首页> 外文期刊>European Journal of Agronomy >Morphological and physiological characteristics of corn (Zea mays L.) roots from cultivars with different yield potentials.
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Morphological and physiological characteristics of corn (Zea mays L.) roots from cultivars with different yield potentials.

机译:不同产量潜力玉米品种根系的形态和生理特性。

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Improving grain yield per unit area is needed to meet the growing demand for corn in China where the availability of fertile land is very limited. Roots are vital organs for yield improvement. A field experiment was conducted in 2009 and 2010 to compare the Morphological and physiological characteristics of the root systems of the higher-yielding corn variety DengHai 661 (DH661) and the commonly grown corn variety for northern China ZhengDan 958 (ZD958). The results clearly showed that DH661 consistently yielded higher than ZD958 in both years. The average biomass and grain yield of DH661 were 20.11% and 19.15% higher than those of ZD958. The roots DH661 grow faster than ZD98, it can get the depth to 160-200 cm at VT stage, but the roots of ZD958 get that depth at R3 stage. At the same time, the maximum of root biomass and average root length density (RLD), root actively absorbing area, root TTC reducing capacity after VT stage in both years were 83.06%, 43.30%, 58.10% and 40.38% higher than those of ZD958, respectively. Which can supplying more water and nutrient for the shoot, and improve the LAI, photosynthetic rate (in the later growth stage) and longer duration of high photosynthesis, make the contribution to the shoot growth and grain filling. All the results supporting the hypothesis that greater root systems lead to higher yield.Digital Object Identifier http://dx.doi.org/10.1016/j.eja.2011.12.003
机译:在中国肥沃的土地非常有限的情况下,需要提高单位面积的谷物产量来满足对玉米不断增长的需求。根是提高产量的重要器官。 2009年和2010年进行了田间试验,比较了高产玉米品种登海661(DH661)和中国北方常见的玉米品种郑单958(ZD958)的根系形态和生理特性。结果清楚地表明,DH661在两年中始终比ZD958高。 DH661的平均生物量和籽粒产量比ZD958分别高20.11%和19.15%。根DH661的生长速度快于ZD98,在VT阶段可达到160-200 cm,而ZD958的根在R3阶段可达到该深度。同时,VT期后的根系生物量最大值和平均根长密度(RLD),根系主动吸收面积,根系TTC还原能力分别比前者分别高83.06%,43.30%,58.10%和40.38%。 ZD958。可以为新梢提供更多的水分和养分,并提高LAI,提高光合速率(在生育后期)和延长光合作用的持续时间,这有助于新梢的生长和籽粒的充实。所有结果都支持更大的根系导致更高的产量这一假说。数字对象标识符http://dx.doi.org/10.1016/j.eja.2011.12.003

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