首页> 美国卫生研究院文献>Annals of Botany >Contribution of Root Cap Mucilage and Presence of an Intact Root Cap in Maize (Zea mays) to the Reduction of Soil Mechanical Impedance
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Contribution of Root Cap Mucilage and Presence of an Intact Root Cap in Maize (Zea mays) to the Reduction of Soil Mechanical Impedance

机译:玉米(Zea mays)根冠粘液的贡献和完整根冠的存在对降低土壤机械阻抗的贡献

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摘要

• Background and Aims The impedance to root growth imposed by soil can be decreased by both mucilage secretion and the sloughing of border cells from the root cap. The aim of this study is to quantify the contribution of these two factors for maize root growth in compact soil.• Methods These effects were evaluated by assessing growth after removing both mucilage (treatment I – intact) and the root cap (treatment D – decapped) from the root tip, and then by adding back 2 µL of mucilage to both intact (treatment IM – intact plus mucilage) and decapped (treatment DM – decapped plus mucilage) roots. Roots were grown in either loose (0·9 Mg m−3) or compact (1·5 Mg m−3) loamy sand soils. Also examined were the effects of decapping on root penetration resistance at three soil bulk densities (1·3, 1·4 and 1·5 Mg m−3).• Key Results In treatment I, mucilage was visible 12 h after transplanting to the compact soil. The decapping and mucilage treatments affected neither the root elongation nor the root widening rates when the plants were grown in loose soil for 12 h. Root growth pressures of seminal axes in D, DM, I and IM treatments were 0·328, 0·288, 0·272 and 0·222 MPa, respectively, when the roots were grown in compact soil (1·5 Mg m−3 density; 1·59 MPa penetrometer resistance).• Conclusions The contributions of mucilage and presence of the intact root cap without mucilage to the lubricating effect of root cap (percentage decrease in root penetration resistance caused by decapping) were 43 % and 58 %, respectively. The lubricating effect of the root cap was about 30 % and unaffected by the degree of soil compaction (for penetrometer resistances of 0·52, 1·20 and 1·59 MPa).
机译:•背景和目的通过粘液分泌和根冠边缘细胞的脱落,可以降低土壤对根生长的阻抗。这项研究的目的是量化这两个因素对致密土壤中玉米根系生长的贡献。•方法通过去除粘液(处理I –完整)和根冠(处理D-脱盖)后评估生长来评估这些影响)从根尖开始,然后在完整的(处理IM –完整加粘液)根和去盖(处理DM –去除加粘液)根中加回2 µL黏液。根系生长在松散的(0·9 Mg m -3 )或致密的土壤(1·5 Mg m -3 )上。还研究了在三种土壤容重(1·3、1·4和1·5 Mg m −3 )下开盖对根系穿透阻力的影响。移植到致密土壤后12 h可见。当植物在疏松土壤中生长12 h时,去盖和粘液处理既不影响根系伸长也不影响根系扩展速率。当D,DM,I和IM处理的根系生长在致密土壤(1·5 Mg m <时)中,精,精处理的根轴生根压力分别为0·328、0·288、0·272和0·222 MPa。 sup> −3 密度; 1·59 MPa耐压强度计。)结论结论黏液和无黏液的完整根冠对根冠润滑效果的贡献(开盖引起的抗根渗透性百分比降低) )分别为43%和58%。根冠的润滑效果约为30%,不受土壤压实度的影响(对于渗透计的阻力为0·52、1·20和1·59 MPa)。

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