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首页> 外文期刊>Crop & Pasture Science >Tensile properties of seminal and nodal roots and their relationship with the root diameter and planting density of maize (Zea mays)
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Tensile properties of seminal and nodal roots and their relationship with the root diameter and planting density of maize (Zea mays)

机译:玉米(Zea Mays)的精细和节点根系的拉伸性能及其与种植密度的关系

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摘要

The tensile property of roots is an important factor for anchorage and for resistance to root lodging. In this study, a root tensile test was applied to maize (Zea mays L.) grown in the field at three planting densities, 4.5x10(4), 6.75x10(4) and 9.0x10(4) plants ha(-1), to quantify the maximum tensile force (F-max) and tensile strength (T-s) of roots at the V10 stage (tenth leaf visible) and grain-filling stage. In addition, relationships among tensile properties, diameter and turgid weight:dry weight (TW:DW) ratio of roots were investigated. The results showed that the F-max of primary and seminal adventitious roots was lower than of nodal roots. Among nodal roots, the F-max of roots on upper nodes was higher. Planting density significantly affected the tensile force of nodal roots of the sixth to eighth tiers; their F-max decreased with increasing planting density. A positive linear correlation between F-max and root diameter and a power function between T-s and root diameter was observed. In addition, there was a positive linear correlation between the TW/DW ratio and root diameter and a negative exponential correlation between T-s and TW:DW ratio. Therefore, nodal roots with a lower TW:DW ratio could have a larger T-s, because their cells are smaller and cell walls are thicker. This result suggests that nodal roots with small and thick cells benefit the tensile properties of maize.
机译:根部的拉丝属性是锚定的重要因素,以及对根部植入的抵抗力。在该研究中,将根拉伸试验施用于在田间生长的玉米(Zea mays L.),在三种种植密度,4.5×10(4),6.75x10(4)和9.0x10(4)植物HA(-1) ,在V10阶段(第十叶片可见)和籽粒灌装阶段,量化最大拉力(F-MAX)和拉伸强度(TS)。此外,研究了拉伸性能,直径和渗透重量的关系:对根的干重(TW:DW)比例进行了研究。结果表明,初级和精源根部的F-MAX低于节点根。在节点根部中,上节点上的根部的F-max更高。种植密度显着影响了第六层至第八层的节点根系的拉伸力;随着种植密度的增加,它们的f-max减少。观察到F-MAX直径与T-S和根直径之间的功率函数之间的正线相关性。此外,TW / DW比和根直径与T-S和TW之间的负指数相关性之间存在正线性相关性。因此,具有较低的TW:DW比的节点根可以具有更大的T-S,因为它们的细胞是较小的并且细胞壁较厚。该结果表明,具有小和厚细胞的节点根部有利于玉米的拉伸性能。

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