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2篇 您的检索式:作者名="Nathalie Piperidis"
    题名 作者 年代 出处 被引量
1用基因组原位杂交方法分析甘蔗-斑茅杂种及回交后代的染色体组成显示文摘斑茅(Erianthus arundinaceus Retz)是甘蔗的近缘属植物,具有多种优良特性,是甘蔗育种的重要种质资源之一。本实验使用基因组原位杂交(GISH)技术分析了甘蔗-斑茅杂种及回交后代F1、BC1和BC2的染色体构成与传递行为。结果表明:在F1代,来自斑茅HN92-77的染色体数目介于28~30条,来自热带种Badila的染色体数目介于38~40条,体细胞染色体数为2n=68~70,基本符合n+n的染色体传递方式;在BC1和BC2代,来自斑茅的染色体数分别为22~28条和13~15条,来自甘蔗的染色体数分别是87~94条和98~101条,其体细胞染色体数2n分别为110~121条和112~115条,基本上分别符合2n+n和n+n的染色体传递方式。在所观察的渐渗系中,均存在有染色体丢失的现象,但未观察到染色体发生交换与重组。陈健文 Nathalie Piperidis (nee Reffay) 李奇伟 陈勇生 符成 Phillip Jackson George Pipendis 邓海华 2010分子植物育种2010,8,2:8
2Past and recent advances in sugarcane cytogenetics显示文摘The Saccharum genus comprises species with large and variable chromosome numbers, leading to challenges in genomic studies and breeding improvement. Cytogenetics, including classical and molecular approaches, has played a central role in deciphering the genome structure, classification, and evolution of the genus Saccharum. The application of fluorescence in situ hybridization using oligonucleotide probes significantly improved our understanding of the complex genomes of Saccharum species. This paper reviews the application and progress of cytogenetic techniques in Saccharum. Future applications of cytogenetics are discussed, as they could benefit both genomic studies and breeding of sugarcane as well as other plants with complex genomes.Kai Wang Hui Zhang Haris Khurshid Ayman Esh Caiwen Wu Qinnan Wang Nathalie Piperidis 2023The Crop Journal2023,11,1:0
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