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红蓝网改变苹果树叶片的形态和生理特征。

Red and Blue Netting Alters Leaf Morphological and Physiological Characteristics in Apple Trees.

作者信息

Bastías Richard M, Losciale Pasquale, Chieco Camilla, Corelli-Grappadelli Luca

机构信息

Departamento de Producción Vegetal, Facultad de Agronomía, Universidad de Concepción, 3780000 Chillán, Chile.

Department of Soil, Plant and Food Sciences, University of Bari "Aldo Moro", 70121 Bari, Italy.

出版信息

Plants (Basel). 2021 Jan 9;10(1):127. doi: 10.3390/plants10010127.

Abstract

There is little information about the role of red and blue light on leaf morphology and physiology in fruit trees, and more studies have been developed in herbaceous plants grown under controlled light conditions. The objective of this research was to evaluate the effect of red and blue screens on morpho-anatomy and gas exchange in apple leaves grown under ambient sunlight conditions. Apple trees cv. Fuji were covered by 40% red and blue nets, leaving trees with 20% white net as control. Light relations (photosynthetic photon flux density, PPFD; red to far-red light ratio, R/FR and blue to red light ratio, B/R), morpho-anatomical features of the leaf (palisade to spongy mesophyll ratio, P/S, and stomata density, SD) and leaf gas exchange (net photosynthesis rate, A; stomatal conductance, ; transpiration rate, ; and intrinsic water use efficiency, IWUE) were evaluated. Red and blue nets reduced 27% PPFD, reducing by 20% SD and 25% P/S compared to control, but without negative effects on A and . Blue net increased 21%, leading to the highest and lowest IWUE by increment of B/R light proportion. These findings demonstrate the potential use of red and blue nets for differential modulation of apple leaf gas exchange through sunlight management under field conditions.

摘要

关于红光和蓝光对果树叶片形态和生理的作用,相关信息较少,更多研究是在可控光照条件下对草本植物开展的。本研究的目的是评估红色和蓝色遮阳网对在自然阳光条件下生长的苹果叶片形态解剖结构和气体交换的影响。富士品种苹果树用40%的红色和蓝色网覆盖,留20%白色网覆盖的树作为对照。测定了光照关系(光合光子通量密度,PPFD;红/远红光比率,R/FR和蓝/红光比率,B/R)、叶片形态解剖特征(栅栏组织/海绵组织比率,P/S,和气孔密度,SD)以及叶片气体交换(净光合速率,A;气孔导度, ;蒸腾速率, ;和内在水分利用效率,IWUE)。红色和蓝色网使PPFD降低27%,与对照相比,SD降低20%,P/S降低25%,但对A和 没有负面影响。蓝色网使 增加21%,通过增加B/R光比例导致最高的 和最低的IWUE。这些结果表明,在田间条件下,红色和蓝色网可通过阳光管理对苹果叶片气体交换进行差异调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b565/7828011/0cd8b4d99098/plants-10-00127-g001.jpg

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