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排序方式: 共有1906条查询结果,搜索用时 468 毫秒
1.
红鳞蒲桃开花物候特性研究   总被引:3,自引:0,他引:3  
对红鳞蒲桃种群的花期物候,单株、单个花序、单花的开花动态进行系统的观测研究,详细测量并记录花部构件,同时调查红鳞蒲桃种群的同花期植物。结果表明:红鳞蒲桃种群的花期物候为8月1日~9月15日(2008年),持续时间46d;单株花期从23d到33d不等;单花序的花期情况较为复杂,总体表现为花朵数越多,该花序持续时间越长,但也有个别情况出现,在开花中期花序持续时间长,开花后期花序持续时间最短,开花前期花序持续时间介于两者之间;在整个种群花期内单花平均开花时间约5.2d,种群开花前期单花的持续时间约为6.7d,开花中期约为4.7d,末花期约为4.3d,种群开花前期单花的持续时间显著大于种群中后期的持续时间。红鳞蒲桃种群的同花期植物隶属于16科21属22种。  相似文献   
2.
配置一定比例授粉树种,是提高授粉效果获得丰产的基础。授粉树比例幼龄期高于成龄期,授粉树花期应与天目蜜李基本一致、果形近似、品质好、抗性强的优良品种,这样才能确保果品的质量与产量。  相似文献   
3.
菊苣开花及种子形成规律的研究   总被引:5,自引:0,他引:5  
菊苣(Cichorium Intybus L.)开花及种子形成规律的研究表明:在太原地区,菊苣6月上旬开始开花,三周之后即7月初达盛花期。种子在授粉后20天即发育成熟,此时,种子发芽率及千粒重均达到最高。最佳种子收获期应在盛花期后20~30天,此时种子呈深褐色,水分含量为25%左右。  相似文献   
4.
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   
5.
Sorghum [Sorghum bicolor (L.) Moench] is a drought‐tolerant crop, and its productivity in rain fed environments has increased since the 1950s. This increase is due to changes in agronomic practices and hybrid improvement. The objective of this study was to determine what aspects of grain sorghum morphology, physiology and water use have changed with hybrid improvement and might have contributed to this yield increase. A 2‐year greenhouse experiment was conducted with one hybrid from each of the past five decades. The hybrids were studied in well‐watered and pre‐ and post‐flowering water deficit conditions. Total water use, transpiration, stomatal conductance and photosynthesis were measured during the growing period. Biomass and biomass components were measured at harvest. There was no consistent change in the leaf physiological parameters resulting from hybrid advancement. In contrast, total water use increased in rate of 8.5 cm3 kg soil?1 year?1 from old to new hybrids in the well‐watered treatments. Root biomass also increased in rate of 0.2 g plant?1 year?1. Leaf biomass and panicle length also was greater for the newest compared with the older hybrids. Hybrid advancement was related to increase in panicle length but decrease in peduncle length. Results indicated that hybrid development programmes created hybrids with improved drought avoidance, due to better root density of newly released hybrids, or hybrids with better resource use which ultimately increased yield under rain fed conditions.  相似文献   
6.
对3年生光皮树幼树,采用环割倒贴皮、铁丝绞缢、绳索绞缢、环刻4种人工造伤方法分别对其主干和主枝进行处理.结果表明:4种处理方法对树干直径和冠幅生长的影响差异不显著;铁丝绞缢主枝法处理,其树高及开花株数和开花数量都与其他处理存在显著差异;铁丝绞缢主枝与铁丝绞缢主干法促进开花的效果差异不显著.  相似文献   
7.
以引进的美国核桃品种‘维纳’、‘艾米格’和新疆本地品种‘温185’和‘新新2号’为试材,研究分析不同品种的植物学和生物学特性、花芽分化过程以及相关成花基因的表达。结果显示:4个品种在树体生长、枝芽发育特性、物侯期以及成花率和坐果率方面没有明显差异。在结果枝同一坐果部位形成双果、三果或以上的能力‘新新2号’明显强于‘维纳’,但‘新新2号’的果实大小和单果重都低于‘维纳’,而‘维纳’平均结果母枝上形成侧花芽的数量和坐果率高于‘新新2号’。从萌芽到开花结束直至当年侧芽发育过程中‘维纳’混合芽中的JrFT和JrLFY基因表达也高于‘新新2号’,而同时期的JrFLC基因表达则相对较低,说明‘维纳’在花芽分化和花器官形成过程中通过高表达JrFT和JrLFY基因,低表达JrFLC基因促进结果母枝上形成大量侧花芽,并利用大量侧花芽抽生结果枝坐果,形成较大的果实,使得最终产量并不低于同一个坐果部位大量着生2个或多个果实的‘新新2号’品种。  相似文献   
8.
In cucumber, the genetic basis of traits under domestication and/or diversifying selection is not well understood. Here, we reported QTL mapping for flowering time and fruit size-related traits with segregating populations derived from a cultivated × wild cross. Phenotypic data of flowering time (FT), fruit size (FS), fruit number (FN) and fruit weight per plant (FW) were collected in multiple environments. QTL analysis identified 19 QTL for these traits. We found that the major-effect QTL FT1.1 played an important role in regulating flowering time in cultivated cucumber, whereas the minor-effect QTL FT6.3 contributed to photoperiod sensitive flowering time during domestication. Two novel consensus FS QTL, FS1.4 and FS2.3, seem to be the targets of selection during breeding for the US processing cucumber. All other FS QTL were co-localized with previously detected QTL using populations derived from cultivated cucumbers, suggesting that they were under selection during both initial domestication and subsequent improvement. Results from this study also suggested that the wild cucumber is a useful resource for capturing positive transgressive segregation and novel alleles that could be explored in cucumber breeding.  相似文献   
9.
Winter canola (Brassica napus L.) is highly sensitive to increasing temperatures during the reproductive and pod-filling stages. Although the impact of high day-time temperature stress on yield and quality has been documented in canola, similar information under high night-time temperature (HNT) stress is not available. Using six hybrids and four open-pollinated cultivars, we observed a marked shift in peak flowering towards earlier, cooler hours of the morning under HNT. Averaged across two independent experiments, the photochemical efficiency of photosystem II was significantly decreased (3%), with a significant increase in thylakoid membrane damage (13%) in the leaves of susceptible cultivars under HNT stress. Similarly, the susceptible cultivars also recorded significant reduction in biomass (34%), pod number (22%), pod weight (37%) and total seed weight (40%) per plant while the same set of agronomic traits were not affected among the tolerant cultivars. Quantitative impact of heat stress was confirmed with increased sensitivity to HNT exposure from gametogenesis until maturity resulting in a significantly higher yield loss compared to stress exposure from post-flowering till maturity. HNT significantly decreased oil concentration, but increased protein concentration and saturated fatty acid levels in seeds of the susceptible cultivars. However, HNT had no impact on the unsaturated fatty acids in both hybrids and the open-pollinated cultivars. Breeding targets based on fatty acid composition for enhancing canola seed quality may not be easily amenable due to the inconsistency documented with the compositional changes under heat stress. In summary, our findings conclude that canola hybrids are better suited to regions experiencing heat stress, compared to open-pollinated cultivars, indicating the possibility of a complete shift to hybrid canola cultivation under predicted hotter climates in the future.  相似文献   
10.
In rice, pre‐exposure to sublethal treatment followed by harsh lethal treatment is known to improve tolerance of different abiotic stresses at the vegetative stage within and across generations. Our major aim was to test the phenomenon of thermo‐tolerance at flowering across (trans)‐generations and within generation using rice cultivars contrasting for heat stress tolerance at flowering. To test trans‐generational response, plants were exposed to higher temperature at flowering stage and seeds obtained from previous generations were exposed to heat stress during flowering, which recorded significantly lower fertility when exposed to the same degree of stress in their subsequent generations. A pre‐acclimation to moderately high acclimating temperatures imposed over three different durations during the vegetative and initial reproductive stage showed positive response in the tolerant N22, particularly under severe heat stress (40 °C). This finding indicates the possibility of acquiring ameliorative thermo‐tolerant mechanisms at anthesis, restricted to tolerant genetic backgrounds to combat subsequent harsh conditions within the same generation. However, trans‐generational memory was ineffective in mitigating spikelet sterility losses in both tolerant and susceptible backgrounds. Rice is extremely sensitive to heat stress during flowering; hence, similar exercise across other crops of interest needs to be carried out before generalizing conclusions.  相似文献   
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