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生物育种科普基地建设的必要性及策略
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作者 李向龙 赵克勇 张彰 《管理科学与研究(中英文版)》 2024年第8期30-34,共5页
本文探讨了生物育种科普基地建设的必要性及其面临的挑战。首先,强调了提升公众对生物育种认识的需求及其在生物多样性保护中的重要性。接着,分析了科普基地建设中存在的基础设施不足、展示内容缺乏吸引力以及公众参与度低等问题。针对... 本文探讨了生物育种科普基地建设的必要性及其面临的挑战。首先,强调了提升公众对生物育种认识的需求及其在生物多样性保护中的重要性。接着,分析了科普基地建设中存在的基础设施不足、展示内容缺乏吸引力以及公众参与度低等问题。针对这些问题,提出了优化基础设施、丰富展示内容以及提升公众参与度和科普效果的策略。最后,总结了研究的主要观点,并对生物育种科普基地的未来建设提出了建议。本文旨在推动生物育种科普教育的普及与发展,为生物多样性保护贡献力量。 展开更多
关键词 生物育种 科普基地 建设 必要性
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Heterologous expression of the maize transcription factor ZmbHLH36 enhances abiotic stress tolerance in Arabidopsis
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作者 Zhenggang Dai keyong zhao +4 位作者 Dengyu Zheng Siyu Guo Huawen Zou Zhongyi Wu Chun Zhang 《aBIOTECH》 EI CAS CSCD 2024年第3期339-350,共12页
Basic helix-loop-helix(bHLH)transcription factors are widely distributed in eukaryotes,and in plants,they regulate many biological processes,such as cell differentiation,development,metabolism,and stress responses.Few... Basic helix-loop-helix(bHLH)transcription factors are widely distributed in eukaryotes,and in plants,they regulate many biological processes,such as cell differentiation,development,metabolism,and stress responses.Few studies have focused on the roles of bHLH transcription factors in regulating growth,development,and stress responses in maize(Zea mays),even though such information would greatly benefit maize breeding programs.In this study,we cloned the maize transcription factor gene ZmbHLH36(Gene ID:100193615,GRMZM2G008691).ZmbHLH36 possesses conserved domains characteristic of the bHLH family.RT-qPCR analysis revealed that ZmbHLH36 was expressed at the highest level in maize roots and exhibited different expression patterns under various abiotic stress conditions.Transgenic Arabidopsis(Arabidopsis thaliana)plants heterologously expressing ZmbHLH36 had significantly longer roots than the corresponding non-transgenic plants under 0.1 and 0.15 mol L^(−1) NaCl treatment as well as 0.2 mol L^(−1) mannitol treatment.Phenotypic analysis of soil-grown plants under stress showed that transgenic Arabidopsis plants harboring ZmbHLH36 exhibited significantly enhanced drought tolerance and salt tolerance compared to the corresponding non-transgenic plants.Malondialdehyde contents were lower and peroxidase activity was higher in ZmbHLH36-expressing Arabidopsis plants than in the corresponding non-transgenic plants.ZmbHLH36 localized to the nucleus when expressed in maize protoplasts.This study provides a systematic analysis of the effects of ZmbHLH36 on root growth,development,and stress responses in transgenic Arabidopsis,laying a foundation for further analysis of its roles and molecular mechanisms in maize. 展开更多
关键词 Heterologous expression MAIZE Root system Stress responses ZmbHLH36
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