Author:
Gu Huijie,Cseresnyés Imre,Butnor John R.,Li Baoru,Mary Benjamin,Sun Hongyong,Zhang Xiying,Lu Yang,Liu Xiuwei
Abstract
AbstractNoninvasive and nondestructive root phenotyping techniques under field conditions are sorely needed to advance plant root science. Soil polarization measured by electrical capacitance (ECsoil) has the potential to meet this requirement, but whether it specifically detects root properties remains unexplored. We carried out manipulative experiments where wheat (Triticum aestivumL.) and maize (Zea maysL.) roots were buried in soil or immersed in hydroponic solution combined with pot trials to reveal the mechanism of root trait detection by ECsoil, while a field experiment was conducted to test its feasibility to determine root depth distribution. We found that ECsoilmeasured at low current frequency (< 1 kHz) was not significantly affected by the addition of roots to the system either by burying roots in soil or immersing them in solution. At frequency greater than10 kHz a shift occurred, and root polarization contributed more to ECsoilwhich was positively correlated with root volume. When ECsoilwas measured at high frequency (30 kHz −100 kHz) it was well correlated with root volume vertical distribution in the field. The measurement error after soil moisture calibration at depths of 10 cm, 20 cm, 30 cm and 40 cm was 0.4%, 12.0%, 1% and 34%, respectively. Our results demonstrate that ECsoilis a robust method to measurein situroot distribution and we believe the newly available high frequency measurement equipment combined with novel root prediction models will enable ECsoilto be widely used for root phenotyping in the future.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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