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600份葡萄种质资源果柄耐拉力鉴定评价 被引量:15
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作者 王鹏 樊秀彩 +4 位作者 张颖 李民 刘崇怀 姜建福 李秀珍 《植物遗传资源学报》 CAS CSCD 北大核心 2019年第5期1197-1212,共16页
葡萄(Vitis L.)是我国重要的经济果树之一,部分品种经过长途运输和贮藏后,易脱粒和腐烂,失去商品价值,选育和推广耐贮品种是解决这一问题的有效措施之一。为探究不同葡萄种质资源果柄耐拉力特性,以绯红、蜜尔紫、红巴拉多、灰比诺、沪培... 葡萄(Vitis L.)是我国重要的经济果树之一,部分品种经过长途运输和贮藏后,易脱粒和腐烂,失去商品价值,选育和推广耐贮品种是解决这一问题的有效措施之一。为探究不同葡萄种质资源果柄耐拉力特性,以绯红、蜜尔紫、红巴拉多、灰比诺、沪培2号和京可晶6个质地不同葡萄品种为材料,分析其果实发育过程中的果柄耐拉力变化情况;以国家果树种质郑州葡萄圃的600份葡萄种质资源为试材,利用数显拉力计对其果柄耐拉力进行了鉴定评价,同时分析了果柄耐拉力与果柄、果蒂、果刷等性状的相关性。结果表明:6个品种果实发育过程中果柄耐拉力呈先下降后趋于稳定的趋势,硬肉品种果柄耐拉力均强于软肉品种。600份葡萄种质资源的果柄耐拉力变化范围在0.72~9.16 N之间,耐拉力分布连续且符合正偏态分布。经过聚类分析,将果柄耐拉力分为强(P>6N)、中(3N<P≤6N)、弱(P≤3N)3个等级,所占比例分别为2.5%、23.8%和73.7%,说明供试材料整体的果柄耐拉力较弱,其中果柄耐拉力强的种质有红地球、牡丹红、芳香等。果柄耐拉力与单粒重、果柄长、果刷长、单位果蒂的横截面面积和单位果刷的横截面面积呈极显著正相关,与单位果柄的横截面面积呈显著正相关,与单位面积果刷承受自身重量呈显著负相关。通过系统的鉴定评价,得到15份果柄耐拉力强的种质,以期为耐贮葡萄新品种的选育提供参考。 展开更多
关键词 葡萄种质 果柄耐拉力 鉴定评价 分级
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葡萄主产区春霜冻风险分析 被引量:12
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作者 岳慧欣 何延波 +4 位作者 姜建福 樊秀彩 张颖 刘崇怀 杨英军 《中国农业气象》 CSCD 北大核心 2021年第3期221-229,共9页
选取中国607个气象站1958-2019年逐日最低气温观测资料,运用统计和空间分析方法,从气候致灾的角度,对葡萄主产区春霜冻灾害发生日数、频率、站次比以及致灾危险性进行分析,以了解葡萄主产区春霜冻的分布特征和风险区域,为葡萄主产区灾... 选取中国607个气象站1958-2019年逐日最低气温观测资料,运用统计和空间分析方法,从气候致灾的角度,对葡萄主产区春霜冻灾害发生日数、频率、站次比以及致灾危险性进行分析,以了解葡萄主产区春霜冻的分布特征和风险区域,为葡萄主产区灾害防御工作提供依据。结果表明,60a来,各葡萄产区春霜冻平均发生日数和频率差异较大,春霜冻发生频率和平均发生日数最高在西北产区和西南高山产区,最低在南方产区;研究期内葡萄主产区春霜冻发生范围呈缩小趋势,且轻霜冻发生范围大于中度和重度春霜冻;春霜冻发生强度区域性明显,其中,轻霜冻强度指数自北向南呈逐渐偏小的趋势,中霜冻和重霜冻强度指数普遍偏小;葡萄主产区致灾因子危险性指数空间分布特征表现为中北部普遍高于南部区域,其中高风险区域主要分布在西北产区和东北中北部产区,无风险区域主要分布在南方产区。 展开更多
关键词 葡萄 主产区 春霜冻 风险分析
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葡萄属野生资源分类研究进展 被引量:10
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作者 杨亚蒙 姜建福 +3 位作者 樊秀彩 张颖 李民 刘崇怀 《植物遗传资源学报》 CAS CSCD 北大核心 2020年第2期275-286,共12页
葡萄属野生资源在整个葡萄属(Vitis L.)的系统演化中占有十分重要的地位。葡萄属野生资源分布广泛,种间杂交容易,形态变异较为复杂,造成分类工作难度较大。长期以来,部分野生种的分类一直存在争议。本文从世界葡萄属植物的分类历史出发... 葡萄属野生资源在整个葡萄属(Vitis L.)的系统演化中占有十分重要的地位。葡萄属野生资源分布广泛,种间杂交容易,形态变异较为复杂,造成分类工作难度较大。长期以来,部分野生种的分类一直存在争议。本文从世界葡萄属植物的分类历史出发,对葡萄属野生种分类研究进展进行了综述。传统的分类方法不能够很好地解决不同种之间的亲缘关系,近十几年来,多种分子标记被应用于葡萄属的系统发育研究,并构建了葡萄属系统发育的基本框架。但是,分子系统学研究工作开展的远远不够,而且多数研究仍然受到资源的限制。未来建议加强葡萄属野生资源的收集和保护,并开展更全面的分类学修订工作。同时,充分利用分子系统学的相关技术手段,进一步阐明各野生种的分类地位。 展开更多
关键词 葡萄属 野生资源 分类学 研究进展
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Development and application of KASP marker for high throughput detection of the seedless trait in grapevine 被引量:6
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作者 WANG Fu-qiang BIAN Lu +9 位作者 QIU Peng-peng GUO Shuo GUO Jing-han GUO Chen-shuo jiang jian-fu LIU Chong-huai WANG Yong LIU Guo-tian WANG Yue-jin XU Yan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第11期3269-3283,共15页
Molecular marker-assisted selection(MAS) can significantly accelerate and improve the efficiency of the breeding process in seedless grape cultivars. In this study, we developed the KASP_VviAGL11 and VviAGL11_410 mark... Molecular marker-assisted selection(MAS) can significantly accelerate and improve the efficiency of the breeding process in seedless grape cultivars. In this study, we developed the KASP_VviAGL11 and VviAGL11_410 markers based on a single nucleotide polymorphism(SNP) site(Chr18: 26889437(A/C)) of the VviAGL11 gene, and compared them with previously reported SSR markers p3_VvAGL11 and 5U_VviAGL11 by testing 101 cultivars and 81 F1 hybrid progenies. The results showed that both of the proposed markers obtained 100% accuracy rates in detecting allele A, which was closely associated with the seedless trait in grapes, while p3_VvAGL11 and 5U_VviAGL11 had lower accuracy rates due to their tendency to produce false positives. After careful evaluation of the technical advantages and disadvantages associated with these markers, we concluded that KASP_VviAGL11 was superior in terms of simplicity,cost-effectiveness, efficiency, and accuracy. Thus, we optimized the process of molecular MAS for seedless grapes,focusing on the KASP_VviAGL11 marker as a central component, to provide key technical support for the development of new seedless grape cultivars. 展开更多
关键词 seedless grape MAS KASP SSR
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Establishment and application of an SNP molecular identification system for grape cultivars 被引量:4
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作者 WANG Fu-qiang FAN Xiu-cai +3 位作者 ZHANG Ying SUN Lei LIU Chong-huai jiang jian-fu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第4期1044-1057,共14页
We aimed to develop a set of single nucleotide polymorphism(SNP) markers that can be used to distinguish the main cultivated grape(Vitis L.) cultivars in China and provide technical support for domestic grape cultivar... We aimed to develop a set of single nucleotide polymorphism(SNP) markers that can be used to distinguish the main cultivated grape(Vitis L.) cultivars in China and provide technical support for domestic grape cultivar protection, cultivar registration, and market rights protection. A total of 517 high-quality loci were screened from 4 241 729 SNPs obtained by sequencing 304 grape accessions using specific locus amplified fragment sequencing, of which 442 were successfully designed as Kompetitive Allele Specific PCR(KASP) markers. A set of 27 markers that completely distinguishes 304 sequenced grape accessions was determined by using the program, and 26 effective markers were screened based on 23 representative grape cultivars. Finally, a total of 46 out of 48 KASP markers, including 22 markers selected by the research group in the early stage, were re-screened based on 348 grape accessions. Population structure, principal component, and cluster analyses all showed that the 348 grape accessions were best divided into two populations. In addition, cluster analysis subdivided them into six subpopulations. According to genetic distance, V. labrusca, V. davidii, V. heyneana, and V. amurensis were far from V. vinifera, while V. vinifera×V. labrusca and V. amurensis×V. vinifera were somewhere in between these two groups. Furthermore, a core set of 25 KASP markers could distinguish 95.69% of the 348 grape accessions, and the other 21 markers were used as extended markers. Therefore, SNP molecular markers based on KASP typing technology provide a new way for mapping DNA fingerprints in grape cultivars. With high efficiency and accuracy and low cost, this technology is more competitive than other current identification methods. It also has excellent application prospects in the grape distinctness, uniformity, and stability(DUS) test, as well as in promoting market rights protection in the near future. 展开更多
关键词 GRAPE KASP marker variety identification FINGERPRINT genetic diversity analysis
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