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Photosynthetic and antioxidative strategies of flag leaf maturation and its impact to grain yield of two field-grown wheat varieties

机译:标志叶成熟的光合和抗氧化策略及其对两种田间种类品种的粮食产量的影响

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摘要

Photosynthesis is the most important source of dry matter production directly influencing grain filling in wheat. Croatian winter wheat varieties, 'Vulkan' and 'Golubica' have similar genetic yield potential but in previous years 'Golubica' failed to achieve it. In order to find reasons of that, we evaluated photosynthetic (JIP test) and oxidative pathways (antioxidative enzymes and non-enzymatic components) in flag leaves of both wheat varieties from flowering till late milk development stage. The maximum quantum yield of PSII (TR0/ABS) and performance index on absorption basis (PIABS) during experimental period indicated functional photosynthetic process, but according to other JIP test parameters down-regulation of PSII occurred in flag leaves of both varieties. In leaves of variety 'Golubica', significant inactivation of active reaction centers altogether with enlargement of carotenoids content imply on induction of photoinhibition. Also, at oxidative metabolism level, increase of catalase activity, hydrogen peroxide and malondialdehyde content in flag leaves of variety 'Golubica' imply on structural and functional changes and oxidative stress state in cell. Changes of photosynthetic and oxidative metabolism level in flag leaves of variety 'Golubica' imply on earlier onset of senescence than in 'Vulkan'. Reduced time of photosynthetic product accumulation and its translocation into grain could be the reasons for 'Golubica' immanent underproduction.
机译:光合作用是干物质生产最重要的来源直接影响小麦籽粒填充物。克罗地亚冬小麦品种,'vulkan'和'golubica'具有类似的遗传产量潜力,但前几年'Golubica'未能实现它。为了找到原因,我们评估了光合(JIP测试)和氧化途径(抗氧化酶和非酶促成分),从开花到后期牛奶发育阶段。实验期间PSII(TR0 / ABS)和性能指数的最大量子产量和性能指数在实验期间的吸收基础(PIABS)表明了功能性光合作用过程,但根据其他JIP测试参数的PSII的下调发生在两个品种的标志叶中。在品种“Golubica”的叶子中,完全促进了类胡萝卜素含量的激活反应中心的显着灭活,这意味着诱导光抑制。此外,在氧化代谢水平下,在各种“戈卢比卡旗叶中的过氧化氢酶活性,过氧化氢和丙二醛含量暗示细胞中结构和功能变化和氧化应激状态。品种“Golubica”标志叶片光合作用和氧化代谢水平的变化暗示早期衰老的衰老。光合产物积累的减少时间及其易位变成谷物可能是'Golubica'Immanent批量的原因。

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