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1.
红灯、早大果、美早、拉宾斯4个甜樱桃品种在甘肃省天水地区进行日光温室栽培,1月6—10日扣棚,4月28日至5月8日果实成熟上市,上市时间较露地栽培提早20天左右。同时甜樱桃日光温室栽培能避免晚霜危害造成的减产甚至绝收,提高优质果品率。  相似文献   

2.
介绍了日光温室盆栽甜樱桃的技术要点,包括对盆栽甜樱桃品种、砧木的选择,苗木的大田培育,盆栽营养土的配制,苗木移栽入盆,甜樱桃需冷量的调控,盆入日光温室后的温湿度调控等。  相似文献   

3.
针对酒泉市日光温室樱桃产量较低的问题,通过引进甘肃省天水市露地甜樱桃,观测、控制花期、果期以及整个生长季节的气温环境条件,对甜樱桃日光温室栽培环境条件进行了各种调控,以期达到其适生区的环境条件。从土壤、温度、湿度等多个关键环节进行控制调试,有效解决了坐果率低、产量少的问题,促进了日光温室甜樱桃管理水平和生产效益的提高。  相似文献   

4.
连续6年对引进的10个甜樱桃品种在甘肃省武威市日光温室中的果实主要经济性状、生长结果特性及适应性进行观测。结果表明,早期丰产性、果实品质、适应性较好的品种有岱红、黑兰特、美早、早大果、桑提娜、黑珍珠、斯巴克。  相似文献   

5.
为筛选河西地区适宜种植的甜樱桃品种,引进3年生吉美、拉宾斯、秦樱3号、萨米脱、艳阳、桑提娜、塞尔维亚7个甜樱桃品种为试材,在V形栽培模式下,对甜樱桃的物候期、生长势、产量等进行调查,对果实形态及生理品质进行分析。结果表明:艳阳、萨米脱和拉宾斯在河西地区表现最佳,而塞尔维亚和吉美表现较差;综合比较艳阳、萨米脱和拉宾斯在河西地区表现较好,适合大规模推广栽培,为河西地区甜樱桃引种栽培提供了可靠参考。  相似文献   

6.
甜樱桃品种SSR指纹检索系统的开发及遗传多样性分析   总被引:3,自引:1,他引:3  
用SSR技术开发了甜樱桃( Prunus avium ) 指纹检索系统并进行遗传多样性分析。18对樱桃、桃和杏的引物在19份甜樱桃及2份草原樱桃( P. fruticosa) 品种中共扩增出83个等位位点, 每个 SSR位点的等位位点数2 ~8 个, 平均416 个, 多态性信息量( PIC) 变化范围为0.38 ~0.80, 平均为 0.64。7个甜樱桃品种具有特殊位点或特殊带型。利用UDP98-414、UDP98-406、UDP96-001及PMS40等4 对引物开发的指纹检索系统, 可以区分18个甜樱桃品种。根据遗传距离进行聚类分析, 19个甜樱桃品种 分成2组, 甜樱桃品种间的聚类结果基本反映了供试材料之间的亲缘关系。  相似文献   

7.
甜樱桃保护地栽培技术   总被引:1,自引:0,他引:1  
甜樱桃日光温室或简易大棚栽培 ,可以更好地发挥甜樱桃成熟期早的优势 ,提早供应市场 ,满足消费者的需要 ,而且投资不太大 ,效益很高。实施温室栽培还可以更好解决甜樱桃适宜范围有限 ,露地栽培果实成熟期遇雨容易裂果的问题。近 1 0年来我国河北、山东、辽宁等一些地区已经进行了这方面的试验 ,初步取得了一些经验 ,现栽培面积正逐步扩大。为今后大面积发展提供了依据。1 品种选择首先应考虑选用成熟期较早的优良品种 ,一般凡物候期早的品种 ,对环境条件的适应性也较强 ;日光温室和简易大棚不进行人工加温 ,选择花期比较耐寒的品种 ,也是…  相似文献   

8.
<正>樱桃主要有中国樱桃、欧洲甜樱桃、欧洲酸樱桃和毛樱桃4个种。我国种植的甜樱桃俗称大樱桃,主要为欧美品种,在我国北方地区表现很好,由于欧洲甜樱桃一般需7.2℃以下低温900~1 400小时方可完成冬季休眠,限制了在我国南方的大面积栽培。因而,在我国南方省区仍以中国樱桃为主栽品种。本论文主要通过对甜樱桃园址选择、起垄栽培、主要树形、授粉树品种配置、花果管理、流胶病防止等技术的系统研究,提出了樱  相似文献   

9.
2006~2009年,在云南省鲁甸县对引进的11个甜樱桃品种进行了观察。结果表明,红灯、雷吉娜和早大果3个品种的平均单果重、果实外观和内在品质、早期丰产性、适应性、耐贮藏性,以及树体的长势等,均表现优良,能相互授粉,也能作为甜樱桃的通用授粉树,可在鲁甸县推广。龙冠、艳阳、拉宾斯、早生凡和先锋5个品种具有发展潜力,可考虑推广。西尔维亚、斯克乃德斯和南阳红3个品种表现较差,不宜推广。  相似文献   

10.
车玉红  杨波  龚鹏 《北方园艺》2011,(18):54-56
通过对新疆引进“早大果”(Early big)、“雷佶娜”(Regina)、“红灯”(Red light)、“艳阳”(Sunburst)、“拉宾斯”(Lapins)5个甜樱桃品种和“吉塞拉6”(Gisela6)、“吉塞拉5”(Gisela5)、“ZY-1”、“大青叶”(Daqingyie)4种砧木进行田间抗寒性的比较研究.结果表明:新疆引进的5个甜樱桃品种和4种砧木类型在经历了极端低温天气后,“早大果”、“雷佶娜”和“艳阳”3个品种和“吉塞拉5”和“吉塞拉6”2种砧木类型在田间表现出了较强的抗寒性,建议今后在该区域发展大果甜樱桃产业时可以将其作为主栽品种和砧木在生产上推广应用.  相似文献   

11.
15个樱桃品种的RAPD分析   总被引:20,自引:4,他引:20  
利用RAPD技术,用104条随机引物对甜樱桃的14个品种和中国樱桃的1个品种进行遗传多样性分析,其中有14条引物的多态性较好。用任意一条能出现扩增带的引物,能明显区分开中国樱桃和甜樱桃,RAPD标记能够准确地进行种间的区分;而用一个引物或两个引物的组合只能鉴定出甜樱桃的一个品种。聚类结果显示,中国樱桃和甜樱桃的遗传距离最远;黄色果肉的养老和其他红色果肉的品种遗传距离较远。RAPD分析基本能够反映甜樱桃品种间的遗传多样性,但效果不理想,鉴定品种较为困难。  相似文献   

12.
In Germany the sweet and sour cherry breeding is concentrated at the Julius Kühn-Institut in Dresden-Pillnitz. The main breeding goals are directed on sweet cherries for fresh market and sour cherries for processing. The selection of new cultivars is focused on fruit quality, high and stable fruit set and tolerance to biotic and abiotic stress. In result of the breeding activities in sweet cherry four new cultivars, ‘Narana’, ‘Areko’, ‘Swing’, ‘Habunt’, were selected. ‘Narana’ is an early ripening cultivar with good fruit characteristics. ‘Areko’ ripens in the middle of the cherry season some days before cultivar ‘Kordia’ and has large, firm fruits. The both cultivars ‘Swing’ and ‘Habunt’ are self-compatible and more recommended for the use in house gardening. In sour cherry breeding four new cultivars, ‘Coralin’, ‘Spinell’, ‘Jachim’, ‘Boas’, were selected. The cultivar ‘Coralin’ shows good characteristics for processing and mechanical harvest and is tolerant to fungus diseases on leaves. With the large and tasty fruits, the cultivar ‘Spinell’ is mainly suitable for fresh consumption. The both other cultivars ‘Jachim’ and ‘Boas’ have a pillar growth habit.  相似文献   

13.
Microsatellite (SSR) markers were used to characterise 23 sweet cherry cultivars of Ukrainian, and four cultivars of non-Ukrainian, origin. To assess their genetic diversity and relatedness, 11 pairs of primers were applied to microsatellite loci, resulting in amplification of 66 SSR alleles. The mean value of the number of different alleles, and the polymorphic index content, amount to 7.333 and 0.700, respectively, demonstrating a significant genetic diversity of the investigated sweet cherry cultivars. Four highly polymorphic SSR loci (EMPAS02, EMPAS06, PceGA34, UDP98-412), which belong to the list recommended by the European Cooperative Program for Plant Genetic Resources, can be used as a minimum genetic marker set for identification of the majority of the studied cultivars; however, for successful discrimination of the most similar cultivars, more markers, located on all chromosomes of sweet cherry, appear to be necessary. Application of unweighted variable-group method using averages clustering allowed elucidation of the relatedness among the sweet cherry varieties, and showed that the Ukrainian cultivars combine genetic material of local, western European, and probably Caucasian origin; however, the origin of several cultivars still remains unclear, and should be studied additionally.  相似文献   

14.
引进了9个樱桃萝卜品种,在宁夏中卫市沙漠日光温室内,采用全空间循环生态立体种植技术开展了品种筛选试验。试验结果表明,京白一号、玉笋萝卜、京彩一号、红元等品种比对照京彩二号增产4.8%-114.0%,美红与对照的产量接近,这5个品种的各项综合指标优于或等同于对照,都适合于沙漠设施内应用。  相似文献   

15.
浙江新昌设施栽培樱桃番茄品比试验   总被引:3,自引:0,他引:3  
对引进的5个樱桃番茄品种进行了品比试验,以期筛选出适合新昌县设施栽培的樱桃番茄新品种。试验结果表明,在参试品种中,黄妃综合性状最好,产量高,口感及商品性好,可作为新昌县樱桃番茄主栽品种;红妃、金玉、黑妃20可适量种植,满足市场不同需求;京丹绿宝石易裂果,产量一般,抗性差,不建议推广栽培该品种。  相似文献   

16.
Summary

The characterisation of sweet cherry (Prunus avium L.) genetic resources in Turkey may help to increase their use in breeding programmes worldwide, as Turkey is the centre of origin of sweet cherry. Amplified fragment length polymorphism (AFLP) and simple sequence repeat (SSR) markers were therefore used to analyse genetic diversity among a total of 78 local and introduced sweet cherry cultivars. Four AFLP primer combinations, and six SSR primer pairs for sweet cherry were used for genetic diversity analysis. A genetic similarity matrix was calculated using the combined data from AFLP and SSR analyses with simple matching coefficient. Genetic similarities among the sweet cherry genotypes studied were higher than 42%. No two accessions had an identical AFLP and SSR marker profile, indicating that all 78 genotypes were unique. An UPGMA dendrogram, based on the similarity matrix, revealed 18 separate Groups at or above the 70% similarity level. While some Groups consisted of both introduced and local genotypes, other Groups had only local genotypes. This result suggests that there was broad genetic diversity among the local Turkish sweet cherry genotypes, which was not present in the introduced sweet cherry accessions. The genetic variation present in local Turkish sweet cherry genotypes may be useful for future breeding programmes. We found that the use of both SSR and AFLP marker systems was effective for distinguishing between genetically-close sweet cherry genotypes. These marker systems can be used to complement pomological and morphological markers during the characterisation and identification of sweet cherry genotypes.  相似文献   

17.
绝大部分甜樱桃品种自交不亲和,因此自交不亲和基因型的鉴定对于生产具有重要的意义。以甜樱桃主栽品种为试材,建立基于PCR技术的甜樱桃品种S基因型鉴定技术。试验根据已发表的樱桃S基因序列设计了2对引物组合BFP73/74,BFP93/94,结合S1、S5基因的特异扩增引物,利用扩增片段长度的不同,就可以对樱桃品种的S基因型进行鉴定。通过对已知S基因型品种基因组的扩增,最终建立了基于PCR技术的甜樱桃品种S基因型鉴定技术。  相似文献   

18.
利用DNA扩增片段序列对樱桃种质资源的遗传分析   总被引:13,自引:3,他引:13  
 从130个任意寡核苷酸引物中筛选出48个引物, 对8个樱桃种及2个种间杂交种的总DNA进行PCR扩增, 产生的多态性用于遗传分析。利用两种距离法进行系统发育分析, 并构建出种间及品种间亲缘关系的聚类图。结果表明, 扩增位点总数为840个; 23个甜樱桃品种及4个酸樱桃品种各自聚为一类, 多态位点数分别为569和247个, 多态位点百分率分别为67.74%和29.40%。毛樱桃、草原樱桃(变种) 与欧李聚为单一组群; 中国樱桃与寇尔特亲缘关系较近, 聚为另一单一组; 甜樱桃、酸樱桃等其他种在亲缘关系上分歧较大; 樱桃种群间的遗传距离在0.0623 ~ 0.2719之间, 并且从分子水平上可以鉴别。聚类图聚类分析结果总体上与李属分类标准相一致。除甜樱桃‘红灯’品种外, 均扩增出了1个以上的特有RAPD标记, 据此可以进行品种鉴定或杂种优良性状预选。  相似文献   

19.
Random amplified polymorphic DNA (RAPD) variation among eight cherry species and two interspecific progenies were analyzed. Out of 130, 48 arbitrary oligonucleotide primers were screened for PCR amplification to generate polymorphisms. The phylogenetic analysis was carried out using two distance-matrix methods and a dendrogram was generated to show the relationships among species and cultivars. The results showed that there were 840 amplified loci in total; 23 sweet cherry and four sour cherry cultivars were clustered together with 569 and 247 polymorphic loci respectively which accounted for 67.74% and 29.40% of the total variation. Prunus tomentosa T., Prunus fruticosa var. aucta P. and Prunus humilis B. formed a monophyletic group. A relationship between Prunus pseudocerasus L. and Colt, which formed another closely related group, was observed while Prunus avium L., Prunus cerasus L. and other cherry species were more divergent. The range of genetic distance was from 0.0623 to 0.2719 among the Prunus species, which were genetically distinct. The topology of the tree was generally in agreement with taxonomic classification. The results indicated that with the exception of the sweet cherry variety “Hongdeng”, there were one or more cultivar-specific RAPD markers in cherry species and cultivars. Using these specific markers, cherry species and varieties could be identified and there is therefore the potential to select for good characteristics of hybrids at an early stage.  相似文献   

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