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首页> 外文期刊>Scientia horticulturae >Growth and photosynthetic characteristics of blueberry (Vaccinium corymbosum cv. Bluecrop) under various shade levels
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Growth and photosynthetic characteristics of blueberry (Vaccinium corymbosum cv. Bluecrop) under various shade levels

机译:不同阴影水平下蓝莓(Vaccinium corymbosum cv。Bluecrop)的生长和光合特性

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Blueberry can readily be shaded as a bush type plant, maybe affecting its growth and photosynthesis. Growth and photosynthetic characteristics of 'Bluecrop' blueberry grown under various shade levels were investigated to understand acclimation under shade conditions and to determine the optimal light conditions for agricultural purpose. Shade decreased the number of shoots per shrub, but increased shoot length. However, shade did not affect the number of leaves on the main axis. With increasing shade level, leaf length, width and area increased, but leaf thickness decreased. However, there was no obvious tendency in leaf length/width ratio with increasing shade level. Shade leaves had less dense stomata than sun leaves, but stoma was bigger in shade leaves than in sun leaves. With increasing shade level, non-photochemical quenching in blueberry leaves increased and the values were higher at low photosynthetic photon flux densities (PPFDs) in shade leaves than in sun leaves, resulting in the decreases in quantum yield, electron transport rate and net CO2 assimilation rate (A(n)). The maximum A(n) at 31, 60, 73 and 83% shade levels was 11.8, 11.0, 8.4 and 7.5 mu mol m(-2) s(-1), respectively. Following the slight decrease up to 100 mu mol m(-2) s(-1) PPFD, stomatal conductance (g(s)) linearly increased up to 600 mu mol m(-2) s(-1) PPFD and became saturated at all shade levels. The leaves of the shrubs grown under the 83% shade level had a significantly lower g(s) as compared to the leaves of the shrubs grown under the 31,60 and 73% shade levels. Transpiration rate (E) linearly increased up to 600 mu mol m(-2) s(-1) PPFD and was saturated at the 73 and 83% shade levels. However, E increased linearly at both 31 and 60% shade levels with increasing PPFD. The reproductive growth characteristics such as number of flowers, fruit set rate per flower bud and fruit yield also significantly decreased with increasing shade level. For agricultural purpose, therefore, shade level above approximately 60% of full sunlight must be avoided for optimal photosynthesis and growth of the 'Bluecrop' blueberry
机译:蓝莓很容易被遮盖成灌木型植物,可能会影响其生长和光合作用。研究了在不同阴影水平下生长的“ Bluecrop”蓝莓的生长和光合特性,以了解在阴影条件下的适应性,并确定用于农业目的的最佳光照条件。阴影减少了每个灌木的芽数,但增加了芽的长度。但是,阴影不会影响主轴上的叶子数量。随着树荫水平的增加,叶片的长度,宽度和面积增加,但叶片的厚度减小。然而,随着阴影水平的增加,叶片的长/宽比没有明显的趋势。遮荫叶片的气孔密度不及太阳叶片,但遮荫叶片的气孔大于太阳叶片。随着阴影水平的增加,蓝莓叶片中的非光化学猝灭增加,并且在低叶片中的光合光子通量密度(PPFD)下的值高于太阳叶片,从而导致量子产率,电子传输速率和净CO 2同化作用的降低。率(A(n))。在31%,60%,73%和83%阴影水平下,最大A(n)分别为11.8、11.0、8.4和7.5μmolmol m(-2)s(-1)。在略微降低至100μmol m(-2)s(-1)PPFD之后,气孔电导(g(s))线性增加至600μmol m(-2)s(-1)PPFD并饱和在所有阴影级别。与在31,60和73%阴影水平下生长的灌木叶片相比,在83%阴影水平下生长的灌木叶片具有显着较低的g。蒸腾速率(E)线性增加至600μmol m(-2)s(-1)PPFD,并且在73%和83%的阴影水平下达到饱和。但是,随着PPFD的增加,E在31%和60%的阴影水平下都线性增加。花朵数量,每花芽的坐果率和果实产量等生殖生长特征也随着树荫水平的提高而显着降低。因此,出于农业目的,必须避免高于全日照约60%的阴影水平,以实现“ Bluecrop”蓝莓的最佳光合作用和生长

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