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1.
以两系杂交水稻晶两优534为材料,研究了6个不同栽插株数对水稻分蘖动态和产量的影响。结果表明,不同栽插株数条件下,产量以栽插1~2株/穴的T1(8 507.25 kg/hm~2)和T2(8 577.15 kg/hm~2)处理为较高,显著高于其他处理。T1和T2处理的单株分蘖能力较强,分蘖成穗率、有效穗数和结实率较高,而每穴插3~6株的T3~T6处理,随着每穴栽插株数的增多,单株分蘖力降低,无效分蘖增多,有效穗数、结实率逐渐降低。相关分析表明,产量与有效穗数、结实率、千粒重均呈极显著正相关,与每穗总粒数呈极显著负相关。通径分析表明,有效穗数对产量的直接作用最大,每穗总粒数、结实率和千粒重通过有效穗数对产量产生的间接作用较大。说明不同栽插株数下,影响晶两优534产量的主要因素是有效穗数,生产上机插苗数建议以每穴2苗为宜,有利于提高水稻分蘖成穗率,同时协调每穗总粒数、结实率、千粒重等产量因子而获得高产。  相似文献   

2.
【目的】研究氮肥减施后中日粳稻品种杂交构建的重组自交系(RIL)群体株型、产量和米质性状的变化规律及其相互关系。【方法】以中国东北地区典型的直立穗型水稻辽粳5号与日本的优质米水稻秋田小町(弯曲穗型)杂交构建的RIL群体为试材,在高氮和低氮两种施肥模式下,调查株型、产量及米质性状,分析三者间的关系,探讨高产、稳产、高食味值类型株系的共同特征。【结果】氮肥减施后RIL群体齐穗期提前,株高降低,剑叶、倒2叶、倒3叶叶片变窄变短,剑叶基角变小,倒3叶基角变大,结实率、千粒重、经济系数增大,单株穗数减少,产量下降,糙米率和精米率提高,食味值提高。在两种施肥模式下,高产高食味值类型株系与低产低食味类型株系的显著区别是植株较高,叶片长,穗子长,一次枝梗结实率高,着粒密度较小;高产稳产类型株系的共同特征是剑叶较窄、剑叶基角较大;高产稳产高食味值类型株系的共同特征是剑叶和倒2叶较窄。【结论】株型特征可以用来间接选择高产、稳产、高食味值的水稻品种。  相似文献   

3.
【目的】研究氮肥减施后中日粳稻品种杂交构建的重组自交系(RIL)群体株型、产量和米质性状的变化规律及其相互关系。【方法】以中国东北地区典型的直立穗型水稻辽粳5号与日本的优质米水稻秋田小町(弯曲穗型)杂交构建的RIL群体为试材,在高氮和低氮两种施肥模式下,调查株型、产量及米质性状,分析三者间的关系,探讨高产、稳产、高食味值类型株系的共同特征。【结果】氮肥减施后RIL群体齐穗期提前,株高降低,剑叶、倒2叶、倒3叶叶片变窄变短,剑叶基角变小,倒3叶基角变大,结实率、千粒重、经济系数增大,单株穗数减少,产量下降,糙米率和精米率提高,食味值提高。在两种施肥模式下,高产高食味值类型株系与低产低食味类型株系的显著区别是植株较高,叶片长,穗子长,一次枝梗结实率高,着粒密度较小;高产稳产类型株系的共同特征是剑叶较窄、剑叶基角较大;高产稳产高食味值类型株系的共同特征是剑叶和倒2叶较窄。【结论】株型特征可以用来间接选择高产、稳产、高食味值的水稻品种。  相似文献   

4.
【目的】探讨淮糯12田间综合表现和高产栽培技术。【方法】以皖稻68为对照品种,采用单本和双本栽插方式,研究不同栽插方式对淮糯12经济性状、抗性和产量的影响,并总结了其高产栽培技术。【结果】采用双本栽插,淮糯12穗数较皖稻68少18.0万/hm^2,穗实粒数较皖稻68多18.5粒,平均产量为8655.0kg/hm^2,较单本栽插增产20.2%,较双本栽插的皖稻68增产10.6%。田间表现抗白叶枯病,抗穗颈瘟,中感纹枯病,高抗条纹叶枯病。栽培上要注意培育壮秧、合理密植、配方施肥和病虫草害防治。【结论】淮糯12产量高、抗病性较好,分蘖力较弱,适宜双本栽插.  相似文献   

5.
采用裂区试验,以品种生态类型为主区,品种为副区,选择5个中熟中粳水稻品种为材料,以杂交籼稻为对照,研究籼粳稻生态性状在苏北睢宁县的表现。结果表明:粳稻的株高显著低于杂交籼稻;粳稻叶片短而挺,稻穗直立且着粒密,表现较强的抗倒能力;粳稻大田期的出叶速度明显快于杂交籼稻,同期抽穗的粳稻主茎叶片数多于杂交籼稻;粳稻的分蘖力明显弱于杂交籼稻,但成穗率显著高于杂交籼稻。在产量构成性状上,粳稻大部分是中穗型品种,有效穗明显多于杂交籼稻,千粒重与杂交籼稻相当,正常情况下结实率高于杂交籼稻,属穗粒兼顾型品种,在精确定量栽培下容易取得高产。产量结果分析表明粳稻比杂交籼稻具有产量优势。在现行价格下,试验中的粳稻每667 m2收入比杂交籼稻多166.6元,可见,在苏北推广"籼改粳"能增加种植者的收入。  相似文献   

6.
【目的】通过喷施多效唑来达到高产所需的足穗,解决南方晚粳稻有效穗数不足的问题。【方法】设计以品种为主区、多效唑浓度为副区的裂区试验。以镇稻11和甬优2640为晚粳稻材料,以晚籼稻H优518为对照;多效唑浓度(以有效成分计)分别设A1(0 mg/L)、A2(84 mg/L)、A3(120 mg/L)、A4(156 mg/L)和A5(192mg/L)共5种施用水平。2014—2015年评估了不同浓度多效唑对南方晚粳稻秧苗素质、茎蘖动态及产量的影响。【结果】随多效唑浓度增加,2年各品种秧苗苗高均逐渐降低;H优518及甬优2640秧苗叶龄及SPAD值逐渐增加,而镇稻11却先增后降;三品种秧苗单株根长、根数、分蘖数以及有效穗数、结实率、籽粒充实度和产量均随苗期喷施多效唑浓度的增加呈现先增后降趋势,其中H优518及甬优2640两品种的上述指标均在A4时最高,镇稻11在A3表现最佳。【结论】喷施适宜浓度多效唑可显著提高水稻秧苗素质、有效穗数及产量。其中,H优518及甬优2640以A4(156 mg/L)时产量表现最好,而镇稻11却在A3(120 mg/L)时产量达到最高。  相似文献   

7.
常规粳稻在安徽沿江稻区的特征特性研究   总被引:3,自引:0,他引:3  
以常规粳稻为试验材料,于2010-2015年在安徽沿江稻区的桐城市范岗镇杨安村试验基地,以杂交籼稻、杂交粳稻、常规籼稻为对照,对常规粳稻的特征特性进行了研究。结果表明,常规粳稻具有茎秆矮壮、叶片挺直且短、穗形上翘或直立、穗短且着粒密的植株形态特征和足蘖中穗的经济性状特征;与籼稻相比,常规粳稻表现为感光性强、分蘖率弱,但成穗率高、花时迟,幼穗分化Ⅵ期前后和抽穗扬花期对高温敏感,中后期耐肥等特性。不同播期对常规粳稻经济性状的影响主要表现在单位面积有效穗数和每穗总粒数上,对结实率和千粒重影响较小,常规粳稻随着播期的推迟表现为生物学产量逐渐下降而收获指数逐渐提高。试验结果表明,5月下旬播种、8月底至9月初抽穗的常规粳稻品种为安徽沿江稻区的优势品种,并提出了优势品种的高产栽培技术。  相似文献   

8.
黑龙江水稻主要农艺性状与产量的灰色关联度分析   总被引:1,自引:0,他引:1  
运用灰色系统理论——灰色关联度分析法对7个水稻品种的7个农艺性状与产量的关系进行了分析。结果显示其农艺性状对产量的关联度从高到低依次为千粒重结实率单株有效穗数每穗实粒数穗粒数穗长株高。因此,在水稻高产育种中,应注重千粒重、结实率、单株有效穗数的选择。  相似文献   

9.
为了进一步了解水稻高产育种的参考性状指标,对不同水稻材料的收获指数与产量形成主要性状指标进行相关性研究。结果表明,水稻收获指数与株高、单株有效穗数呈极显著负相关,与孕穗期功能叶片SPAD值呈显著正相关,与单株总粒数、千粒重及结实率呈极显著正相关。因此,在水稻高收获指数种质资源的创制及其杂交种后代材料选择中,需要同时兼顾各个性状指标之间的相互协同性,即选择适当的株高,适量控制单株有效穗数,选择长穗型植株,适当增加单株总粒数,保证合理的千粒重和结实率,塑造理想的水稻高产株型。  相似文献   

10.
应用灰色关联度分析法对6个水稻品种的单株产量及主要农艺性状的关系进行了分析。结果表明:其主要农艺性状对单株产量的关联度从高到低依次为结实率单株有效穗每穗实粒数穗粒数穗长千粒重株高。因此,在水稻高产育种中,应注重对结实率、单株有效穗、每穗实粒数的选择。  相似文献   

11.
【目的】阐明机插栽培对不同类型水稻的干物质生产及产量特性的影响,为四川盆地机插秧的推广、品种选育和高产栽培提供依据。【方法】于2012年在四川盆地以中籼中熟杂交稻、中籼迟熟杂交稻、粳稻三类共计10个品种为材料,研究不同类型水稻品种在机插栽培条件下的干物质生产及产量形成特性。【结果】1)三种不同类型品种的水稻移栽后干物质积累均很好地符合Logistic曲线。中籼中熟杂交稻、中籼迟熟杂交稻物质积累均较快,缓增期短,快增期长,物质积累有一定优势;粳稻物质积累速率小,渐增期、缓增期较长,快增期短,物质积累处于劣势。2)三种类型水稻品种相比,在成熟期中籼中熟杂交稻营养器官干物质所占比例最低,生殖器官干物质所占比例最高;中籼迟熟杂交稻成熟期叶片占比最高,而粳稻则是茎鞘比例高、穗比例低。3)中籼中熟杂交稻、中籼迟熟杂交稻的茎鞘、叶片物质输出率和物质转化率均为正值,但粳稻茎鞘物质输出率、转化率和叶片物质转化率均小于0,叶片物质输出率也仅为1.26%。4)中籼中熟杂交稻的产量、每穗实粒数、籽粒充实率、充实度最高,中籼迟熟杂交稻的结实率、千粒重最大,粳稻的有效穗数、成穗率最高,说明籼稻产量主要与穗部性状有关,而粳稻主要与田间有效穗数有关。【结论】在四川盆地的机插栽培条件下,杂交籼稻需提高其有效穗数、成穗率;粳稻需筛选大穗型品种,提高每穗粒数和籽粒充实度。  相似文献   

12.
双季优质稻产量和品质形成对开放式主动增温的响应   总被引:1,自引:0,他引:1  
目的 水稻是我国最重要的口粮作物。明确气候变暖对双季优质稻产量和稻米品质的影响对我国粮食安全至关重要。方法 采用稻田开放式远红外主动增温系统,早稻以金早47(常规籼稻)、两优287(杂交籼稻),晚稻以象牙香珍(常规籼稻)、万象优华占(杂交籼稻)和甬优5550(杂交粳稻)为材料,设置全生育期增温和全生育期不增温2个处理,分别测定双季优质稻的产量、产量构成和稻米品质。结果 与不增温相比,全生育期増温(1.3℃ ~1.6℃)对早晚籼稻产量影响不显著,但晚粳稻产量显著下降,降幅为10.2%,主要是因为其每穗粒数下降。全生育期增温降低了早晚稻株高;早稻生育期缩短了3~4 d,而晚稻生育期无明显变化。全生育期增温下,双季优质稻米垩白粒率和垩白度显著增加,早稻两优287出糙率和整精米率及晚粳甬优5550整精米率显著提高;同时,晚稻蛋白质含量提高,但晚粳直链淀粉含量降低,而早稻蛋白质和直链淀粉含量无明显变化;此外,稻米RVA谱特征值因季别和品种而异。结论 全生育期增温对优质晚粳稻产量影响大于籼稻,不利于外观品质的保优,但有利于改善优质稻米加工品质,对晚稻营养品质和食味品质的影响也大于早稻。  相似文献   

13.
优质丰产杂交籼稻品种机直播产量构成及其群体质量研究   总被引:6,自引:2,他引:4  
【目的】本研究旨在明确适宜平原(崇州)与丘陵(三台)稻区机直播优质杂交籼稻高产品种群体质量的共性特征,构建规范化的机直播优质杂交籼稻高产品种的鉴选方法和评价标准,以及为杂交籼稻机械化直播配套技术的融合提供理论及实践依据。【方法】两生态区以29个品种为试材,采用人工模拟精量穴直播(以下简称机直播),研究机直播对平原与丘陵稻区不同产量水平的优质杂交籼稻群体质量特征及产量的影响,并探讨机直播优质杂交籼稻群体质量特征与产量间的关系。【结果】依据两生态区各品种的平均籽粒产量聚类分析,将两生态区供试品种分为高产、中产、低产3种类型。其中,三台高产类型品种占17.24%,中产、低产类型品种占82.76%;崇州高产类型品种占10.34%,中产、低产类型品种占89.66%。与中产、低产类型品种相比,两生态区高产类型品种的共性特征为分蘖能力强、有效穗数多、结实率高,拔节期后叶面积指数(LAI)大,干物质累积量高;结实期顶3叶叶长、叶位、叶张角、株高及其顶部截获光能优势明显。相关分析表明,机直播条件下,除群体透光率、顶3叶叶张角、分蘖盛期LAI及干物质累积量外,各群体质量指标与籽粒产量均呈显著或极显著正相关(r =0.37*~0.90**),尤其是齐穗期高效LAI率、成熟期干物质累积量及其收获指数与产量的相关性。【结论】机直播条件下,高产类型品种能够获得较高的有效穗数和每穗实粒数,并协同提高结实率,实现生育后期群体干物质的高增长,从而获得较高产量。  相似文献   

14.
Rice resistance to sheath blight (SB) is controlled by polygenes or quantitative trait loci (QTLs) and affected by plant morphological traits, qSB-9^TQ and TAG1^TQ, which control SB resistance and tiller angle (TA), respectively, were employed to test whether the combination of the two genes will further improve rice SB resistance and reduce yield loss rather than only one of them or neither. Using two pairs of near isogenic lines (NILs), TAC1^TQ was confirmed to contribute to SB resistance. However, its effect was less considerable than that of qSB-9^TQ. Subsequently, the two genes were introduced into two commercial rice varieties to develop a series of NILs. The NILs carrying both TAG1^TQ and qSB-9^TQ showed more resistance than the NILs containing only one of them. Comparing the grain yield per plant (GYP) under the three different SB disease conditions, namely slight, moderate and severe conditions, NILs carrying both genes apparently lost lower GYP than the NILs without the two genes and the NILs carrying only TAC1^TQ. Under slight disease condition, no significant differences were found on morphology, development and GYP associated traits except for TA between the NILs carrying both genes and either of them, indicating that the two genes have no inferior effect on rice agronomic traits. Results indicated that mAC1^TQ and qSB-9^TQ have high breeding potential, and pyramiding SB resistance QTL and morphological trait QTL is a potential approach in improving rice SB resistance.  相似文献   

15.
Genetic Analysis and Gene Mapping of a Rice Tiller Angle Mutant tac2   总被引:1,自引:0,他引:1  
Tiller angle, a very essential agronomic trait, is significant in rice breeding, especially in plant type breeding. A tiller angle controlling 2 (tac2) mutant was obtained from a restorer line Jinhui 10 by ethyl methane sulphonate mutagenesis. The tac2 mutant displayed normal phenotype at the seedling stage and the tiller angle significantly increased at the tillering stage. A preliminary physiological research indicated that the mutant was sensitive to GA. Thus, it is speculated that TAC2 and TAC1 might control the tiller angle in the same way. Genetic analysis showed that the mutant trait was controlled by a major recessive gene and was located on chromosome 9 using SSR markers. The genetic distances between TAC2 and its nearest markers RM3320 and RM201 were 19.2 cM and 16.7 cM, respectively.  相似文献   

16.
【Objective】Our aim is to investigate the differences in response of grain yield, nitrogen absorption and utilization to FACE (atmospheric CO2 concentration increase) of different rice varieties. 【Method】Six rice varieties, including conventional japonica rice, hybrid indica rice, and conventional indica rice, were used to study the effects of free-air CO2 enrichment (FACE) (atmospheric CO2 concentration increase) on the nitrogen absorption, utilization, and yield of different types of rice.【Result】 1) FACE treatment dramatically increased rice yield by 24.17% on average and the maximum increment was observed in conventional indica rice. Compared with other types of rice varieties, hybrid indica showed the highest grain yield under both FACE and control (CK) treatments. 2) Panicle number was significantly improved in FACE treatment with conventional japonica rice varieties having the maximum increment. Spikelet number per panicle was significantly improved in hybrid and conventional indica rice varieties in FACE treatment. 3) The nitrogen absorption (NA) and nitrogen use efficiency for grain yield (NUEg) were significantly higher in FACE treatment than those in CK treatment. The average increase of NA was 21.23% with the maximum increment in hybrid indica rice varieties. Compared with other rice varieties, conventional indica rice varieties had the highest NA both in FACE and CK treatments. The average increase of NUEg was 7.33% with hybrid indica rice varieties enjoying the maximum increment. The hybrid indica rice varieties had the highest NUEg in FACE treatment and in CK treatment, respectively. 4) Nitrogen content was decreased in FACE treatment with the average decrease of 0.105%, among which the maximum decrease was observed in conventional japonica rice. Dry matter weight was extremely and significantly increased in FACE treatment. The average increase of dry weight was 23.95% with the maximum increment in conventional indica rice varieties. NA of single panicle was significantly improved in FACE treatment with the average increase of 10.79% in conventional indica rice varieties and 13.93% in hybrid indica rice varieties, but NA of single panicle was decrease by 9.60% in conventional japonica rice. FACE treatment significantly increased rice NA intensity with an average increase of 22.29% and the maximum increment was observed in hybrid indica rice varieties. The growth duration was not influenced by FACE treatment in all rice varieties. NAs of stem, leaf and panicle were significantly higher in FACE treatment than in CK treatment with the highest increase of 51.86% in leaf. The largest increase of NA was observed in hybrid indica rice. NA in different rice growth stages was significantly improved with the maximum increment of 108.90% during heading-maturity. The maximum increment of NA from heading to maturity was observed in hybrid indica rice varieties.5) Effects of dry matter weight, NA per panicle, NA intensity, NA of panicle and NA from heading to maturity on NA at maturity were greater than those of nitrogen content, panicle number, growth duration, NAA of leaf, stem and sheath, NAA during transplanting-tillering and tillering-heading. 6) Partial productivity of nitrogen fertilizer (PFPN) was significantly improved in FACE treatment with an average increase of 24.16% and the maximum increment in conventional indica rice. NAA per 100 kg grains was significantly reduced in FACE treatment with an average decrease of 4.7%. The maximum decrease of NAA per 100 kg grains was observed in conventional indica rice varieties.【Conclusion】The results indicated that FACE could markedly increased both grain yield and nitrogen use efficiency in all rice varieties, but the increases varied with the variety types.  相似文献   

17.
播种方式和播种密度对杂交籼稻机插秧节本增效的研究   总被引:3,自引:1,他引:2  
【目的】探索机插杂交籼稻稀播育秧秧苗生长特性、栽插质量、产量与效益特点。【方法】以F优498和Ⅱ优498的种子为材料开发并优选条播器后,采用两因素裂区设计,播种方式为主区,播种量为副区。【结果】条播播种均匀度优势明显,24行条播规格效果最佳。播种14 d后,秧苗开始产生分蘖芽,播后17至23 d是分蘖芽发生速率最快时期。随播种密度的增加,成苗率、干物质积累量、根冠比、秧苗充实度、N积累量、分蘖芽发生率、发根力、漏插率都呈降低趋势,同时有效穗数增加,每穗粒数减少,产量先增加后降低。条播相对于散播,秧苗整体素质较好,易形成壮秧,产量较高。【结论】投入与产出综合分析,采用条播方式,播种密度为50 g/盘时,秧苗群体密度和个体优势之间能得到较好的协调,产投比最高。  相似文献   

18.
一个水稻分蘖角度突变体tac2的遗传分析和基因初步定位   总被引:2,自引:0,他引:2  
  水稻散生突变体tac2是以恢复系缙恢10号为材料经甲基磺酸乙酯(EMS)化学诱变所得。该突变体苗期表型正常,分蘖期株型松散,分蘖角度较野生型显著增大,株高明显降低。外源赤霉素处理可以使该突变体株高恢复,但分蘖角度不受影响。遗传分析表明该突变性状受1对隐性主效基因控制。利用分子标记将该基因初步定位于第9染色体上的RM3320与RM201之间,遗传距离分别为19.2和16.7 cM。  相似文献   

19.
新两优6380系南京农业大学水稻研究所用自育恢复系D208与光温敏核不育系03S配组育成的两系杂交中籼稻新组合,2007年1月通过江苏省品种审定。该组合高产稳产,在2004—2006年江苏和国家中籼区试中,产量均居参试组合第1位,比对照极显著增产;耐纹枯病、抗褐飞虱,对稻瘟病和白叶枯病抗性较强,综合抗性突出;米质优良,达国标优质稻谷3级标准;适应性广,适宜在长江中下游稻区中上等肥水条件下作中稻种植。  相似文献   

20.
长江中下游稻区是我国水稻主产区,同时又是单、双季稻混作区。目前,随着经济发展和人民生活水平的提高,人们对优质大米,尤其是优质粳米的需求日益增加,因此,在双季稻生产中引入粳稻具有重要的现实意义。本文介绍了长江中下游双季稻的温光资源特性,总结了现有双季晚(籼/粳)稻品种的种植表现,从产量、产量结构、干物质积累、群体动态、生育期、温光利用率、稻米品质等方面比较了长江中下游稻区晚粳与晚籼的可能差异。总体来说,双季晚粳在产量、每穗粒数、结实率、千粒重等方面均显著高于晚籼;前期干物质积累两者无显著差异,但是后期干物质积累量晚粳要高于晚籼,晚粳的灌浆率显著高于晚籼,这预示着双季晚粳具有更高的产量潜力。粳稻比籼稻有着较平稳的茎蘖动态,这使其具有更强的后期光合能力、更高的后期光能利用率;全生育期晚粳比晚籼长,主要体现在推迟抽穗结实,延长结实灌浆期;粳稻全生育期积温和光照时数均显著高于籼稻,粳稻后期叶面积指数大于籼稻,光合势亦高于籼稻,而在生育前期(拔节至抽穗期)两者对温光资源的利用基本相当,因此温光利用率晚粳显著高于晚籼;另外,晚粳的稻米品质要优于晚籼。因此,相对于双季晚籼,双季晚粳具有更高的应用推广价值。  相似文献   

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