[巴西橡胶树不同类型根系的地向性反应]。

Y. Le Roux, L. Pagès
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引用次数: 8

摘要

为了描述巴西橡胶树(hevea brasiliensis)不同类型的地向性反应,在根观察箱中培养幼苗,并对其进行双重重力刺激(微型电子管在垂直平面上旋转90度)。结果表明,直根迅速恢复到刺激前的垂直位置,是一个强正向性器官。形态和形态发生的改变与地向性反应有关:生长速度减慢,根尖直径减小,弯曲区和弯曲区分枝密度改变。早期次生根系的正地向性有所减弱,重力刺激前的生长方向越远离垂直方向,正地向性越弱。顶尖序列的次生根呈半斜向,即只有在重力刺激恢复后的次生根或多或少向原方向向上伸展。第三根对重力刺激没有反应,因此是各向异性的。在大型实验室根管中进行的补充观察表明,后期形成的次生根在其年轻阶段是斜向的,此后失去了对重力的大部分敏感性。第四纪根是各向异性的。在这些数据的基础上,我们定义了橡胶树根系内的地向梯度,其中响应强烈的主根和晚次生根与响应弱或不响应的第三系和第四系根相对立。讨论了不同橡胶树根类型的异向地性反应的功能意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Geotropic reaction of different types of roots in Hevea brasiliensis].
To describe the different types of geotropic reactions of hevea (Hevea brasiliensis), young seedlings were cultivated in root observation boxes and submitted to a double gravistimulation (90 degrees rotation of the minirhizotrons in the vertical plane). It was demonstrated that the taproot is a strongly orthogeotropic organ since it resumed rapidly its prestimulation vertical position. Morphological and morphogenetic modifications were associated with the geotropic response: reduced speed of growth coupled with a reduction of the apical diameter as well as an alteration of ramification density in the curving zone and the following one. Early secondary roots showed a somewhat reduced orthogeotropism that was weaker as the growth direction before gravistimulation was more distant from the vertical. Secondary roots of the acropetal sequence were semiplagiotropic, that is only those roots oriented upward after the gravistimulation resumed, more or less, the original direction. Tertiary roots didn't respond to the gravistimulation and therefore were ageotropic. Complementary observations conducted in large laboratory rhizotrons showed that late forming secondary roots were plagiotropic in their younger stages, thereafter loosing most of their sensitivity to gravity. Quaternary roots were ageotropic. On the basis of these data, a geotropic gradient was defined within the hevea root system, where the strongly responding taproot and late secondary roots are opposed to the weakly or nonresponding tertiary and quaternary roots. Functional significations of the differential geotropic reactions in different hevea root types are discussed.
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