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It has been argued that some of resources needed for fruit and seed production in terrestrial orchids originate from storage in underground biomass. Resources for female reproductive traits may also originate from current photosynthesis. Orchid mycorrhiza may also influence fruit and seed production. The extent to which current photosynthetic activity and nutrient uptake via mycorrhizal fungi affect fruit and seed production has only rarely been studied experimentally. This paper examines the importance of photosynthesis and mycorrhiza for fruit and seed production, leaf area and plant status in the next season for Dactylorhiza maculata (L.) Soó in two populations. Plants were hand-pollinated in two populations to assure successful fertilization. Photosynthesis in the main leaves and in the green parts of inflorescence was prevented and/or mycorrhizal function inhibited by applying thiabendazole to plants. None of the treatments affected relative capsule production, but all treatments resulted in significant decreases in capsule dry weight and the number of seeds produced. The fact that seed production remained high in spite of the experimental treatments indicates that resources stored in the underground corms were used in fruit development and seed production. Inhibition of photosynthesis decreased leaf area in the year following treatments, while the other treatments had no effect on subsequent growth.  相似文献   
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天山森林生态系统中朽木生地衣植物生态分布的DCA排序   总被引:10,自引:2,他引:8  
应用DCA排序方法对天山森林生态系统中朽木生地衣植物的分布格局与海拔之间的相关性进行了分析.结果表明,不同海拔高度的不同类型的森林生态系统中分布着不同种类的朽木生地衣植物.分布于海拔800 m的主要地衣种类有脱落网衣(Lecidella elabens Fr., Kgl)、柳茶渍[Lecanora saligna (Schrad.) A. Zahlbr]等.分布于海拔900~1 100 m的有 刺小孢衣[Bryoria confusa (Awas.) Bodo & Hawksw]、叉小孢衣[Bryoria furcellata (Fr.) Bodo & Hawksw]等种类.分布于海拔1 300~1 760 m的有 粗皮石蕊[Cladonia scabriuscula (Del.) Leight.]、亚鳞石蕊[Cladonia subsquamosa (Nyl.) Vain]等种类;分布于海拔1 800~2 300 m的有 黑蜈蚣衣[Phaeophyscia nigricans (Flk.) Moberg]、美丽黑蜈蚣衣[Phaeophyscia rubropulchra (Degel.) Essl.]等种类.  相似文献   
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Habitat destruction threatens biodiversity by reducing the amount of available resources and connectivity among geographic areas. For organisms living in fragmented habitats, population persistence may depend on dispersal, which maintains gene flow among fragments and can prevent inbreeding within them. It is centrally important to understand patterns of dispersal for bees living in fragmented areas given the importance of pollination systems and recently documented declines in bee populations. We used population and landscape genetic techniques to characterize patterns of dispersal over a large fragmented area in southern Costa Rica for the orchid bee species Euglossa championi. First, we estimated levels of genetic differentiation among forest fragments as ?PT, an analog to the traditional summary statistic FST, as well as two statistics that may more adequately represent levels of differentiation, GST and Dest. Second, we used a Bayesian approach to determine the number and composition of genetic groups in our sample. Third we investigated how genetic differentiation changes with distance. Fourth, we determined the extent to which deforested areas restrict dispersal. Finally, we estimated the extent to which there were temporal differences in allele frequencies within the same forest fragments. Within years we found low levels of differentiation even over 80 km, and no effect of land use type on level of genetic differentiation. However, we found significant genetic differentiation between years. Taken together our results suggest that there are high levels of gene flow over this geographic area, and that individuals show low site fidelity over time.  相似文献   
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魏明  余茂元  柴瑞娟 《西北植物学报》2018,38(12):2276-2283
为了阐明兰科菌根真菌对铁皮石斛光合作用的影响及机制,采用盆栽方式研究了兰科菌根真菌对铁皮石斛幼苗生长的影响,并分析了叶片中叶绿素含量、光合参数、叶绿素荧光参数以及pepc基因表达的变化。结果表明:(1)兰科菌根真菌促进了铁皮石斛幼苗生长,接种兰科菌根真菌的铁皮石斛的株高、根重、茎叶重和总生物量分别是未接种对照组的1.21、1.54、1.71和1.68倍;而且可显著提高叶片中叶绿素含量、叶片净光合速率(Pn)、蒸腾速率(Gs)和气孔导度(Tr)。(2)接种兰科菌根真菌的铁皮石斛叶片潜在光化学效率(Fv/F0)、最大光化学效率(Fv/Fm)、光化学猝灭系数(qP)、非光化学猝灭系数(qN)、实际光化学反应量子效率(Yield)和表观光合电子传递速率(ETR)均高于未接种对照组。(3)菌根真菌能促进pepc基因的表达,增强PEPC活性,提高铁皮石斛叶片的光合碳同化能力。研究表明,菌根的形成可以提高铁皮石斛叶片光合性能和pepc基因的表达水平,促进铁皮石斛幼苗的生长。  相似文献   
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