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首页> 外文期刊>Journal of Plant Physiology >RAPID FLUENCE-DEPENDENT RESPONSES TO ULTRAVIOLET-B RADIATION IN CUCUMBER LEAVES - THE ROLE OF UV-ABSORBING PIGMENTS IN DAMAGE PROTECTION
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RAPID FLUENCE-DEPENDENT RESPONSES TO ULTRAVIOLET-B RADIATION IN CUCUMBER LEAVES - THE ROLE OF UV-ABSORBING PIGMENTS IN DAMAGE PROTECTION

机译:黄瓜叶片中紫外线B辐射的快速荧光响应-吸收紫外线的色素在损伤防护中的作用

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摘要

The role of foliar UV-absorbing pigments (UVAP) as optical screening agents in the resistance of Cucumis sativus L. to UV-B radiation was investigated by exposing young leaves at a defined developmental stage from sensitive (cv Poinsett) and insensitive (cv Ashley) lines to brief UV-B treatments varying between 4 and 10 h. The amount of blue light (BL) or UV-A radiation during W-B exposure was also varied. Rapid increases in UVAP) immediately following UV-B were compared to damage in the same tissue (increased specific leaf weight or chlorosis) determined 72 h after the start of UV-B. Poinsett was more sensitive to both forms of UV-B damage than Ashley under conditions where the response to UV-B was not saturated. Although UVAP increased rapidly in response to UV-B, it is unlikely that optical screening by these compounds was responsible for genetic differences in sensitivity to UV-B for the following reasons: 1) the kinetics of UVAP increase were similar to that for induction of damage; 2) increases in UVAP in the UV-sensitive line (Poinsett) were similar to those in the resistant line (Ashley); and 3) BL and UV-A radiation significantly reduced damage by UV-B in cv Poinsett when given simultaneously but had relatively small stimulatory effects on rapid UVAP accumulation. These results do not rule out a general role for optical screening by UVAP nor do they exclude the possibility that qualitative differences in UVAP (e.g., as antioxidants) are the basis for cultivar differences.
机译:通过在确定的发育阶段将敏感的(cv Poinsett)和不敏感的(cv Ashley)的幼叶暴露,研究了叶面吸收紫外线的色素(UVAP)作为光学筛选剂对黄瓜(Cucumis sativus L.)抵抗UV-B辐射的作用。 )线进行简短的UV-B处理,时间在4至10小时之间。在W-B曝光期间,蓝光(BL)或UV-A辐射的数量也有所变化。将紧接UV-B之后的UVAP快速增加)与开始UV-B开始72小时后确定的同一组织的损伤(比叶重增加或萎黄病增加)进行了比较。在对UV-B的响应不饱和的条件下,Poinsett对这两种形式的UV-B损伤比Ashley更为敏感。尽管UVAP对UV-B的响应迅速增加,但由于以下原因,这些化合物的光学筛选不太可能是造成对UV-B敏感性的遗传差异的原因:1)UVAP的动力学类似于诱导UV-B的动力学。损伤; 2)紫外线敏感品系(Poinsett)中的UVAP增加与耐药品系(Ashley)中的相似; 3)BL和UV-A辐射同时给予cv Poinsett对UV-B的伤害明显降低,但对快速UVAP积累的刺激作用相对较小。这些结果不排除通过UVAP进行光学筛选的一般作用,也不排除UVAP的定性差异(例如,作为抗氧化剂)是品种差异的基础的可能性。

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