Effect of phosphorus availability on basal root shallowness in common bean

被引:1
作者
Hong Liao
Gerardo Rubio
Xiaolong Yan
Aiqin Cao
Kathleen M. Brown
Jonathan P. Lynch
机构
[1] South China Agricultural University,Laboratory of Plant Nutritional Genetics and Root Biology Center
[2] The Pennsylvania State University,Department of Horticulture
[3] University of Buenos Aires,Faculty of Agronomy
来源
Plant and Soil | 2001年 / 232卷
关键词
common bean; phosphorus availability; basal root gravitropism;
D O I
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中图分类号
学科分类号
摘要
Root gravitropism may be an important element of plant response to phosphorus availability because it determines root foraging in fertile topsoil horizons, and thereby phosphorus acquisition. In this study we seek to test this hypothesis in both two dimensional paper growth pouch and three-dimensional solid media of sand and soil cultures. Five common bean (Phaseolus vulgaris L.) genotypes with contrasting adaptation to low phosphorus availability were evaluated in growth pouches over 6 days of growth, and in sand culture and soil culture over 4 weeks of growth. In all three media, phosphorus availability regulated the gravitropic response of basal roots in a genotype-dependent manner. In pouches, sand, and soil, the phosphorus-inefficient genotype DOR 364 had deeper roots with phosphorus stress, whereas the phosphorus-efficient genotype G19833 responded to phosphorus stress by producing shallower roots. Genotypes were most responsive to phosphorus stress in sand culture, where relative root allocation to the 0–3- and 3–6-cm horizons increased 50% with phosphorus stress, and varied 300% (3–6 cm) to 500% (0–3 cm) among genotypes. Our results indicate that (1) phosphorus availability regulates root gravitropic growth in both paper and solid media, (2) responses observed in young seedlings continue throughout vegetative growth, (3) the response of root gravitropism to phosphorus availability varies among genotypes, and (4) genotypic adaptation to low phosphorus availability is correlated with the ability to allocate roots to shallow soil horizons under phosphorus stress.
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页码:69 / 79
页数:10
相关论文
共 96 条
  • [1] Beebe S(1997)A geographical approach to identify phosphorus-efficient genotypes among landraces and wild ancestors of common bean Euphytica 95 325-336
  • [2] Lynch J. P.(1995)Arbuscular mycorrhizal induced changes to plant growth and root system morphology in Tree Physiol. 15 281-293
  • [3] Galwey N(1996)Effect of phosphorus deficiency on growth angle of basal roots of L. New Phytol. 132 281-288
  • [4] Tohme J(1999)Ethylene: a regulator of root architectural responses to soil phosphorus availability Plant Cell Environ. 22 425-431
  • [5] Ochoa I(1966)Surface activity of inorganic soil phosphorus Soil Sci. 101 459-464
  • [6] Berta G(1982)A sand culture system for simulating plant responses to phosphorus in soil J. Am. Soc. Hortic. Sci. 107 938-942
  • [7] Trotta A(1998)Responses of citrus fine roots to localized soil drying: a comparison of seedlings with adult fruiting trees Tree Physiol. 18 113-119
  • [8] Fusconi A(1991)Gravitropism: interaction of sensitivity modulation and effector redistribution Plant Physiol. 95 1-5
  • [9] Hooker J. E.(2000)The importance of root gravitropism for inter-root competition and phosphorus acquisition efficiency: results from a geometric simulation model Plant Soil 218 159-171
  • [10] Munro M(1974)Ethylene in relation to the response of roots to physical impedance Plant Soil 40 565-571