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Water ascent in trees and lianas: the cohesion-tension theory revisited in the wake of Otto Renner

机译:树木和藤本植物中的水上升:在奥托·伦纳(Otto Renner)之后重新审视了凝聚力理论

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摘要

The cohesion-tension theory of water ascent (C-T) has been challenged over the past decades by a large body of experimental evidence obtained by means of several minimum or non-invasive techniques. The evidence strongly suggests that land plants acquire water through interplay of several mechanisms covered by the multi-force theory of (U. Zimmermann et al. New Phytologist 162: 575–615, 2004). The diversity of mechanisms includes, for instance, water acquisition by inverse transpiration and thermodynamically uphill transmembrane water secretion by cation-chloride cotransporters (L.H. Wegner, Progress in Botany 76:109–141, 2014). This whole plant perspective was opened by Otto Renner at the beginning of the last century who supported experimentally the strictly xylem-bound C-T mechanism, yet anticipated that the water ascent involves both the xylem conduit and parenchyma tissues. The survey also illustrates the known paradigm that new techniques generate new insights, as well as a paradigm experienced by Max Planck that a new scientific idea is not welcomed by the community instantly.
机译:在过去的几十年中,水上升(C-T)的凝聚力理论一直受到通过几种最小限度或非侵入性技术获得的大量实验证据的挑战。有充分的证据表明,陆地植物通过多种力相互作用的机制获取水分(U. Zimmermann等人,New Phytologist 162:575-615,2004)。机制的多样性包括,例如,通过逆向蒸腾获得的水和阳离子-氯化物共转运蛋白的热力学上跨膜水的分泌(L.H. Wegner,植物学进展76:109-141,2014)。整个植物的观点是由上世纪初的Otto Renner提出的,他通过实验支持严格的木质部结合的C-T机制,但预计水上升涉及木质部导管和薄壁组织。该调查还说明了新技术可以产生新见解的已知范例,以及Max Planck所经历的范例,即新的科学观念不会立即受到社区的欢迎。

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