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A Positive Tropism of Rice Roots toward a Nutrient Source

向性 营养物 向光性 向重力性 延伸率 植物 生物 根冠 化学 拟南芥 生态学 物理 生物化学 蓝光 病毒 材料科学 冶金 分生组织 病毒学 突变体 光学 极限抗拉强度 基因 开枪
作者
Kiyoshi Yamazaki,Yoshihiro Ohmori,Toru Fujiwara
出处
期刊:Plant and Cell Physiology [Oxford University Press]
卷期号:61 (3): 546-553 被引量:21
标识
DOI:10.1093/pcp/pcz218
摘要

Plants take up water and nutrients through roots, and uptake efficiency depends on root behavior. Roots recognize the moisture gradient in the soil and grow toward the direction of high moisture. This phenomenon is called hydrotropism, and it contributes to efficient water uptake. As nutrients in soil are also unevenly distributed, it is beneficial for plants to grow their roots in the direction of increasing nutrient concentrations, but such a phenomenon has not been demonstrated. Here, we describe the directional growth of roots in response to a nutrient gradient. Using our assay system, the gradient of a nitrogen nutrient, NH4+, was sufficient to stimulate positive tropic responses of rice lateral roots. This phenomenon is a tropism of plant roots to nutrients; hence, we propose the name 'nutritropism'. As well as other tropisms, differential cell elongation was observed before the elongation zone during nutritropism, but the pattern promoting cell elongation preferentially on the non-stimulated side was opposite to those in root hydrotropism and gravitropism. Our evaluation of the NH4+ gradient suggested that the root tips responded to a sub-micromolar difference in NH4+ concentration on both sides of the root. Hydrotropism, gravitropism and phototropism were described in plants as the 'power of movement' by Charles and Francis Darwin in 1880, and these three tropisms have attracted the attention of plant scientists for more than 130 years. Our discovery of nutritropism represents the fourth 'power of movement' in plants and provides a novel root behavioral property used by plants to acquire nutrients efficiently.
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