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31.
陇东黄土高原冬小麦生产农业气象要素分析   总被引:15,自引:7,他引:15  
对陇东黄土高原半湿润半干旱气候区旱地冬小麦生长期光、热、水三要素与产量进行了相关分析,得出对冬小麦产量起决定作用的农业气象要素为:孕穗—成熟期光照时数,≥0℃积温,开春土壤含水量 返青—孕穗期降水量(R2 3H)。建立了逐步回归方程,Y=-317.138 0.6317X1 0.4647X2。  相似文献   
32.
Low temperatures may inhibit dormancy break in seeds of winter annuals, therefore it was hypothesized that seeds of Capsella bursa‐pastoris and Descurainia sophia that mature at high latitudes in late summer–early autumn would not germinate until they had been exposed to high summer temperatures. Consequently, germination would be delayed until the second autumn. Most freshly matured seeds of both species collected in August and September in southern Sweden were dormant. After 3 weeks of burial at simulated August (20/10°C) and September (15/6°C) temperatures, 28 and 27%, respectively, of the C. bursa‐pastoris and 56 and 59%, respectively, of the D. sophia seeds germinated in light at 15/6°C. In contrast, in germination phenology studies conducted in Sweden, only a few seeds of either species germinated during the first autumn following dispersal. However, there was a peak of germination of both species the following spring, demonstrating that dormancy was lost during exposure to the low habitat temperatures between late summer and early autumn and spring. Nearly 100% of the seeds of both species subjected to simulated annual seasonal temperature changes were viable after 30.5 months of burial. In the burial study, exhumed seeds of C. bursa‐pastoris were capable of germinating to 98–100% in light at the simulated spring–autumn temperature regime (15/6°C) in both spring and autumn, while those of D. sophia did so only in autumn. In early spring, however, seeds of D. sophia germinated to 17–50% at 15/6°C. Thus, most seeds of these two annual weeds that mature in late summer do not germinate in the first autumn, but they may do so the following spring or in some subsequent autumn or spring.  相似文献   
33.
苜蓿秋眠性研究进展   总被引:6,自引:9,他引:6  
苜蓿Medicago sativa的秋眠性实质上是在秋季日照变短和温度降低时植株所表现出的一种适应性生长特性,这种生长特性与植物的抗寒性和生产性能相关.早在20世纪20年代,美国就发现了这一现象,但直至20世纪70年代末期,随着秋眠性测定方法的发明和分类标准的制订,才使它在苜蓿生产中发挥着越来越重要的作用,在许多国家秋眠性已成为栽培选择品种时的首要指标.概述了秋眠性的概念及发展史、测定方法、有关生理生化研究进展及其在国内外的应用.  相似文献   
34.
2011年10月-2014年10月连续3年在河北省任县安排了定位试验,通过饲用黑麦不同播期与棉花构建几种棉草复种茬口搭配方式,从产量、经济效益、水分利用效率和养分利用效率以及对土壤肥力影响等方面综合分析棉花饲用黑麦复种的可行性及复种方式。结果表明,棉花可与饲用黑麦复种,为降低饲用黑麦对棉花的影响,饲用黑麦可适当推迟到10月20日播种,次年4月底收获,效益可提高5470.1元·hm-2。棉花饲用黑麦复种与棉花单作相比,平均水分利用率提高16.49%;水分经济利用效率提高56.54%;并且土壤有机质平均增长幅度提高5.71%,土壤含盐量平均降低幅度达到23.72%,土壤改良效果明显;是适用于该区域的高效复种模式。  相似文献   
35.
The objective of this study was to ascertain whether mRNA and protein expressions of implantation‐related genes (erythropoietin‐producing hepatocellular receptor–ligand A1, Eph‐ephrin A1 and leptin receptor–leptin, LEPR‐LEP) differed between pigs with high and low number of embryos, and whether these differences in gene expression might affect embryo implantation. Experimental pig groups (n = 24) for high and low number of embryos were prepared by altering the number of eggs ovulated in pre‐pubertal gilts treated with 1.5 × (High) or 1.0 × (Low) PG600 ([400 IU PMSG + 200 IU hCG]/dose, AKZO‐NOBEL). Gilts expressing oestrus were artificially inseminated twice and maintained in breeding and gestation until the reproductive tract was collected on day 22 of pregnancy. At slaughter, the reproductive tracts from each pregnant gilt from each treatment were immediately processed to collect samples for RNA and protein analysis. Within each gilt, three conceptus points were sampled, one from each horn and then a random conceptus within the tract. At each conceptus point, endometrial attachment site, chorion–allantois and embryo were collected and immediately frozen in liquid nitrogen. Number of corpus luteum (CL) (35.4 vs. 12.6) and total embryo number (18.8 vs. 10.2) were greater in the high‐embryo compared to the low‐embryo group, respectively (< .05). Real‐time qPCR results showed that Eph‐ephrin A1 mRNA expression was less in the high‐embryo (< .05) compared to the low‐embryo group. In addition, Western blotting analysis indicated that Eph‐ephrin A1 and LEP protein expression at endometrial attachment site in high‐embryo was less (< .05) compared to low‐embryo group. It was also noted that mRNA expression of Eph‐ephrin A1 and LEPR‐LEP was greater in pregnant than non‐pregnant gilts (< .05). Moreover, mRNA expression of Eph‐ephrin A1 (< .05) and LEPR‐LEP was greatest at endometrial attachment site among all three tissues. There was a positive correlation between expressions of Eph‐ephrin A1, LEPR‐LEP and embryo length with the correlation coefficient 0.31–0.59. For Eph‐ephrin A1, the highest correlation coefficient appeared between Eph A1 expression and normal embryo number, between ephrin A1 expression and embryo length. For LEPR‐LEP, the highest correlation coefficient appeared between LEPR‐LEP expression and ovary weight (0.79 for both, < .05), followed by embryo length and weight. The results of this study suggest that low expression of Eph‐ephrin A1 and LEPR‐LEP is somehow related to increased embryo number during implantation and that endometrial attachment site might be the main target tissue of these gene products. Yet, the increased expression of Eph‐ephrin A1 and LEPR‐LEP appeared associated with increased embryo growth (length and weight) and ovary weight, Eph‐ephrin A1 and LEPR‐LEP might play roles in the regulation of embryo implantation in pigs.  相似文献   
36.
Fungal diseases are a major constraint for wheat production. Effective disease resistance is essential for ensuring a high production quality and yield. One of the most severe fungal diseases of wheat is Septoria tritici blotch (STB), which influences wheat production across the world. In this study, genomewide association mapping was used to identify new chromosomal regions on the wheat genome conferring effective resistance towards STB. A winter wheat population of 164 North European varieties and breeding lines was genotyped with 15K single nucleotide polymorphism (SNP) wheat array. The varieties were evaluated for STB in field trials at three locations in Denmark and across 3 years. The association analysis revealed four quantitative trait loci, on chromosomes 1B, 2A, 5D and 7A, highly associated with STB resistance. By comparing varieties containing several quantitative trait loci (QTL) with varieties containing none of the found QTL, a significant difference was found in the mean disease score. This indicates that an effective resistance can be obtained by pyramiding several QTL.  相似文献   
37.
为了探讨磷硫配施对冬小麦产量、硒的吸收及转运的影响,为生产富硒小麦或合理调控小麦硒含量提供理论依据,采用盆栽试验,设置不同磷、硫水平,在小麦成熟期测定产量及植株各部位硒含量。结果表明:硫磷的配合施用能显著提高冬小麦产量,S0.1P0.4处理下冬小麦产量最高。除颖壳外,冬小麦各部位硒含量最高值都出现在S0P0处理。不论施硫与否,施磷均能显著降低冬小麦各部位硒含量,提高小麦植株硒累积量,促进冬小麦茎叶向颖壳的硒迁移,降低根向茎叶、颖壳向籽粒的硒迁移系数,还会减小籽粒的硒分配。单独施硫会降低植株的硒累积量,促进冬小麦根向茎叶、茎叶向颖壳的硒迁移,降低颖壳向籽粒的硒迁移系数,低硫处理能增加小麦籽粒的硒分配,高硫处理则降低了籽粒的硒分配。S0P0.2处理能显著提高籽粒硒累积量,而高浓度的磷硫配施会降低籽粒硒累积量;S0.1P0和S0.1P0.2处理籽粒硒分配较大,分别是45.3%和44.8%。因此,硫磷的合理配施能显著提高小麦产量,低硫(S0.1)高磷(P0.4)处理增产最显著。低硫(S0.1)低磷(P0.2)处理能更有效地增加植株硒累积量,增强硒在籽粒中的累积。  相似文献   
38.
为明确新型尿素在冬小麦的应用效果,采用田间试验,研究了普通尿素(Urea)、控失尿素(LC Urea)、海藻酸尿素(H Urea)、聚能网尿素(N Urea)、含锰尿素(Mn Urea)、控失尿素一次施肥(LC Urea 1)、普通尿素+等量锰(Urea+Mn)和不施肥(CK)对冬小麦产量、叶片SPAD、叶片光合生理特性和氮素吸收利用的影响。结果表明,LC Urea和H Urea处理较Urea处理的小麦拔节期叶片SPAD分别显著提高1500%和1300%,灌浆期净光合速率分别显著增加3304%和2076%,气孔导度分别显著提高2609%和2174%,氮素积累量分别显著增加1439%和1236%,氮肥利用率分别提高4575%和3902%。N Urea和Mn Urea处理与Urea处理的产量无显著差异,LC Urea和H Urea处理较Urea处理显著增产1449%和1333%。控失尿素和海藻酸尿素能够有效提高穗数,改善冬小麦光合生理特性,促进氮素吸收利用,提高冬小麦产量和氮肥利用率,可在豫北潮土区推广应用。  相似文献   
39.
李波 《蔬菜》2021,(10):57-60
为了解决高寒及长江流域以南多雨地区土墙温室难建问题及实现温室育种、种植自动化、机械化作业,研发了一种新型装配式冬暖式C919温室,温室通过组装完成,采用钢制螺旋桩,不用焊接,只需在地下打螺旋桩,即可实现全天候施工。温室采用五防设计(防台风、防雨、防雪、防低温、防高温),具有土地利用率高(75%左右)、建设周期短(千亩园区建设周期90 d)、设计寿命长(50年)、材料环保(采用宝钢BFS 600高强不锈钢)、建设成本使用周期费用摊销低(土墙温室的70%)、运营维护成本低(土墙温室的50%)、机械作业用工少(减少人工60%以上)等优点,填补了高寒(-40 ℃以内)及长江流域以南多雨地区大跨度、装配式、全日光能源温室的空白。  相似文献   
40.
为探明拔节期氮肥运筹对不同滴灌量下冬小麦光合特性及产量的影响,在大田滴灌技术条件下,以‘新冬41号’为试验材料,研究4种拔节期氮肥运筹处理[N0(0 kg/hm2)、N1(90 kg/hm2)、N2(180 kg/hm2)、N3(270 kg/hm2)]对3种不同滴灌量[W1(1500 m3/hm2)、W2(3000 m3/hm2)、W3(3450 m3/hm2)]下冬小麦叶绿素含量(SPAD值)、叶面积指数(LAI)、叶片光合特性及产量的影响。结果表明,在3种滴灌量下各氮肥处理冬小麦拔节至乳熟期叶片SPAD值均呈“先增后降”的变化规律,最大值均在灌浆期;LAI呈现“先增后降”的变化规律,在孕穗期达最大。在同一施氮水平下,滴灌量增加,叶片的净光合速率(Pn)、蒸腾速率(Tr)、气孔导度(Gs)均增加,而胞间CO2浓度(Ci)则降低。滴灌量较低时(W1处理),增加拔节期施氮量能有效提高滴灌冬小麦的有效穗数、穗粒数、千粒重、产量和收获系数;水分充足时(W2、W3处理),增加拔节期施氮量反而不利于产量的提高。综合考虑各项产量指标及氮肥利用效率得出,在滴灌量3000 m3/hm2条件下,拔节期施氮量180 kg/hm2时,滴灌冬小麦籽粒产量较高,氮肥利用率最大,可供生产参考。  相似文献   
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