Suppr超能文献

合欢的光周期诱导的感夜性运动:III. 内源节律与光敏色素在控制钾离子通量和小叶运动中的相互作用

Phytochrome-controlled Nyctinasty in Albizzia julibrissin: III. Interactions between an Endogenous Rhythm and Phytochrome in Control of Potassium Flux and Leaflet Movement.

作者信息

Satter R L, Galston A W

机构信息

Department of Biology, Yale University, New Haven, Connecticut 06520.

出版信息

Plant Physiol. 1971 Dec;48(6):740-6. doi: 10.1104/pp.48.6.740.

Abstract

Prolonged irradiation during appropriate parts of the diurnal cycle promotes the opening of Albizzia julibrissin leaflets. Leaflets also open without illumination, but such opening starts later and is slower and less complete. Opening in the dark is accompanied by lower potassium efflux from dorsal pulvinule motor cells but equal or greater potassium movement into ventral motor cells than occurs during opening in the light. Far red-absorbing phytochrome inhibits opening in the dark, indicating that its action is similar during endogenously controlled opening and nyctinastic closure; i.e., a high far redabsorbing phytochrome level is associated with low potassium content in ventral motor cells, high potassium content in dorsal motor cells, and a small angle between leaflets.When open leaflets are darkened, there is an immediate and large potassium flux into dorsal motor cells. This is initially independent of red and far red preirradiation, but prior red light appears to promote continued potassium movement into dorsal cells during the latter part of a 90-minute dark period. The situation in ventral motor cells is different; here the effect of prior red or far red irradiation on potassium efflux is evident after 10 minutes of darkness. Phytochrome controls the direction of potassium movement in ventral motor cells during the early part of the dark period (to 25 minutes); potassium moves out of ventral motor cells if leaflets are preirradiated with red light and into these same cells if leaflets are preirradiated with far red light. Kinetic data are consistent with the suggestion that potassium leaving ventral cells enters dorsal cells. However, there must be an additional source of potassium entering dorsal cells since this potassium movement precedes potassium efflux from ventral cells.Pulvinules excised from the lamina or rachilla open and close in response to light and darkness and also move during extended periods of constant intensity light or uninterrupted darkness. This shows that the photoreceptor controlling opening and the oscillator controlling endogenously rhythmic leaflet movement are localized in the pulvinule. In addition, all the potassium that enters expanding cells during leaflet movement and the energy for potassium transport must be available from within the pulvinule.If leaflets are darkened late in the photoperiod, they close more rapidly and show lower inhibition by far red preirradiation or anaerobic conditions. A rhythmic increase in potassium efflux from ventral motor cells appears to be the basis for rhythmic promotion of nyctinastic closure. We suggest this is due to a rhythmic increase in the leakiness of ventral motor cells.

摘要

在昼夜周期的适当时间段进行长时间照射可促进合欢小叶的开放。小叶在无光照的情况下也会开放,但这种开放开始得较晚,速度较慢且不完全。在黑暗中开放时,背侧叶枕运动细胞的钾外流较少,但与在光照下开放相比,钾向腹侧运动细胞的移动量相同或更多。吸收远红光的光敏色素会抑制黑暗中的开放,这表明其在内在控制的开放和感夜性闭合过程中的作用相似;即,高含量的吸收远红光的光敏色素与腹侧运动细胞中的低钾含量、背侧运动细胞中的高钾含量以及小叶之间的小角度相关。当开放的小叶变暗时,会立即有大量钾流入背侧运动细胞。这一过程最初与红光和远红光预照射无关,但先前的红光似乎会在90分钟黑暗期的后期促进钾持续向背侧细胞移动。腹侧运动细胞的情况则不同;在这里,黑暗10分钟后,先前的红光或远红光照射对钾外流的影响就很明显。在黑暗期的早期(至25分钟),光敏色素控制腹侧运动细胞中钾的移动方向;如果小叶预先用红光照射,钾会从腹侧运动细胞中流出,如果小叶预先用远红光照射,钾则会流入这些相同的细胞。动力学数据与钾从腹侧细胞流出并进入背侧细胞的推测一致。然而,必定存在额外的钾源进入背侧细胞,因为这种钾的移动先于钾从腹侧细胞的外流。从叶片或叶轴上切下的叶枕会根据光照和黑暗情况开放和闭合,并且在长时间的恒定强度光照或不间断黑暗期间也会移动。这表明控制开放的光感受器和控制小叶内在节律性运动的振荡器都位于叶枕中。此外,在小叶运动期间进入扩展细胞的所有钾以及钾运输所需的能量都必须来自叶枕内部。如果在光周期后期使小叶变暗,它们会闭合得更快,并且受远红光预照射或厌氧条件的抑制作用更低。腹侧运动细胞中钾外流的节律性增加似乎是感夜性闭合节律性促进的基础。我们认为这是由于腹侧运动细胞的渗漏性有节律地增加所致。

相似文献

引用本文的文献

1
Morphology, anatomy and sleep movements of Ludwigia sedoides.水罗兰的形态、解剖结构和睡眠运动。
Naturwissenschaften. 2023 May 15;110(3):18. doi: 10.1007/s00114-023-01848-7.

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验