College of Engineering, Nanjing Agricultural University/Key Laboratory of Intelligent Agricultural Equipment of Jiangsu Province, Nanjing, 210031, China.
Sci Rep. 2018 Feb 8;8(1):2642. doi: 10.1038/s41598-018-20361-w.
An important aspect of below-ground crop physiology is its root foraging performance, which is inherently related to root system architecture (RSA). A 2-yr field experiment was conducted and the field-state wheat RSA was phenotyped for root foraging trait (RFT). Four RSA-derived traits, i.e. Root horizontal angle (RHA), axial root expansion volume (AREV), RSA convex hull volume (CHV) and effective volume per unit root length (EVURL), were analyzed for RFTs in response to environment × management interactions. Results showed a dynamical RHA process but without statistical difference both within crop seasons and tillage treatments. AREV increased with root developmental stages, revealing an overall better root performance in the first year. However, tillage treatments did not induce observed difference within both crop seasons. CHV varied drastically from year to year and between tillage treatments, correlating well to the root length, but not with RHA. EVURL was both sensitive to tillage treatments and crop seasons, being a potential indicator for RFT. Above all, tillage effect on RFT was statistically far less than that induced by crop seasons. Pro/E assisted modeling can be used as an effective means for phenotyping integrated, RSA-derived, RFTs for root foraging response to induced environment × management interactions.
地下作物生理学的一个重要方面是其根系觅食性能,这与其根系系统结构(RSA)固有相关。我们进行了为期两年的田间试验,并对田间状态下的小麦 RSA 进行了根系觅食特性(RFT)表型分析。我们分析了四个源自 RSA 的特征,即根水平角(RHA)、轴向根扩展体积(AREV)、RSA 凸包体积(CHV)和每单位根长的有效体积(EVURL),以研究它们在响应环境-管理相互作用时的 RFT。结果表明,在作物季节和耕作处理内,RHA 过程具有动态性,但没有统计学差异。AREV 随着根系发育阶段的增加而增加,表明第一年根系的整体性能更好。然而,耕作处理在两个作物季节内均未引起观察到的差异。CHV 每年和耕作处理之间变化很大,与根长很好地相关,但与 RHA 无关。EVURL 对耕作处理和作物季节都很敏感,是 RFT 的一个潜在指标。最重要的是,耕作对 RFT 的影响在统计学上远小于作物季节引起的影响。Pro/E 辅助建模可以作为一种有效的方法,用于表型分析综合的、源自 RSA 的、根系觅食对诱导的环境-管理相互作用的反应的 RFT。