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根冠介导评价玉米(Zea mays L.)向重响应根的土壤阻力和乙烯的相关性。

Root cap-mediated evaluation of soil resistance towards graviresponding roots of maize (Zea mays L.) and the relevance of ethylene.

机构信息

Institute of Biology and its Didactics, University of Cologne, Herbert Lewinstraße, Cologne, Germany.

出版信息

Ann Bot. 2018 Nov 3;122(5):791-800. doi: 10.1093/aob/mcx209.

Abstract

BACKGROUND AND AIMS

Besides biological and chemical impacts, mechanical resistance represents an important obstacle that growing roots face. Graviresponding roots must assess the mechanical resistance of the substrate and take decisions on whether they change growth direction and grow around obstacles or tolerate growth conditions impaired to varying degrees. To test the significance of the root cap, we measured pressure and growth behaviour of single intact, as well as decapped, roots encountering diverse mechanical obstacles. We examined ethylene emission in intact roots as well as roots without a root cap, thereby lacking the capacity to deviate.

METHODS

Roots of fixed seedlings were grown vertically onto diverse mechanical obstacles. Developing pressure profiles of vertically growing roots encountering horizontal mechanical obstacles were measured employing electronic milligram scales, with and without root caps in given local environmental conditions. The evolution of root-borne ethylene was measured in intact roots and roots without the root cap.

KEY RESULTS

In contrast to decapped roots, intact roots develop a tentative, short-lasting pressure profile, the resolution of which is characterized by a definite change of growth direction. Similarly, pressure profiles and strengths of roots facing gradually differing surface resistances differ significantly between the two. This correlates in the short term with root cap-dependent ethylene emission which is lacking in roots without caps.

CONCLUSIONS

The way gravistimulated and graviresponding roots cope with exogenous stimuli depends on whether and how they adapt to these impacts. With respect to mechanical hindrances, roots without caps do not seem to be able to evaluate soil strengths in order to respond adequately. On encountering resistance, roots with intact caps emit ethylene, which is not observed in decapped roots. It therefore appears that it is the root cap which specifically orchestrates the resistance needed to overcome mechanical resistance by specifically inducing ethylene.

摘要

背景和目的

除了生物和化学影响外,机械阻力是生长中的根系面临的重要障碍。向重性响应的根系必须评估基质的机械阻力,并决定是改变生长方向并绕过障碍物生长,还是容忍在不同程度上受到损害的生长条件。为了测试根冠的重要性,我们测量了遇到各种机械障碍物的完整和去冠单根的压力和生长行为。我们检查了完整根和没有根冠的根(从而丧失了偏离能力)中的乙烯排放。

方法

将固定幼苗的根系垂直生长到各种机械障碍物上。在给定的局部环境条件下,使用电子毫克秤测量遇到水平机械障碍物的垂直生长根系的发展压力曲线,同时具有和不具有根冠。在完整的根和没有根冠的根中测量根产生的乙烯的演化。

主要结果

与去冠根相比,完整的根会产生一个试探性的、短暂的压力曲线,其分辨率的特征是生长方向发生明显变化。同样,面对逐渐不同的表面阻力的根系的压力曲线和强度在两者之间也有很大的不同。这在短期内与根冠依赖性乙烯排放相关,而没有根冠的根中缺乏这种排放。

结论

向重性刺激和向重性响应的根系应对外源刺激的方式取决于它们是否以及如何适应这些影响。就机械障碍而言,没有根冠的根似乎无法评估土壤强度以做出适当的反应。在遇到阻力时,具有完整根冠的根会释放乙烯,而没有根冠的根则不会观察到这种现象。因此,似乎是根冠具体协调了克服机械阻力所需的阻力,通过具体诱导乙烯来实现。

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