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冬小麦的深扎根:两个具有深浅根系品种的深根生根节。

Deep rooting in winter wheat: rooting nodes of deep roots in two cultivars with deep and shallow root systems.

作者信息

Araki H, Iijima M

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan.

出版信息

Plant Prod Sci. 2001 Sep;4(3):215-9. doi: 10.1626/pps.4.215.

Abstract

Deep rooting of wheat has been suggested that it influences the tolerance to various environmental stresses. In this study, the nodes from which the deepest penetrated roots had emerged were examined in winter wheat. The wheat was grown in long tubes with or without mechanical stress and in large root boxes. The length and growth angle of each axile root were examined to analyze the difference in the vertical distribution of the roots between the two wheat cultivars, one with a deep and one with a shallow root system. In Shiroganekomugi, a Japanese winter wheat cultivar with a shallow root system, the rooting depths of the seminal and nodal roots decreased as the rooting nodes advanced acropetally. Six out of nine deepest roots were seminal root in the non-mechanical stress conditions. In Mutsubenkei, a Japanese winter wheat cultivar with a deep root system, grown in root boxes, not only the seminal roots but also the coleoptilar and the first nodal roots penetrated to a depth of more than 1.3 m in the root box, and became the deepest roots. In both cultivars, the seminal roots became the deepest roots under the mechanical stress conditions. There were no clear tendencies in the root growth angles among the rooting nodes in the wheat root system. This indicates that the length of the axile roots can explain the differences in the rooting depths among axile roots in a wheat root system. On the other hand, the axile roots of Mutsubenkei elongated significantly more vertically than those of Shiroganekomugi. This suggests that not only seminal but also nodal roots exhibit strong positive gravitropism and penetrate deeply in a cultivar with a deep root system. In wheat cultivars, it is likely that the extent of its Root Depth Index results partly from the gravitropic responses of both seminal and nodal roots.

摘要

有人提出,小麦的深根性会影响其对各种环境胁迫的耐受性。在本研究中,对冬小麦中最深穿透根所发出的节进行了检查。小麦种植在有或没有机械胁迫的长管中以及大型根箱中。检查了每条轴根的长度和生长角度,以分析两个小麦品种(一个根系深,一个根系浅)之间根系垂直分布的差异。在日本冬小麦品种白根麦(Shiroganekomugi)中,其根系浅,随着生根节向顶端推进,胚根和节根的生根深度降低。在非机械胁迫条件下,九条最深的根中有六条是胚根。在日本冬小麦品种农林26号(Mutsubenkei)中,其根系深,种植在根箱中,不仅胚根,而且胚芽鞘和第一节根在根箱中都能穿透到1.3米以上的深度,并成为最深的根。在两个品种中,在机械胁迫条件下胚根都成为最深的根。小麦根系中生根节之间的根生长角度没有明显趋势。这表明轴根的长度可以解释小麦根系中轴根生根深度的差异。另一方面,农林26号的轴根比白根麦的轴根在垂直方向上显著伸长更多。这表明不仅胚根,而且节根在根系深的品种中都表现出强烈的正向重力性并深入生长。在小麦品种中,其根深度指数的程度可能部分源于胚根和节根的重力反应。

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