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Innovation and development of the third-generation hybrid rice technology

机译:第三代杂交水稻技术的创新与发展

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摘要

The breeding and large-scale application of hybrid rice contribute significantly to the food supply worldwide.Currently,hybrid seed production uses cytoplasmic male sterile(CMS)lines or photoperiod/thermo-sensitive genic male sterile(PTGMS)lines as female parent.Despite huge successes,both systems have intrinsic problems.CMS systems are mainly restricted by the narrow restorer resources that make it difficult to breed superior hybrids,while PTGMS systems are limited by conditional sterility of the male sterile lines that makes the propagation of both PTGMS seeds and hybrid seeds vulnerable to unpredictable climate changes.Recessive nuclear male sterile(NMS)lines insensitive to environmental conditions are widely distributed and are ideal for hybrid rice breeding and production,but the lack of effective ways to propagate the pure NMS lines in a large scale renders it impossible to use them for hybrid rice production.The development of"the third-generation hybrid rice technology"enables efficient propagation of the pure NMS lines in commercial scale.This paper discusses the establishment of"the thirdgeneration hybrid rice technology"and further innovations.This new technology breaks the limitations of CMS and PTGMS systems and will bring a big leap forward in hybrid rice production.
机译:杂交水稻的繁殖和大规模应用在全球范围内的食品供应贡献。杂种种子生产使用细胞质雄性无菌(CMS)线或光周期/热敏基因雄性无菌(PTGMS)系作为女性父母。分析巨大成功,两个系统都有内在问题.CMS系统主要受到窄恢复器资源的限制,这使得难以培育优异的杂种,而PTGMS系统受到雄性无菌线的条件性无菌的限制,这使得PTGM种子和杂种的传播种子容易受到不可预测的气候变化的影响。对环境条件不敏感的核雄性无菌(NMS)线被广泛分布,是杂交水稻育种和生产的理想选择,但缺乏在大规模中宣传纯NMS线的有效方法不可能将它们用于混合水稻生产。“第三代杂交水稻技术”的发展能够实现高效传播纯NMS线在商业标准中。本文讨论了“三项混合水稻技术”的建立和进一步的创新。这项新技术打破了CMS和PTGMS系统的局限性,并将在杂交水稻生产中进行大型飞跃。

著录项

  • 来源
    《作物学报:英文版》 |2021年第003期|P.693-701|共9页
  • 作者单位

    Guangdong Provincial Key Laboratory of Biotechnology for Plant Development School of Life Sciences South China Normal University Guangzhou 510631 Guangdong China;

    Guangdong Provincial Key Laboratory of Biotechnology for Plant Development School of Life Sciences South China Normal University Guangzhou 510631 Guangdong ChinaShenzhen Institute of Molecular Crop Design Shenzhen 518107 China;

    Shenzhen Institute of Molecular Crop Design Shenzhen 518107 China;

    Shenzhen Institute of Molecular Crop Design Shenzhen 518107 China;

    Shenzhen Institute of Molecular Crop Design Shenzhen 518107 ChinaInstitute of Plant and Food Sciences Department of Biology Southern University of Science and Technology Shenzhen 518055 China;

    Guangdong Provincial Key Laboratory of Biotechnology for Plant Development School of Life Sciences South China Normal University Guangzhou 510631 Guangdong ChinaShenzhen Institute of Molecular Crop Design Shenzhen 518107 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 禾谷类作物;
  • 关键词

    Hybrid rice; Nuclear male sterile line; The third-generation hybrid rice technology; Pollen inactivation; Seed sorting;

    机译:杂交水稻;核雄性无菌线;第三代杂交水稻技术;花粉失活;种子分类;
  • 入库时间 2022-08-19 04:58:19
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