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水稻(Oryza sativa L.)中三十烷醇调控基因的分离与鉴定:三十烷醇作为植物生长刺激剂的可能作用

Isolation and characterization of triacontanol-regulated genes in rice (Oryza sativa L.): possible role of triacontanol as a plant growth stimulator.

作者信息

Chen Xinping, Yuan Hongyu, Chen Rongzhi, Zhu Lili, Du Bo, Weng Qingmei, He Guangcun

机构信息

Key Laboratory of Ministry of Education for Plant Developmental Biology, Wuhan University, Wuhan 430072, PR China.

出版信息

Plant Cell Physiol. 2002 Aug;43(8):869-76. doi: 10.1093/pcp/pcf100.

Abstract

Triacontanol (TRIA) is a saturated long-chain alcohol that is known to have a growth promoting activity when exogenously supplied to a number of plants. In this study, dry weight, protein and chlorophyll contents of rice seedlings were increased by foliar application of TRIA. Leaf net photosynthesis rate (Pn) was increased very quickly and persistently at a given photon flux density (PFD). The TRIA-regulated genes in rice were isolated from cDNA library by differential screening with probes generated from the forward- and reverse-suppression subtractive hybridization (SSH) populations and confirmed by Northern blot. Sequence analysis revealed that most of the up-regulated genes encoded the photosynthetic and photorespiratory proteins. Two down-regulated genes were identified as those encoding an ABA- and stress-related protein and a wounding-related protein. These results suggested that TRIA up-regulated the photosynthesis process and suppressed stresses in rice plants. Time-course profiles of expression of rbcS isogenes suggested the complex mechanisms involved in the regulation of photosynthesis promoted by TRIA.

摘要

三十烷醇(TRIA)是一种饱和长链醇,已知当外源施用于多种植物时具有促进生长的活性。在本研究中,通过叶面喷施TRIA可提高水稻幼苗的干重、蛋白质和叶绿素含量。在给定的光子通量密度(PFD)下,叶片净光合速率(Pn)迅速且持续增加。通过正向和反向抑制消减杂交(SSH)群体产生的探针进行差异筛选,从cDNA文库中分离出水稻中受TRIA调控的基因,并通过Northern印迹法进行确认。序列分析表明,大多数上调基因编码光合和光呼吸蛋白。两个下调基因被鉴定为编码ABA和胁迫相关蛋白以及伤口相关蛋白的基因。这些结果表明,TRIA上调了水稻的光合作用过程并抑制了胁迫。rbcS 同基因表达的时间进程表明,TRIA促进光合作用调控涉及复杂的机制。

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