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田间种植的玉米幼苗暴露于杂草挥发物中会影响其生长和种子质量。

The exposure of field-grown maize seedlings to weed volatiles affects their growth and seed quality.

作者信息

Sakurai Yusuke, Ishizaki Satomi, Izumi Shota, Yoshida Takuma, Shiojiri Kaori, Takabayashi Junji

机构信息

Graduate School of Science and Technology, Niigata University, Niigata, Japan.

Department of Agriculture, Ryukoku University, Otsu, Japan.

出版信息

Front Plant Sci. 2023 Aug 15;14:1141338. doi: 10.3389/fpls.2023.1141338. eCollection 2023.

Abstract

Plants exposed to volatiles emitted from artificially damaged conspecific or heterospecific plants exhibit increased resistance to herbivorous insects. Here, we examined whether volatiles from artificially damaged weeds affect maize growth and reproduction. Seven days after germination, maize seedlings were exposed to volatiles emitted by artificially damaged mugwort ( var. ) or tall goldenrod () plants either separately, or as a mixture of the two, for seven days. Unexposed seedlings were used as controls. Treated and control seedlings were cultivated in an experimental field without any insecticides applied. Plants exposed to either of the three volatile treatments sustained significantly less damage than controls. Additionally, seedlings exposed to either goldenrod or mixed volatiles produced more leaves and tillers than control plants. Furthermore, a significant increase in the number of ears was observed in plants exposed to the volatile mixture. In all treated plants, ear sugar content was significantly higher than that in the controls. Further, we cultivated seedlings that were either exposed to the volatile mixture or unexposed, under the conventional farming method using pesticides. Similar significant differences were observed for sugar content, number of tillers, leaves, damaged leaves, and ears. Laboratory experiments were conducted to further evaluate the mechanisms involved in the improved performance of volatile-treated plants. A significant reduction in the growth of common armyworm () larvae was observed when maize plants were exposed to the volatile mixture. This treatment did not affect the amount of jasmonic acid in the seedlings, whereas salicylic acid content increased upon exposure. The characteristic differences in chemical composition of mugwort and goldenrod volatiles were confirmed and, in turn, the volatile mixture differed significantly from the volatiles of either species.

摘要

暴露于人工损伤的同种或异种植物释放的挥发物中的植物,对食草昆虫的抗性增强。在此,我们研究了人工损伤的杂草释放的挥发物是否会影响玉米的生长和繁殖。发芽7天后,玉米幼苗分别暴露于人工损伤的艾蒿(变种)或一枝黄花释放的挥发物中,或同时暴露于这两种植物释放的挥发物混合物中,持续7天。未暴露的幼苗用作对照。处理过的和对照的幼苗在未施用任何杀虫剂的试验田中种植。暴露于三种挥发物处理之一的植物遭受的损害明显低于对照。此外,暴露于一枝黄花或混合挥发物的幼苗比对照植物长出更多的叶子和分蘖。此外,暴露于挥发物混合物的植物的果穗数量显著增加。在所有处理过的植物中,果穗糖分含量显著高于对照。此外,我们在使用农药的传统耕作方法下种植了暴露于挥发物混合物或未暴露的幼苗。在糖分含量、分蘖数、叶片数、受损叶片数和果穗数方面也观察到了类似的显著差异。进行了实验室实验,以进一步评估挥发物处理植物性能改善所涉及的机制。当玉米植株暴露于挥发物混合物时,观察到粘虫幼虫的生长显著减少。这种处理不影响幼苗中茉莉酸的含量,而水杨酸含量在暴露后增加。确认了艾蒿和一枝黄花挥发物化学成分的特征差异,反过来,挥发物混合物与这两个物种的挥发物有显著差异。

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