Effect of phosphorus deficiency on growth angle of basal roots in Phaseolus vulgaris

相思 萝卜 豌豆 主根 生物 园艺 根系 开枪 营养物 植物 农学 化学 生态学 有机化学
作者
Amy Bonser,Jonathan P. Lynch,Sieglinde S. Snapp
出处
期刊:New Phytologist [Wiley]
卷期号:132 (2): 281-288 被引量:302
标识
DOI:10.1111/j.1469-8137.1996.tb01847.x
摘要

summary Root architectural plasticity might be an important factor in the acquisition by plants of immobile nutrients such as phosphorus (P). In this study, we examined the effect of P availability on the orientation of basal roots with respect to gravity, and thereby on the growth angle of these roots of common bean ( Phaseolus vulgaris L.). In one set of studies the growth angle of basal roots of bean seedlings was measured over time. Sixteen bean genotypes were examined; six showed a decrease in root orientation with respect to gravity m low P media, one increased orientation, and nine showed no difference within 5 d of basal root emergenece. Bean taproots also showed decreased root orientation with respect to gravity in law P. Growth angle after 5 d was correlated with field performance of contrasting genotypes to low P tropical soils. Mineral deficiencies other than P did not cause changes in root angle. In a. split pouch system that provided high or low P solution to different parts of the root system, the decrease in root angle in low P was found to be a response to globat P availability, and not local to the portion of the root system in low P, Effects of P availability on root angle were associated with reduced shoot P concentration, but preceded effects on plant biomass accumulation and leaf area expansion. Results from growth pouches for genotype G 19833 were confirmed using a solid‐phase buffered sand‐culture system supplying P at three levels. Pea (Pisum sativum) , soybean ( Glycine max Williams), chickpea Cicer arietinum) , lima bean (Phaseolus lunatus) , and lentil (Lens culinaris) were grown with and without P; soybean and pea also showed decreased basal rout angles m low P.

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