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光周期对光敏核不育水稻光敏色素A含量及其mRNA丰度的影响
引用本文:王伟 洪宇. 光周期对光敏核不育水稻光敏色素A含量及其mRNA丰度的影响[J]. Acta Botanica Sinica, 1997, 39(10): 914-921
作者姓名:王伟 洪宇
作者单位:中国科学院植物研究所,中国科学院植物研究所,中国科学院植物研究所,中国科学院植物研究所,中国科学院植物研究所 北京 100093 厦门大学生物学系,厦门 361005,北京 100093,北京 100093,北京 100093,北京 100093
基金项目:国家“863”计划资助项目
摘    要:光敏核不育水稻(农垦58S)是我国特有的水稻(Oryza sativa L.)种质材料,光敏色素是光周期诱导其育性转变的受体。报道了育性转换敏感期间的光周期处理对农垦58S及对照“农垦58”叶片中光敏色素A(Phy A)含量及其mRNA丰度的影响。在10个光周期处理的最后一个暗期结束前,收获每株水稻的上部两片叶,用酶联免疫吸附测定法测定Phy A。和长日照(LD)相比,短日照(SD)处理导致农垦58SPhy A相对含量增加38.5%;而“农垦58”只增加18.5%。显然,在较长的暗期中,农垦58S中Phy A的积累比对照快。在水稻幼苗中也得出相似的结果。以光敏色素A基因(phy A)的特异性片段RPA3作探针,用RNA斑点杂交的方法对叶片中Phy A mRNA丰度进行分析的结果表明,光周期处理5d和10d时,两品种水稻的Phy A mRNA丰度都是SD处理的比LD的高,而且SD下农垦58S Phy A mRNA的丰度均比“农垦58”的高。这些结果表明,甲基化水平较低的农垦58S phy A可能比“农垦58”的phy A更活跃地表达。另外,在育性转换敏感期每日主光期结束时(EOD)进行10次短暂的远红光(FR)照射。结果表明,农垦58S植株抽穗和开花期比SD处理推迟2d,而花粉败育率、种子结实率却无变化。暗示农垦58S开花和育性转变过程的光周期反应可能不同。

关 键 词:光敏色素  mRNA丰度  RNA点杂交  雄性不育  光周期  酶联免疫吸附测定法  水稻

EFFECT OF PHOTOPERIOD TREATMENTS ON PHYTO-CHROME A LEVELS AND ITS mRNA ABUNDANCE IN PHOTOPERIOD-SENSITIVE GENIC MALE-STERILE RICE MUTANT AND THE WILD TYPE
Wang Wei,Hong Yu,Tong Zhe,Kuang Ting-yun Tang Pei-song. EFFECT OF PHOTOPERIOD TREATMENTS ON PHYTO-CHROME A LEVELS AND ITS mRNA ABUNDANCE IN PHOTOPERIOD-SENSITIVE GENIC MALE-STERILE RICE MUTANT AND THE WILD TYPE[J]. , 1997, 39(10): 914-921
Authors:Wang Wei  Hong Yu  Tong Zhe  Kuang Ting-yun Tang Pei-song
Abstract:The effect of photoperiod treatments on phytochrome A (Phy A) level and its mRNA abundance in the leaves of a photoperiod-sensitive genie male-sterile mutant (Nongken 58S) and its wild type ("Nongken 58") of Oryza sativa L. was investigated. The top two leaves of each rice shoot were harvested at the end of the last dark phase of 10 cycles during photoperiod-sensitive stage for fertility alteration of the mutant. Phy A was measured by a sandwich enzyme-linked immunosor-bent assay (ELISA) using rabbit polyclonal and mouse monoclonal antibodies. Compared with long- day (T.D) treatment,short day (SD) resulted in 38.5% increase of relative Phy A content in the mutant, only 18.5% increase in the wild type. In an extended darkness (25 h) ,the accumulation of Phy A also appeared to be more rapid in the mutant seedlings than in its wild type. RNA dot blot analyses with RPA3 (a cDNA clone of rice Phy A) as a probe showed: the abundances of Phy A mRNA in top leaves of Nongken 58S and "Nongken 58" were obviously higher in SD than those in LD at the end of dark phase of 5 d and 10 d photoperiod treatments. Moreover, under SD Phy A mRNA contents in Nongken 58S were more than those in "Nongken 58" during the whole photoperi-od-sensitive stage for fertility alteration. In addition, after 10 cycles of end-of-day far-red irradiations (EOD FR), the heading and flowering date of the mutant was delayed for 2 d. However, EOD FR had little or no effect on male fertility of the mutant.
Keywords:Phytochrome   mRNA abundance   RNA dot blot   Male sterility   Photoperiod   Enzyme-linked immunosorbent assay   Oryza sativa
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