首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Coronatine inhibits mesocotyl elongation by promoting ethylene production in etiolated maize seedlings
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Coronatine inhibits mesocotyl elongation by promoting ethylene production in etiolated maize seedlings

机译:冠状甘氨酸通过促进乙烯生产在碘化玉米幼苗中的乙烯生物抑制鞘膜

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摘要

Maize (Zea mays L.) is one of the most important cereal crops in the world. In order to survive, plants must regulate their growth in response to multiple developmental and environmental cues, including modulating lodging stress. Coronatine is a chlorosis-inducing non-host-specific phytotoxin produced by several members of the Pseudomonas syringe group of pathovars, which can lead to leaf chlorosis, anthocyanin production, and growth inhibition. In this study, we investigated the physiological mechanism for coronatine during maize mesocotyl growth and development. Using ethephon as a positive control, we found that coronatine inhibited the elongation of mesocotyls in maize B73 etiolated seedlings which was related to ethylene production. Both coronatine and ethephon increased mesocotyls coarsening by increasing the cell diameter and shortened it by inhibiting cell elongation. Coronatine also thickened cell walls in longitudinal and transverse sections by increasing the expression of the cellulose lignin synthesis gene ZmEXT. To further verify the correlation between coronatine and ethephon during mesocotyl growth, we detected the release of endogenous ethylene and the expression of ZmACOs and ZmACSs. We found that coronatine increased the ethylene production while inhibiting auxin synthesis, thereby inhibiting mesocotyl growth.
机译:玉米(Zea Mays L.)是世界上最重要的谷物作物之一。为了生存,植物必须以响应多种发育和环境提示来调节其增长,包括调节留下压力。冠状藻是一种萎缩的诱导氯结菌诱导的非宿主特异性植物毒素,其缺点毒素的若干成员,可导致氯化氯阳,花青素生产和生长抑制。在这项研究中,我们研究了玉米中核苷酸生长和发育过程中冠状苷的生理机制。利用乙醇作为阳性对照,我们发现冠状氨酸抑制了与乙烯生产有关的玉米B73光素幼苗中的中骨髓胶质胶质。冠状苷和埃塞法尔均通过增加细胞直径并通过抑制细胞伸长来增加粗化的胚轴。通过增加纤维素木质素合成基因Zmext的表达,冠状蛋白还通过纵向和横截面增厚细胞壁。为了进一步验证中核苷酸生长期间核苷酸和乙鱼之间的相关性,我们检测到内源性乙烯和ZMACOS和ZMACS的表达释放。我们发现核素抑制植物蛋白合成的同时增加了乙烯生产,从而抑制了胚轴生长。

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