Clark Lawrence John, Price Adam Huw, Steele Katherine A, Whalley William Richard
Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, UK.
Department of Plant and Soil Science, University of Aberdeen, Cruickshank Building, St Machar Drive, Aberdeen AB24 3UU, UK.
Funct Plant Biol. 2008 Dec;35(11):1163-1171. doi: 10.1071/FP08132.
Deep rooting can be inhibited by strong layers, although there is evidence for species and cultivar (cv.) differences in their penetration ability. Here, the availability of near-isogenic lines (NILs) in rice (Oryza sativa L.) was exploited to test the hypothesis that increased root diameter is associated with greater root bending stiffness, which leads to greater root penetration of strong layers. Wax/petrolatum discs (80% strong wax) were used as the strong layer, so that strength can be manipulated independently of water status. It was found that good root penetration was consistently associated with greater root diameter and bending stiffness, whether comparisons were made between cvs or between NILs. With NILs, this effect was seen with 'research' lines bred from recombinant inbred lines of a cross between cvs Bala and Azucena and also in improved lines developed from cv. Kalinga III by introgression of parts of the genome from Azucena. Much of the bending behaviour of roots could be explained by treating them as a simple cylinder of material. In both wax disc and sand culture systems, roots that had encountered a strong layer had lower bending stiffness than roots that had not encountered a strong layer which is a novel result and not previously reported.
深根可能会受到硬土层的抑制,尽管有证据表明不同物种和品种在穿透硬土层的能力上存在差异。在此,利用水稻(Oryza sativa L.)近等基因系(NILs)来检验以下假设:根直径增加与更大的根弯曲刚度相关,这会导致根对硬土层的穿透能力更强。蜡/凡士林圆盘(80%强蜡)被用作硬土层,以便强度可以独立于水分状况进行控制。研究发现,无论在品种之间还是近等基因系之间进行比较,良好的根穿透能力始终与更大的根直径和弯曲刚度相关。对于近等基因系,在由品种巴拉(Bala)和阿苏塞纳(Azucena)杂交的重组自交系培育出的“研究”系中以及通过从阿苏塞纳渗入部分基因组而从品种卡林加三世(Kalinga III)培育出的改良系中都观察到了这种效应。根的许多弯曲行为可以通过将它们视为简单的材料圆柱体来解释。在蜡盘和砂培系统中,遇到硬土层的根的弯曲刚度低于未遇到硬土层的根,这是一个新的结果,此前未曾报道过。