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以大豆“仅子叶植株”为材料建立用于研究短日照双子叶植物光周期反应的新型实验系统。

Establishment of a novel experimental system for studying the photoperiodic response of short-day dicots using soybean 'cotyledon-only plant' as material.

作者信息

Zhang Chunlei, Xu Xin, Chen Fulu, Yuan Shan, Wu Tingting, Jiang Bingjun, Sapey Enoch, Wu Cunxiang, Sun Shi, Guo Changhong, Han Tianfu

机构信息

College of Life Science and Technology, Harbin Normal University, Harbin, China.

Ministry of Agriculture and Rural Affairs (MARA) Key Laboratory of Soybean Biology (Beijing), Institute of Crop Sciences, The Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Front Plant Sci. 2023 Jan 6;13:1101715. doi: 10.3389/fpls.2022.1101715. eCollection 2022.

Abstract

Soybean is an important model crop for photoperiodic response studies in plants and contributes significantly to the study of plant development and physiology in the past century. Because soybean plant is much bigger in size and longer in life cycle than , it needs much more space for growth and time for investigation, which significantly hamper the efficiency of research. In the current study, we tested the photoperiodic response of a distinctive artificially-made cotyledon-only plant (COP) using a photoperiod-sensitive soybean variety Zigongdongdou (ZGDD) and other varieties with diverse sensitivity to photoperiod. ZGDD COPs flowered 39.4 ± 2.5 d after emergence under short-day conditions but maintained vegetative growth under long-day and night break conditions, which is similar to the case in the intact ZGDD plants. The COPs of early-maturing and medium-maturing soybean varieties also grew and flowered normally under natural day-length conditions. At the molecular level, the key genes in the photoperiodic pathway such as , , , and in the COPs also showed the same photoperiod sensitivity as in the intact plants. In addition, a simpler material of COP with only one cotyledon and root was generated and found to be sensitive to photoperiod as well. Notably, the COPs are only one-fifth the height of intact plants and one-third the maximum diameter of the intact plants grown in chambers 30 d after emergence. Based on COPs, we established a novel experimental system characterized by an entire photoperiodic response and longer longevity of cotyledons in addition to small plant size, ensuring the consistency, reliability, and stability of plant materials. COPs have the potential to be a novel model material for studies of the developmental biology of soybean and other dicots.

摘要

大豆是植物光周期反应研究中的重要模式作物,在过去的一个世纪里对植物发育和生理学研究做出了重大贡献。由于大豆植株比[此处原文缺失比较对象]体型大得多且生命周期长,它需要更多的生长空间和研究时间,这显著阻碍了研究效率。在本研究中,我们使用光周期敏感型大豆品种自贡冬豆(ZGDD)和其他对光周期敏感度不同的品种,测试了一种独特的人工培育的仅具子叶植株(COP)的光周期反应。ZGDD COP在短日条件下出土后39.4±2.5天开花,但在长日和夜间中断条件下保持营养生长,这与完整的ZGDD植株情况相似。早熟和中熟大豆品种的COP在自然日长条件下也能正常生长和开花。在分子水平上,COP中光周期途径中的关键基因如[此处原文缺失基因名称]等,也表现出与完整植株相同的光周期敏感性。此外,还培育出了一种更简单的仅具一个子叶和根系的COP材料,发现其对光周期也敏感。值得注意的是,COP出土30天后在培养室中的高度仅为完整植株的五分之一,最大直径为完整植株的三分之一。基于COP,我们建立了一个新的实验系统,其特点是具有完整的光周期反应、子叶寿命更长,此外植株体型小,确保了植物材料的一致性、可靠性和稳定性。COP有潜力成为大豆和其他双子叶植物发育生物学研究的新型模式材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3465/9853180/3a17eecbcfa8/fpls-13-1101715-g001.jpg

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