Department of Botany, Faculty of Science, Damietta University, New Damietta, 34517, Egypt.
Physiol Plant. 2016 Apr;156(4):371-86. doi: 10.1111/ppl.12377. Epub 2015 Sep 21.
Rice has shallow, weak roots, but it is unknown how much increase in yield potential could be achieved if the root/shoot ratio is corrected. Removing all tillers except the main one, in a japonica (Sakha 101) and an indica (IR64) rice cultivar, instantly increased the root/shoot ratio from 0.21 to 1.16 in Sakha 101 and from 0.16 to 1.46 in IR64. Over 30 days after detillering, the root/shoot ratios of the detillered plants decreased to 0.49 in Sakha 101 and 0.46 in IR64 but remained significantly higher than in the controls. The detillered plants showed two- or fourfold increase in the main tiller fresh weight, as a consequence of more positive midday leaf relative water content (RWC), and consistently higher rates of stomatal conductance and photosynthesis, but not transpiration, compared with the controls. The enhanced photosynthesis in Sakha 101 after detillering resulted from both improved water status and higher Rubisco contents whereas in IR64, increasing the Rubisco content did not contribute to improving photosynthesis. Detillering did not increase the carbohydrate contents of leaves but prevented starch depletion at the end of grain filling. The leaf protein content during vegetative and reproductive stages, the grain filling rate, the number of filled grains per panicle were greatly improved, bringing about 38.3 and 35.9% increase in the harvested grain dry weight per panicle in Sakha 101 and IR64, respectively. We provide evidence that improving the root performance by increasing the root/shoot ratio would eliminate the current limitations to photosynthesis and growth in rice.
水稻根系较浅,较弱,但如果校正根/冠比,产量潜力能提高多少尚不清楚。在粳稻(Sakha 101)和籼稻(IR64)品种中,除主穗外去除所有分蘖,立即将根/冠比从 Sakha 101 的 0.21 增加到 1.16,从 IR64 的 0.16 增加到 1.46。去蘖 30 天后,去蘖植株的根/冠比在 Sakha 101 中降至 0.49,在 IR64 中降至 0.46,但仍明显高于对照。与对照相比,去蘖植株的主蘖鲜重增加了两倍或四倍,这是由于中午叶片相对含水量(RWC)更为积极,以及气孔导度和光合作用持续较高,而蒸腾作用较低的结果。与对照相比,Sakha 101 去蘖后光合作用增强既得益于更好的水分状况,也得益于 Rubisco 含量更高,而在 IR64 中,增加 Rubisco 含量并不能有助于提高光合作用。去蘖并没有增加叶片的碳水化合物含量,但防止了灌浆末期淀粉的耗尽。叶片在营养和生殖阶段的蛋白质含量、灌浆速率、每穗充实粒数都有很大提高,使 Sakha 101 和 IR64 的每穗收获干重分别增加了 38.3%和 35.9%。我们提供的证据表明,通过增加根/冠比来改善根系性能,可以消除当前水稻光合作用和生长的限制。