2次颖花的分化数和 1次颖花的退化数、现存数、退化率均无显著影响 ,但使每穗 2次颖花的退化数和退化率显著提高 ;FACE处理使每穗颖花现存数显著减少主要是因为FACE处理使现存 1次枝梗上 2次枝梗大量退化引起 2次颖花退化所致 ;FACE处理使 1次颖花现存数占全穗的比率显著增加 ,使 2次颖花现存数占全穗的比率显著降低 .  相似文献   

2.
在大田栽培条件下,研究开放式空气CO2浓度增加(FACE)200μmol·mol-1的处理对水稻每穗1、2次枝梗及其颖花的分化数、退化数、现存数及退化率的影响.结果表明,FACE处理对每穗1、2次枝梗的分化数及1次枝梗的退化数、退化率均无显著影响,但使2次枝梗的退化数、退化率显著提高,使2次枝梗现存数明显减少;FACE处理对每穗1、2次颖花的分化数和1次颖花的退化数、现存数、退化率均无显著影响,但使每穗2次颖花的退化数和退化率显著提高;FACE处理使每穗颖花现存数显著减少主要是因为FACE处理使现存1次枝梗上2次枝梗大量退化引起2次颖花退化所致;FACE处理使1次颖花现存数占全穗的比率显著增加,使2次颖花现存数占全穗的比率显著降低.  相似文献   

3.
超高产杂交稻两优培九的光合作用、光抑制和C4途径酶特性   总被引:11,自引:1,他引:10  
比较研究了超高产杂交稻(Oryza sativa L.)两优培九和常规杂交稻汕优63剑叶的光合气体交换、光抑制, 以及其剑叶和稃片中的C4酶活性. 发现两优培九和汕优63的光饱和同化速率(Asat)与汕优63相差无几, 但是, 其表观量子效率(AQY)、羧化效率(CE)和CO2同化的量子效率(FCO2)都远远高于汕优63. 强光条件下, 超高产杂交稻两优培九表现出比汕优63更强的抗光抑制能力, 并且具有较高的以叶黄素循环为量度的非辐射能量耗散. 此外, 两优培九的剑叶和稃片中的C4途径酶活性均高于汕优63. 这些结果表明, 较高的光能和CO2利用效率、较强的抗光抑制能力, 以及剑叶和稃片中C4途径的较高表达可能是超高产杂交稻两优培九高产的重要保证.  相似文献   

4.
以籼型常规早稻中嘉早17为材料,于盆栽条件下采用人工气候箱控温,在水稻穗分化一次枝梗原基分化期(Ⅱ)与花粉母细胞减数分裂期(Ⅵ)进行17和20 ℃的低温胁迫处理,研究不同低温对水稻枝梗、颖花分化与退化及籽粒充实的影响.结果表明: 与对照相比,不同低温处理均显著降低每穗枝梗及颖花分化数和现存数,颖花现存数降幅为7.2%~12.4%,同时增加了枝梗和颖花的退化数,影响了花粉活性、花药开裂等花器官发育,导致籽粒充实不良,以17 ℃低温胁迫效应更明显.穗分化Ⅵ期低温处理总枝梗和颖花分化数与现存数低于穗分化Ⅱ期,但二次枝梗和颖花退化数较多,颖花退化数较穗分化Ⅱ期高11.6%;穗分化Ⅱ期低温处理穗部籽粒结实率显著低于穗分化Ⅵ期,降幅达3.7%,主要与花粉粒活性、柱头花粉散落数、花药开裂系数和籽粒充实度受低温影响较大有关.另外,穗分化Ⅱ、Ⅵ两时期受17 ℃低温胁迫效应大于20 ℃.综合穗分化两时期低温胁迫效应的差异,生产中需加强相应栽培措施的调控.  相似文献   

5.
大豆对臭氧、二氧化碳及其复合效应的响应   总被引:5,自引:0,他引:5  
以大豆‘中黄14'为试验材料,首次模拟研究大气中O3、CO2浓度增加,及其逐渐和持续增加O3、CO2浓度复合效应对大豆的影响.结果表明,CO2浓度增加可缓解O3对叶片的伤害程度,受害时间推迟,受害症状无实质性变化.熏气20 d测定各处理叶片生理参数发现,在本底大气环境下,叶片气孔阻力和蒸腾速率与对照差异较小,熏气时O3、CO2浓度增加诱导叶片气孔关闭,气孔阻力明显增加,蒸腾速率显著降低.与对照相比,O3浓度增加,大豆干物质积累、产量和收获指数明显降低,籽粒粗脂肪含量明显减少,粗蛋白含量显著增加;CO2浓度增加,干物质积累和产量显著提高,收获指数无明显差异,籽粒粗脂肪和粗蛋白含量均明显减少;逐渐和持续增加O3和CO2浓度复合效应处理下,大豆干物质积累、产量和收获指数差异不明显,籽粒粗蛋白含量不同程度地减少,粗脂肪含量显著增加.  相似文献   

6.
以19个水稻杂交组合为试验材料,通过大田条件下的分期播种,于抽穗期调查了稻穗枝梗、颖花分化、退化及形成有关性状,分析了各性状不同季节的变异及其相互关系。结果表明,单穗一次枝梗分化数、二次枝梗分化数、颖花分化数、一次枝梗退化数、二次枝梗退化数、颖花退化数、一次枝梗退化率、二次枝梗退化率、颖花退化率、一次枝梗形成数、二次枝梗形成数、一次枝梗颖花形成数、二次枝梗颖花形成数和单穗颖花总形成数等性状均存在较大的组合间差异和季节间变异,其中19个组合单穗颖花总形成数异季差异率变幅为5.12%~93.59%,平均变异率为34.19%;总体上,不同季节下二次枝梗各性状的变异性强,颖花性状其次,一次枝梗各性状变异性最小;根据异季条件下稻穗枝梗和颖花分化、退化及其形成性状的变异性,从大穗角度讨论了杂交稻新组合育种资源选择与利用问题。  相似文献   

7.
对低浓度Na2CO3胁迫下星星草幼苗相对电导率、O-2产生速率、H2O2含量以及保护酶CAT、SOD和POD活性的研究结果表明,低盐胁迫1 d后,星星草幼苗细胞膜的通透性、O-2产生速率、H2O2含量及保护酶活性都随着盐胁迫的加剧而升高,其具体的变化规律与盐胁迫强度和幼苗细胞膜的受损伤程度密切相关,但相关关系的性质上具有差异。  相似文献   

8.
浓度升高对油松针叶抗氧化系统的影响   总被引:2,自引:0,他引:2  
卢涛  何兴元  陈玮 《生态学杂志》2009,28(7):1316-1323
利用开顶箱模拟大气O3与CO2浓度升高,对油松进行了连续4个月的熏蒸实验,探讨了油松针叶抗氧化系统化系统的响应。结果表明:1)高浓度O3显著增加了油松针叶过氧化氢的积累,到处理后期过量的过氧化氢显著地抑制了抗氧化酶活性,如SOD和APX,并且抗坏血酸被耗竭,加剧了膜质过氧化,最终导致了严重氧化伤害;2)高浓度CO2处理中油松针叶抗氧化酶活性普遍低于对照,ASA含量显著高于对照,可能是高CO2浓度促进ASA合成,或者是ASA的消耗减少,到处理后期使H2O2含量比对照降低了15.5%,从而减轻了膜质过氧化产物丙二醛含量,减轻了氧化伤害;3)与O3单因素相比,在协同处理中油松针叶具有较高的抗氧化酶活性和ASA含量,说明高CO2浓度减轻了高O3对抗氧化酶活性的抑制作用,并且提高了针叶内ASA含量,增强了针叶的抗氧化能力,有效地控制了ROS的产生与清除平衡,缓解了高O3带来的氧化伤害。  相似文献   

9.
为了探讨牧草对碱胁迫的耐受程度,采用营养液砂培方法,研究了不同浓度NaHCO3(0、50、100、150和200 mmol·L-1)胁迫对黑麦草幼苗根系生长、活性氧代谢和渗透溶质积累的影响。结果表明:NaHCO3胁迫显著抑制黑麦草幼苗根系的生长,其抑制程度随胁迫浓度提高而增强,黑麦草可耐受的最高NaHCO3浓度约为150 mmol·L-1。随着NaHCO3胁迫浓度的增加,黑麦草根中超氧阴离子(O2)、过氧化氢(H2O2)和丙二醛(MDA)含量明显上升,超氧化物歧化酶(SOD)活性和谷胱甘肽(GSH)含量显著下降,过氧化氢酶(CAT)、过氧化物酶(POD)和抗坏血酸过氧化物酶(APX)活性及抗坏血酸(ASA)含量先升后降。黑麦草根中Na+含量随NaHCO3浓度增大而增加,K+含量和K+/Na+比降低,可溶性糖含量先升后降,脯氨酸含量则先降后升,游离氨基酸含量呈先升后降再升高变化。表明碱胁迫导致的活性氧代谢失调和Na+、K+失衡及积累有机溶质进行渗透调节时更多能量的消耗可能是黑麦草根系生长受抑的重要因素。  相似文献   

10.
外源亚精胺和精胺对NaHCO3胁迫下南蛇藤抗氧化系统的影响   总被引:1,自引:0,他引:1  
研究了叶面喷施亚精胺和精胺对NaHCO3胁迫下南蛇藤叶片抗氧化系统的影响.结果表明:外源亚精胺和精胺处理使NaHCO3胁迫下南蛇藤叶片O2-·产生速率、H2O2、丙二醛(MDA)含量和电解质外渗率显著降低(P<0.05).亚精胺处理明显提高了盐胁迫下超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)和抗坏血酸过氧化物酶(APX)等抗氧化酶的活性,以及还原型谷胱甘肽(GSH)、类胡萝卜素(CAR)和脯氨酸(Pro)等抗氧化剂的含量,但对还原型抗坏血酸(AsA)含量没有作用;精胺处理明显提高NaHCO3胁迫下POD和APX的活性以及GSH、CAR和Pro的含量,但对SOD和AsA含量影响不显著,甚至引起CAT活性明显降低.亚精胺和精胺处理明显改善了NaHCO3胁迫下南蛇藤的生长.外源亚精胺和精胺可以改善NaHCO3胁迫下南蛇藤叶片的膜保护功能,减少叶片中活性氧的积累,从而提高南蛇藤对NaHCO3胁迫的抗性.  相似文献   

11.
Chlorophyll content (SPAD values) of leaves, 1-aminocyclopropane-1-carboxylic acid synthase (ACS) activities and ethylene production of inferior spikelets, aboveground biomass, grain yield, and yield components were studied to compare the effects of 1-methylcyclopropene (1-MCP) on plant growth, and inferior spikelet development in hybrid rice (Oryza sativa L.) differing in panicle architectures. There were four hybrid rice cultivars in this trial, including two lax-panicled cultivars, Liangyoupeijiu (LYPJ) and Guodao 6 (GD6), and two compact-panicled cultivars, Yongyou 9 (YY9) and Yongyou 12 (YY12). Results showed that chlorophyll content of leaves in 1-MCP treatment was higher than control (CK) after application of 1-MCP. ACS activities and ethylene production in 1-MCP treatment for LYPJ, GD6, and YY9 were significantly decreased compared to their corresponding CK. Aboveground biomass and grain yield of cultivars were increased with the increase of chlorophyll content of leaves, but decreased with the increase of ACS activities and ethylene production of inferior spikelets. On average, grain yield in 1-MCP treatment for LYPJ was increased by 7.3 % compared to CK, GD6 was increased by 2.6 %, YY9 was increased by 3.2 %, and YY12 was increased by 0.8 %, respectively. Application of 1-MCP showed marked effects on increasing spikelet fertility and harvest index of cultivars, but exhibited little effects on improving sink capacity and 1,000-grain weight. Our results indicate that 1-MCP could play a positive role in regulating the growth and development of hybrid rice with lax panicles or with compact panicles.  相似文献   

12.
不断升高的大气CO2浓度影响水稻颖花发育、灌浆结实和品质形成,但这种影响是否与籽粒在稻穗上的着生部位有关尚不清楚.利用稻田FACE (Free-Air CO2 Enrichment)平台,以优质丰产粳稻‘武运粳23’为材料,CO2处理设背景CO2浓度(Ambient)和高CO2浓度(增200 μmol·mol-1, FACE)两个水平,研究开放大田条件下高浓度CO2对水稻颖花密度、籽粒结实能力、稻米外观和食味品质的影响及其与稻穗不同着生位置的关系.结果表明:FACE处理使武运粳23籽粒产量平均增加18.3%,从产量构成因素看,穗数和饱粒重分别增加21.4%、9.4%,每穗颖花数、饱粒率平均减少9.0%、2.2%.FACE水稻饱粒率下降主要与稻穗不同部位空粒率大幅增加有关.FACE水稻每穗颖花数减少主要与稻穗上部、中部二次枝梗现存颖花大幅减少有关,而其他位置颖花数均无显著变化;稻穗不同位置饱粒重和饱粒率对FACE的响应无显著差异.FACE处理使绿粒率下降,但糙米长度和宽度均增加,稻穗不同部位趋势一致.FACE使垩白粒率(增幅59%)、垩白度(增幅55%)均极显著增加,增幅表现为稻穗一次枝梗>二次枝梗、上部>中部>下部.FACE使稻穗不同位置稻米直链淀粉含量略增,使最高粘度、热浆粘度、崩解值、最终粘度和消减值略降,但多未达显著水平.FACE使稻米糊化温度显著下降,弱势粒的降幅大于强势粒.综上,高浓度CO2环境下武运粳23产量增加主要与穗数增多和籽粒增重有关,而稻穗明显变小;高浓度CO2使稻米绿粒率减少,垩白增多,而对蒸煮食味品质影响较少;颖花着生位置对高浓度CO2环境下水稻颖花发育、结实和品质的影响因不同测定指标而异.  相似文献   

13.
基因型×环境互作效应对水稻穗部性状杂种优势的影响   总被引:1,自引:0,他引:1  
梁康迳 《生态学杂志》1999,10(6):683-688
采用包括基因型×环境互作效应的加性显性加性×加性上位性遗传模型,分析了籼粳杂交穗部性状杂种优势的两年资料。结果表明,7个穗部性状的杂种优势既由基因型控制也受环境(年份)互作效应影响。主穗粒数、主穗长、一次和二次枝梗总长和着粒密度表现较强的正向群体平均优势,而一次和二次枝梗数则表现显着的负向优势。基因型×环境互作预测结果表明,主穗粒数、主穗长、一次枝梗总长在两年中的环境互作表现正效应,一次和二次枝梗数则为负效应,着粒密度和二次枝梗总长表现不同方向的效应。利用IR66158-37(P1)、IR65600-85(P2)、明恢63(P4)和R669(P6)进行杂交配组,其杂种后代易获得重穗型的穗部结构,可在超高产育种中加以利用。  相似文献   

14.
Reduction of grain yield (total seed weight) by ozone in rice (Oryza sativa L.) is believed to be caused by ozone-induced reduction of photosynthetic activity followed by growth inhibition. Here, japonica rice cultivar Sasanishiki and indica rice cultivar Habataki showed different responses to ozone. When exposed to ozone, the leaves of Habataki exhibited no critical damage, whereas those of Sasanishiki developed lesions. Conversely, ozone exposure reduced total seed weight by 19% in Habataki, but not significantly in Sasanishiki. Chronic ozone exposure also significantly decreased culm length, number of primary rachis branch, and number of spikelets per panicle in Habataki. QTL analysis in Sasanishiki/Habataki chromosome segment substitution lines identified a single locus associated with the yield loss caused by ozone on chromosome 6 of Habataki close to marker RM3430 (107.6 cM). A QTL for reduction of primary rachis branch number and total spikelet number was found in the same position. These results indicate that a QTL on chromosome 6 has an important role in ozone-induced yield loss, and is also involved in primary rachis branch formation and total spikelet number in ozone-exposed rice.  相似文献   

15.
Yuan Guo  Delin Hong 《遗传学报》2010,37(8):533-544
To identify quantitative trait loci (QTLs) controlling panicle architecture in japonica rice, a genetic map was constructed based on simple sequence repeat (SSR) markers and 254 recombinant inbred lines (RILs) derived from a cross between cultivars Xiushui 79 and C Bao. Seven panicle traits were investigated under three environments. Single marker analysis indicated that a total of 27 SSR markers were highly associated with panicle traits in all the three environments. Percentage of phenotypic variation explained by single locus varied from 2% to 35%. Based on the mixed linear model, a total of 40 additive QTLs for seven panicle traits were detected by composite interval mapping, explaining 1.2%-35% of phenotypic variation. Among the 9 QTLs with more than 10% of explained phenotypic variation, two QTLs were for the number of primary branches per panicle (NPB), two for panicle length (PL), two for spikelet density (SD), one for the number of secondary branches per panicle (NSB), one for secondary branch distribution density (SBD), and one for the number of spikelets per panicle (NS), respectively. qPLSD-9-1 and qPLSD-9-2 were novel pleiotropic loci, showing effects on PL and SD simultaneously. qPLSD-9-1 explained 34.7% of the phenotypic variation for PL and 25.4% of the phenotypic variation for SD, respec- tively. qPLSD-9-2 explained 34.9% and 24.4% of the phenotypic variation for PL and SD, respectively. The C Bao alleles at the both QTLs showed positive effects on PL, and the Xiushui 79 alleles at the both QTLs showed positive effects on SD. Genetic variation of panicle traits are mainly attributed to additive effects. QTL × environment interactions were not significant for additive QTLs and additive × additive QTL pairs.  相似文献   

16.
This study tested the hypothesis that polyamines (PA) and ethylene (ETH) mediate the effects of soil drought on spikelet development in rice (Oryza sativa L.). Two rice cultivars, Yong You-2640 and Yang Dao-6, with vastly different panicle sizes were grown in pots under three soil moisture treatments: well-watered (WW), moderate soil drought (MD) and severe soil drought (SD), from the onset of panicle initiation to the pollen completion stage. MD treatment significantly increased spikelet differentiation, spikelet number per panicle, fully filled grain percentage and grain yield, decreasing the percentage of degenerated spikelets, sterile spikelets and partially filled grains compared to WW treatment. In contrast, SD treatment showed opposite effects. MD also increased the contents of free spermidine (Spd), free spermine (Spm) and the ratios of free putrescine, free-Spd and free-Spm to 1-aminocylopropane-1-carboxylic acid (ACC), decreasing the ETH evolution rate and ACC content in young panicles. In contrast, SD treatment showed opposite effects. Furthermore, free-Spd and free-Spm contents increased significantly, while ETH and ACC levels, and the percentage of degenerated and sterile spikelets decreased significantly under application of Spd or an inhibitor of ETH synthesis. The results were reversed when ACC or an inhibitor of Spd and Spm synthesis was applied. These findings suggest antagonistic interactions between free-PA (Spd and Spm) and ETH in response to soil drought, mediating spikelet development in rice.  相似文献   

17.
Apical dominance in assimilate filling impacts grain growth in basal spikelets of rice panicle. In this study, organic materials of the pericarp, apoplasmic space and endosperm of the apical and basal caryopses, and photosynthesis of the flag leaf were measured during early part of grain development in three types of rice cultivars with similar phenology, but difference in grain weight and size in the dry and wet seasons of 2006 and 2007, respectively. Photosynthetic activity of the flag leaf was consistently low in small-seeded cultivars. Rates of grain filling and cell division of endosperm and concentration of assimilates, starch, proteins and chlorophylls of the caryopsis were lower, but spikelet ethylene production and peroxidase activity were higher in a small-seeded cultivar compared to a big-seeded cultivar. Similar disparities in grain filling and other attributes were noticed for the inferior basal spikelets of the panicle compared to the superior apical spikelets, except the assimilate concentration of the pericarp and endosperm. Temporal fluctuation in assimilate concentration of the organs were similar between the cultivars. Concentration of apoplasmic assimilates mostly exhibited negative correlation with that of pericarp and endosperm. Compared to the apical spikelets, correlation was more negative for the basal spikelets. Conversely, correlation was positive between the concentration of apoplasmic assimilates and endosperm cell number and grain weight of the cultivars. Ethylene released from the spikelets at anthesis affected growth and cell division rates of endosperm and enhanced protein and chlorophyll degradation and peroxidase activity of the caryopsis. It was concluded that variation in spikelet ethylene production may be responsible for differences in size or weight of grains among rice cultivars and spikelets at different locations of the panicle. The concentration of apoplasmic assimilates could be an indicator for grain filling capacity, and ethylene regulated the concentration by affecting pericarp activity for assimilate unloading.  相似文献   

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