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Characterization of Photosynthetic Performance during Senescence in Stay-Green and Quick-Leaf-Senescence Zea mays L. Inbred Lines

机译:衰老过程中光合性能表征保绿和快速叶衰老玉米属自交系

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摘要

The net photosynthetic rate, chlorophyll content, chlorophyll fluorescence and 820 nm transmission were investigated to explore the behavior of the photosynthetic apparatus, including light absorption, energy transformation and the photoactivities of photosystem II (PSII) and photosystem I (PSI) during senescence in the stay-green inbred line of maize (Zea mays) Q319 and the quick-leaf-senescence inbred line of maize HZ4. The relationship between the photosynthetic performance and the decrease in chlorophyll content in the two inbred lines was also studied. Both the field and laboratory data indicated that the chlorophyll content, net photosynthetic rate, and the photoactivities of PSII and PSI decreased later and slower in Q319 than in HZ4, indicating that Q319 is a functional stay-green inbred line. In order to avoid the influence of different development stages and environmental factors on senescence, age-matched detached leaf segments from the two inbred lines were treated with ethephon under controlled conditions to induce senescence. The net photosynthetic rate, light absorption, energy transformation, the activities of PSII acceptor side and donor side and the PSI activities decreased much slower in Q319 than in HZ4 during the ethephon-induced senescence. These results suggest that the retention of light absorption, energy transformation and activity of electron transfer contribute to the extended duration of active photosynthesis in Q319. Although the chlorophyll content decreased faster in HZ4, with decrease of chlorophyll content induced by ethephon, photosynthetic performance of Q319 deteriorated much more severely than that of HZ4, indicating that, compared with Q319, HZ4 has an advantage at maintaining higher photosynthetic activity with decrease of chlorophyll although HZ4 is a quick-leaf-senescence inbred line. We conclude that attention should be paid to two favorable characteristics in breeding long duration of active photosynthesis hybrids: 1) maintaining more chlorophyll content during senescence and 2) maintaining higher photosynthetic activity during the loss of chlorophyll.
机译:研究了光合作用的净光合速率,叶绿素含量,叶绿素荧光和820 nm透射率,以探讨其光合作用的行为,包括光吸收,能量转化以及光系统II(PSII)和光系统I(PSI)在衰老过程中的光活性。玉米(Zea mays)Q319的常绿近交系和玉米HZ4的速生叶近交系。还研究了两个自交系的光合性能与叶绿素含量降低之间的关系。田间和实验室数据均表明,Q319的叶绿素含量,净光合速率以及PSII和PSI的光活性比HZ4下降得更晚且更慢,这表明Q319是功能性的常绿自交系。为了避免不同发育阶段和环境因素对衰老的影响,在控制条件下用乙烯利处理了两个自交系的年龄匹配的离体叶片,以诱导衰老。乙烯利诱导衰老期间,Q319的净光合速率,光吸收,能量转化,PSII受体侧和供体侧的活性以及PSI活性的下降比HZ4慢得多。这些结果表明,光吸收的保持,能量转换和电子转移的活性有助于延长Q319的活性光合作用的持续时间。尽管HZ4的叶绿素含量下降较快,但随着乙烯利引起的叶绿素含量的下降,Q319的光合性能比HZ4严重恶化,这表明与Z319相比,HZ4具有保持较高的光合活性的优点,但降低了。叶绿素,尽管HZ4是一种快速衰老的近交系。我们得出结论,应注意长期培育活性光合作用杂种的两个有利特征:1)在衰老过程中保持更多的叶绿素含量,以及2)在叶绿素丧失期间保持较高的光合作用活性。

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