Cao Hong-Xing, Zhang Zheng-Bin, Xu Ping, Chu Li-Ye, Shao Hong-Bo, Lu Zhao-Hua, Liu Jun-Hong
Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang 050021, China.
Colloids Surf B Biointerfaces. 2007 May 15;57(1):1-7. doi: 10.1016/j.colsurfb.2006.11.036. Epub 2006 Dec 6.
Water deficiency and lower fertilizer utilization efficiency are major constraints of productivity and yield stability. Improvements of crop water use efficiency (WUE) and nutrient use efficiency (NUE) is becoming an important objective in crop breeding. With the introduction of new physiological and biological approaches, we can better understand the mutual genetics mechanism of high use efficiency of water and nutrient. Much work has been done in past decades mainly including the interactions between different fertilizers and water influences on root characteristics and crop growth. Fertilizer quantity and form were regulated in order to improve crop WUE. The crop WUE and NUE shared the same increment tendency during evolution process; some genes associated with WUE and NUE have been precisely located and marked on the same chromosomes, some genes related to WUE and NUE have been cloned and transferred into wheat and rice and other plants, they can enhance water and nutrient use efficiency. The proteins transporting nutrient and water were identified such as some water channel proteins. The advance on the mechanism of higher water and nutrient use efficiency in crop was reviewed in this article, and it could provide some useful information for further research on WUE and NUE in crop.
水分亏缺和肥料利用效率较低是生产力和产量稳定性的主要限制因素。提高作物水分利用效率(WUE)和养分利用效率(NUE)正成为作物育种的一个重要目标。随着新的生理和生物学方法的引入,我们能够更好地理解水分和养分高效利用的共同遗传机制。在过去几十年里已经开展了许多工作,主要包括不同肥料之间的相互作用以及水分对根系特性和作物生长的影响。为了提高作物WUE,对肥料用量和形态进行了调控。在进化过程中,作物WUE和NUE呈现相同的增加趋势;一些与WUE和NUE相关的基因已被精确定位并标记在同一条染色体上,一些与WUE和NUE相关的基因已被克隆并转入小麦和水稻等植物中,它们能够提高水分和养分利用效率。已鉴定出运输养分和水分的蛋白质,如一些水通道蛋白。本文综述了作物水分和养分高效利用机制的研究进展,可为进一步研究作物WUE和NUE提供一些有用信息。