Blösch Regula, Plaza-Wüthrich Sonia, Barbier de Reuille Pierre, Weichert Annett, Routier-Kierzkowska Anne-Lise, Cannarozzi Gina, Robinson Sarah, Tadele Zerihun
Institute of Plant Sciences, University of Bern, Bern, Switzerland.
Institut de Recherche en Biologie Végétale, University of Montreal, Montréal, QC, Canada.
Front Plant Sci. 2020 Feb 13;11:61. doi: 10.3389/fpls.2020.00061. eCollection 2020.
Tef [ (Zucc.) Trotter] is an important crop in the Horn of Africa, particularly in Ethiopia, where it is a staple food for over 60 million people. However, the productivity of tef remains extremely low in part due to its susceptibility to lodging. Lodging is the displacement of the plant from the upright position, and it is exacerbated by rain, wind and the application of fertilizer. In order to address the issue of global food security, especially in the Horn of Africa, greater insight into the causes of tef lodging is needed. In this study, we combine modeling and biomechanical measurements to compare the properties relating to lodging tolerance in high yielding, improved tef genotypes, and lower yielding natural landraces. Our results indicate that the angle of the panicle contributes to the likelihood of lodging in tef. Varieties with compact panicles and reduced height had increased lodging resistance compared to the other varieties. By comparing different varieties, we found that overall, the landraces of tef lodged less than improved varieties. We constructed a model of stem bending and found that panicle angle was an important determinant of the amount of lodging. The findings from this study provide key information to those involved in tef improvement, especially those interested in lodging tolerance.
画眉草[(祖克.)特罗特]是非洲之角的一种重要作物,尤其是在埃塞俄比亚,它是超过6000万人的主食。然而,画眉草的产量仍然极低,部分原因是它易倒伏。倒伏是指植株从直立位置移位,降雨、大风和施肥会加剧这种情况。为了解决全球粮食安全问题,特别是非洲之角的粮食安全问题,需要更深入地了解画眉草倒伏的原因。在本研究中,我们结合建模和生物力学测量,比较高产、改良的画眉草基因型和低产天然地方品种与抗倒伏相关的特性。我们的结果表明,圆锥花序的角度会影响画眉草倒伏的可能性。与其他品种相比,圆锥花序紧凑且植株较矮的品种抗倒伏能力增强。通过比较不同品种,我们发现总体而言,画眉草的地方品种比改良品种倒伏更少。我们构建了一个茎弯曲模型,发现圆锥花序角度是倒伏量的一个重要决定因素。本研究的结果为参与画眉草改良的人员,尤其是那些对抗倒伏感兴趣的人员提供了关键信息。