Chen Ying L, Dunbabin Vanessa M, Diggle Art J, Siddique Kadambot H M, Rengel Zed
Soil Science and Plant Nutrition, School of Earth and Environment (M087), University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia.
Tasmanian Institute of Agricultural Research, University of Tasmania, Private Bag 54, Hobart, Tas. 7001, Australia.
Funct Plant Biol. 2011 Jun;38(5):355-363. doi: 10.1071/FP10241.
A semi-hydroponic bin system was developed to provide an efficient phenotyping platform for studying root architecture. The system was designed to accommodate a large number of plants in a small area for screening genotypes. It was constructed using inexpensive and easily obtained materials: 240L plastic mobile bins, clear acrylic panels covered with black calico cloth and a controlled watering system. A screening experiment for root traits of 20 wild genotypes of narrow-leafed lupin (Lupinus angustifolius L.) evaluated the reliability and efficiency of the system. Root architecture, root elongation rate and branching patterns were monitored for 6 weeks. Significant differences in both architectural and morphological traits were observed among tested genotypes, particularly for total root length, branch number, specific root length and branch density. Results demonstrated that the bin system was efficient in screening root traits in narrow-leafed lupin, allowing for rapid measurement of two-dimensional root architecture over time with minimal disturbance to plant growth and without destructive root sampling. The system permits mapping and digital measurement of dynamic growth of taproot and lateral roots. This phenotyping platform is a desirable tool for examining root architecture of deep root systems and large sets of plants in a relatively small space.
开发了一种半水培箱系统,以提供一个用于研究根系结构的高效表型分析平台。该系统旨在在小面积内容纳大量植物以筛选基因型。它是用廉价且容易获得的材料构建的:240升塑料移动箱、覆盖有黑色棉布的透明丙烯酸板和一个可控浇水系统。对20种窄叶羽扇豆(Lupinus angustifolius L.)野生基因型的根系性状进行的筛选实验评估了该系统的可靠性和效率。对根系结构、根伸长率和分支模式进行了6周的监测。在测试的基因型之间观察到结构和形态性状的显著差异,特别是总根长、分支数、比根长和分支密度。结果表明,箱式系统在筛选窄叶羽扇豆的根系性状方面是有效的,能够随着时间的推移快速测量二维根系结构,对植物生长的干扰最小,且无需进行破坏性的根系采样。该系统允许对主根和侧根的动态生长进行绘图和数字测量。这个表型分析平台是在相对较小的空间内检查深根系和大量植物根系结构的理想工具。