作物学报
作物學報
작물학보
ACTA AGRONOMICA SINICA
2013年
1期
93-100
,共8页
张子山%李耕%高辉远*%刘鹏%杨程%孟祥龙%孟庆伟
張子山%李耕%高輝遠*%劉鵬%楊程%孟祥龍%孟慶偉
장자산%리경%고휘원*%류붕%양정%맹상룡%맹경위
玉米%衰老%光化学活性%820 nm光吸收%叶绿素荧光动力学曲线
玉米%衰老%光化學活性%820 nm光吸收%葉綠素熒光動力學麯線
옥미%쇠로%광화학활성%820 nm광흡수%협록소형광동역학곡선
Maize%Senescence%Photochemistry activity%820 nm transmission%Chlorophyll a fluorescence transient
为了探讨不同衰老型玉米叶片在衰老过程中光化学反应及其对光合能力维持的贡献,本研究使用持绿玉米品种“齐319”和早衰玉米品种“黄早四”,在控制的条件下,用乙烯利诱导离体叶片衰老,通过快速叶绿素荧光诱导动力学曲线(OJIP曲线)和820 nm光吸收等技术,研究了衰老过程中叶片叶绿素含量、光合速率、光系统I (PSI)、光系统II (PSII)以及光合电子传递体活性的变化.结果表明,在衰老过程中,齐319叶片叶绿素含量和光合速率的下降速度明显慢于黄早四,是功能型持绿品种.玉米叶片的衰老伴随着OJIP曲线的J、I、K、L点荧光的增加,以及远红光诱导820 nm光信号落差的下降.与齐319相比,黄早四叶片的OJIP曲线和820 nm光吸收曲线的变化更剧烈.我们认为,在衰老过程中PSI和PSII光化学活性的快速下降和光合电子传递功能的衰退是玉米叶片光合能力迅速下降的重要原因之一.在此基础上,讨论了衰老过程中玉米叶片中与光合作用有关蛋白与光合能力下降的可能关系.
為瞭探討不同衰老型玉米葉片在衰老過程中光化學反應及其對光閤能力維持的貢獻,本研究使用持綠玉米品種“齊319”和早衰玉米品種“黃早四”,在控製的條件下,用乙烯利誘導離體葉片衰老,通過快速葉綠素熒光誘導動力學麯線(OJIP麯線)和820 nm光吸收等技術,研究瞭衰老過程中葉片葉綠素含量、光閤速率、光繫統I (PSI)、光繫統II (PSII)以及光閤電子傳遞體活性的變化.結果錶明,在衰老過程中,齊319葉片葉綠素含量和光閤速率的下降速度明顯慢于黃早四,是功能型持綠品種.玉米葉片的衰老伴隨著OJIP麯線的J、I、K、L點熒光的增加,以及遠紅光誘導820 nm光信號落差的下降.與齊319相比,黃早四葉片的OJIP麯線和820 nm光吸收麯線的變化更劇烈.我們認為,在衰老過程中PSI和PSII光化學活性的快速下降和光閤電子傳遞功能的衰退是玉米葉片光閤能力迅速下降的重要原因之一.在此基礎上,討論瞭衰老過程中玉米葉片中與光閤作用有關蛋白與光閤能力下降的可能關繫.
위료탐토불동쇠로형옥미협편재쇠로과정중광화학반응급기대광합능력유지적공헌,본연구사용지록옥미품충“제319”화조쇠옥미품충“황조사”,재공제적조건하,용을희리유도리체협편쇠로,통과쾌속협록소형광유도동역학곡선(OJIP곡선)화820 nm광흡수등기술,연구료쇠로과정중협편협록소함량、광합속솔、광계통I (PSI)、광계통II (PSII)이급광합전자전체체활성적변화.결과표명,재쇠로과정중,제319협편협록소함량화광합속솔적하강속도명현만우황조사,시공능형지록품충.옥미협편적쇠로반수착OJIP곡선적J、I、K、L점형광적증가,이급원홍광유도820 nm광신호락차적하강.여제319상비,황조사협편적OJIP곡선화820 nm광흡수곡선적변화경극렬.아문인위,재쇠로과정중PSI화PSII광화학활성적쾌속하강화광합전자전체공능적쇠퇴시옥미협편광합능력신속하강적중요원인지일.재차기출상,토론료쇠로과정중옥미협편중여광합작용유관단백여광합능력하강적가능관계.
In order to explore the changes of photochemistry activity and the contribution of photochemistry activity to the main-tenance of photosynthetic capacity in maize leaves during senescence, the chlorophyll content, photosynthetic rate, PSI and PSII activities during senescence of leaves in the stay green maize (Zea mays L.) inbred line Qi 319 and the quick-leaf-senescence maize inbred line Huangzaosi were investigated by analyzing chlorophyll a fluorescence transient and 820 nm transmission. This study showed that both the chlorophyll content and the photosynthetic capacity in leaves decreased later and slower in Qi 319 than in Huangzaosi, indicating that Qi 319 is a functional stay-green inbred line. The L, K, J, and I steps of chlorophyll a fluorescence transient (OJIP transient) increased during senescence, which accompanied by a decrease in the amplitude of 820 nm transmission. Compared with Qi 319, the changes of OJIP transient and 820 nm transmission were more prominent in Huangzaosi. The results indicated that the quicker decrease in PSI and PSII photochemistry activities and severer deterioration of electron transfer activity are two of the most important reasons to cause earlier senescence in quick-leaf-senescence maize inbred line Huangzaosi;and the synthetic capacity of photosynthesis related protein, especially the fast turn-over protein in leaves may be one of the factors in maintenance of the photosynthetic capacity.