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紫外线辐射作为叶片扩展和发育的限制因素。

Ultraviolet radiation as a limiting factor in leaf expansion and development.

作者信息

Wargent Jason J, Moore Jason P, Roland Ennos A, Paul Nigel D

机构信息

Department of Biological Sciences, Lancaster University, Lancaster, UK.

出版信息

Photochem Photobiol. 2009 Jan-Feb;85(1):279-86. doi: 10.1111/j.1751-1097.2008.00433.x. Epub 2008 Aug 27.

DOI:10.1111/j.1751-1097.2008.00433.x
PMID:18764892
Abstract

Reductions in leaf growth are a commonly observed response to ultraviolet radiation, but the underlying mechanisms remain poorly defined. This study examined the response of leaves exposed to a UV environment across a range of organizational scales, including leaf expansion rate, epidermal cell size and number, biomechanical properties, leaf-water relations and activity of cell-wall peroxidases. Two experimental approaches were used; Lettuce (Lactuca sativa L.) plants were propagated under (a) supplementary UV-B (9 kJ m(-2) day(-1)) in controlled environment (CE) conditions, and (b) field conditions, where plants were placed under three horticultural films with differing UV transmissions. In both experiments, UV-B caused the greatest reductions in leaf expansion and final leaf size, with some reductions attributable to UV-A wavelengths. In supplementary UV-B conditions, adaxial cell size was reduced, while in field plants, both cell size and cell number were lower in an increased UV environment, as was the case with abaxial cells in CE plants. Although leaf turgor and leaf extensibility were not affected by UV wavelengths, breaking strain of leaf tissue was decreased under supplementary UV-B. Cell-wall peroxidase activity was increased in both supplementary UV conditions and in the field, where only a zero UV environment showed no upregulation of cell-wall peroxidase.

摘要

叶片生长受抑制是对紫外线辐射常见的反应,但潜在机制仍不清楚。本研究在一系列组织尺度上研究了暴露于紫外线环境下叶片的反应,包括叶片扩展速率、表皮细胞大小和数量、生物力学特性、叶水关系以及细胞壁过氧化物酶的活性。采用了两种实验方法;生菜(Lactuca sativa L.)植株在(a)可控环境(CE)条件下补充紫外线B(9 kJ m(-2) 天(-1))以及(b)田间条件下繁殖,田间条件下植株置于三种紫外线透过率不同的园艺薄膜下。在两个实验中,紫外线B对叶片扩展和最终叶片大小的抑制作用最大,部分抑制作用归因于紫外线A波长。在补充紫外线B条件下,近轴细胞大小减小,而在田间植株中,在紫外线增强的环境下细胞大小和细胞数量均降低,CE条件下的远轴细胞情况也是如此。虽然叶片膨压和叶片伸展性不受紫外线波长影响,但在补充紫外线B条件下叶片组织的断裂应变降低。在补充紫外线条件下和田间,细胞壁过氧化物酶活性均增加,只有零紫外线环境下未出现细胞壁过氧化物酶上调。

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