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首页> 外文期刊>Physiologia plantarum >Circumnutational movement in rice coleoptiles involves the gravitropic response: analysis of an agravitropic mutant and space-grown seedlings
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Circumnutational movement in rice coleoptiles involves the gravitropic response: analysis of an agravitropic mutant and space-grown seedlings

机译:水稻鞘翅石的电流运动涉及重力响应:分析阿富利硫酸盐突变体和空间生长的幼苗

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摘要

Plants exhibit helical growth movements known as circumnutation in growing organs. Some studies indicate that circumnutation involves the gravitropic response, but this notion is a matter of debate. Here, using the agravitropic rice mutant lazy1 and space-grown rice seedlings, we found that circumnutation was reduced or lost during agravitropic growth in coleoptiles. Coleoptiles of wild-type rice exhibited circumnutation in the dark, with vigorous oscillatory movements during their growth. The gravitropic responses in lazy1 coleoptiles differed depending on the growth stage, with gravitropic responses detected during early growth and agravitropism during later growth. The nutation-like movements observed in lazy1 coleoptiles at the early stage of growth were no longer detected with the disappearance of the gravitropic response. To verify the relationship between circumnutation and gravitropic responses in rice coleoptiles, we conducted spaceflight experiments in plants under microgravity conditions on the International Space Station. Wild-type rice seeds were germinated, and the resulting seedlings were grown under microgravity or a centrifuge-generated 1 g environment in space. We began filming the seedlings 2 days after seed imbibition and obtained images of seedling growth every 15 min. The seed germination rate in space was 92-100% under both microgravity and 1 g conditions. LED-synchronized flashlight photography induced an attenuation of coleoptile growth and circumnutational movement due to cumulative light exposure. Nevertheless, wild-type rice coleoptiles still showed circumnutational oscillations under 1 g but not microgravity conditions. These results support the idea that the gravitropic response is involved in plant circumnutation.
机译:植物表现出称为生长器官的螺旋生长运动。一些研究表明,圆弧致力于祖国反应,但这种概念是辩论的问题。在这里,使用阿富利养殖水稻突变体懒人1和空间生长的米饭幼苗,我们发现在植物原体中的芦苇生长期间减少或失去了循环。野生型稻米的植物植物在黑暗中表现出圆弧,在生长过程中具有剧烈的振荡运动。睡眠中的重力响应根据生长阶段的增生阶段不同,在早期生长期间在早期生长期间检测到重力应答。在胃肠早期的睡眠中观察到的含有类似的腐蚀性运动,并在急性反应的消失中不再检测到生长的早期阶段。为了验证水稻鞘内石中的线轮态和墓穴反应之间的关系,我们在国际空间站的微匍匐条件下在植物中进行了空间实验。野生型稻种萌发,所得幼苗在微匍匐或在空间中产生离心的1g环境。我们开始在种子吸收后2天拍摄幼苗并每15分钟获得幼苗生长的图像。在微匍匐和1g条件下,空间中的种子萌发率为92-100%。由于累积光线暴露,LED同步手电筒摄影诱导愈合小山增长和循环运动。尽管如此,野生型稻米鞘内可仍显示在1g以下的振动振荡,但不是微痛条件。这些结果支持了涉及植物线性的重力反应的想法。

著录项

  • 来源
    《Physiologia plantarum 》 |2019年第3期| 共12页
  • 作者单位

    Tohoku Univ Grad Sch Life Sci Aoba Ku Sendai Miyagi 9808577 Japan;

    Tohoku Univ Grad Sch Life Sci Aoba Ku Sendai Miyagi 9808577 Japan;

    Tohoku Univ Grad Sch Life Sci Aoba Ku Sendai Miyagi 9808577 Japan;

    Yamagata Univ Fac Sci Kojirakawa Machi Yamagata 9908560 Japan;

    Tohoku Univ Grad Sch Life Sci Aoba Ku Sendai Miyagi 9808577 Japan;

    Japan Aerosp Explorat Agcy Human Spaceflight Technol Directorate JEM Utilizat Ctr Tsukuba Ibaraki 3058505 Japan;

    Japan Space Forum Space Utilizat Promot Dept Chiyoda Ku Tokyo 1010062 Japan;

    Adv Engn Serv Corp Ltd Future Dev Div Tsukuba Ibaraki 3050032 Japan;

    Japan Aerosp Explorat Agcy Human Spaceflight Technol Directorate JEM Utilizat Ctr Tsukuba Ibaraki 3058505 Japan;

    Tohoku Univ Grad Sch Life Sci Aoba Ku Sendai Miyagi 9808577 Japan;

    Japan Space Forum Space Utilizat Promot Dept Chiyoda Ku Tokyo 1010062 Japan;

    Japan Space Forum Space Utilizat Promot Dept Chiyoda Ku Tokyo 1010062 Japan;

    Tohoku Univ Grad Sch Life Sci Aoba Ku Sendai Miyagi 9808577 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学 ;
  • 关键词

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