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国家高技术研究发展计划(2012AA100A03)

作品数:3 被引量:3H指数:1
相关作者:龙镇河林绿郑禾赵冰郭仰东更多>>
相关机构:华南农业大学北京市海淀区农业科学研究所中国农业大学更多>>
发文基金:国家高技术研究发展计划国家现代农业产业技术体系建设项目广东省科技计划工业攻关项目更多>>
相关领域:农业科学更多>>

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耐青枯病、抗逆、硬果番茄品种金石的选育被引量:1
2012年
利用韩国金贵454番茄与华南农业大学夏红1号番茄进行杂交,从杂交后代第11代材料中选出性状稳定的自交系金49;对荷兰百利番茄进行自交分离,从第10代材料中选出自交系石531。将金49与石531进行杂交,育成金石番茄。该品种为无限生长型,生势旺盛,耐热性好,中抗青枯病,易坐果,丰产稳产;果实圆形、紧实,果面光滑,单果重170 g,熟果鲜红色,酸甜适中,风味好,品质优,2012年通过广东省农作物品种审定。
许奕进林绿全锋汪国平龙镇河
关键词:番茄金石选育
蔬菜抗病分子标记研究进展被引量:1
2015年
蔬菜是我国重要的经济作物,而病害是制约蔬菜生产可持续发展的重要的因子。综述各种分子标记技术在茄科、十字花科和葫芦科等重要蔬菜作物抗病育种中的应用及其发展,并提出在未来的抗病育种中分子标记技术的重要性。
郭仰东连蔚然徐风凤郑禾赵冰
关键词:蔬菜病害分子标记抗病育种
Enhanced resistance to Botrytis cinerea and Rhizoctonia solani in transgenic broccoli with a Trichoderma viride endochitinase gene被引量:1
2015年
A endochitinase gene(Tch) from the fungus Trichoderma viride was introduced into broccoli(Brassica oleracea var. italica) by Agrobacterium-mediated transformation. Sixty-eight putative transformants were obtained and the presence of the Tch gene was confirmed by both PCR and Southern blot analysis. RT-PCR analysis showed an accumulation of the transcript encoding the endochitinase protein in the transgenic plants. Using real-time quantitative PCR, the expression profiling of endochitinase gene was analyzed. Primary transformants and selfed progeny were examined for expression of the endochitinase using a fluorometric assay and for their resistance to the pathogenic fungi Botrytis cinerea and Rhizoctonia solani. The endochitinase activities in T0 in vitro plants, T0 mature plants and T1 mature plants were correlated with leaf lesions, and the transgenic line T618 had high endochitinse activities of 102.68, 114.53 and 120.27 nmol L–1 MU min–1 mg–1 protein in the three kinds of plants, respectively. The endochitinase activity showed a positive correlation with the resistance to the pathogens. Most transgenic T0 broccoli had increased resistance to the pathogens of B. cinerea and R. solani in leaf assays and this resistance was confirmed to be inheritable. These findings suggested that expression of the Tch gene from T. viride could enhance resistance to pathogenic fungi in Brassica species.
YU YaZHANG LeiLIAN Wei-ranXU Feng-fengLI Shuang-taoXIANG JuanZHANG Guo-zhenHU Zan-minZHAO BingREN Shu-xinGUO Yang-dong
关键词:纹枯病抗性RT-PCR分析农杆菌介导转化
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