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首页> 外文期刊>Physiologia plantarum >Association between photosynthesis and contrasting features of minor veins in leaves of summer annuals loading phloem via symplastic versus apoplastic routes
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Association between photosynthesis and contrasting features of minor veins in leaves of summer annuals loading phloem via symplastic versus apoplastic routes

机译:通过共生和质生途径负载韧皮部的一年生植物叶片光合与次要静脉的对比特征之间的联系

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Foliar vascular anatomy and photosynthesis were evaluated for a number of summer annual species that either load sugars into the phloem via a symplastic route (Cucumis sativus L. cv. Straight Eight; Cucurbita pepo L. cv. Italian Zucchini Romanesco; Citrullus lanatus L. cv. Faerie Hybrid; Cucurbita pepo L. cv. Autumn Gold) or an apoplastic route (Nicotiana tabacum L.; Solanum lycopersicum L. cv. Brandywine; Gossypium hirsutum L.; Helianthus annuus L. cv. Soraya), as well as winter annual apoplastic loaders (Spinacia oleracea L. cv. Giant Nobel; Arabidopsis thaliana (L.) Heynhold Col-0, Swedish and Italian ecotypes). For all summer annuals, minor vein cross-sectional xylem area and tracheid number as well as the ratio of phloem loading cells to phloem sieve elements, each when normalized for foliar vein density (VD), was correlated with photosynthesis. These links presumably reflect (1) the xylem's role in providing water to meet foliar transpirational demand supporting photosynthesis and (2) the importance of the driving force of phloem loading as well as the cross-sectional area for phloem sap flux to match foliar photosynthate production. While photosynthesis correlated with the product of VD and cross-sectional phloem cell area among symplastic loaders, photosynthesis correlated with the product of VD and phloem cell number per vein among summer annual apoplastic loaders. Phloem cell size has thus apparently been a target of selection among symplastic loaders (where loading depends on enzyme concentration within loading cells) versus phloem cell number among apoplastic loaders (where loading depends on membrane transporter numbers)
机译:对许多夏季一年生物种的叶片血管解剖结构和光合作用进行了评估,这些物种通过共生途径将糖加载到韧皮部中(Cucumis sativus L. cv。Straight August; Cucurbita pepo L. cv。Italian Zucchini Romanesco; Citrullus lanatus L. cv仙境杂种;南瓜金秋时节金)或质外生殖途径(烟草,烟草,白兰地,陆地棉,向日葵和索拉亚),以及冬季每年质外性装载剂(Spinacia oleracea L. cv。Giant Nobel;拟南芥Heynhold Col-0,瑞典和意大利生态型)。在所有夏季年中,将小叶静脉的木质部面积和气管数量以及韧皮部负载细胞与韧皮部筛子元素的比率(均按叶静脉密度(VD)标准化)与光合作用相关。这些联系大概反映了(1)木质部在提供水以满足叶面蒸腾需求以支持光合作用方面的作用,以及(2)韧皮部负载驱动力的重要性以及韧皮部汁液通量的横截面积以匹配叶片光合产物的生产。虽然光合作用与增生性装载者之间的VD乘积和韧皮部横断面细胞面积的乘积相关,但光合作用与夏季一年生的非典型增生性装载者中每个静脉的VD和韧皮部细胞数乘积有关。因此,韧皮部细胞大小显然已成为共生加载物(其中加载取决于加载细胞内酶浓度)与非质生加载物中韧皮部细胞数量(其中加载取决于膜转运蛋白数量)之间选择的目标。

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