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过表达 OsGATA12 调控叶绿素含量,延缓植株衰老,提高密植下水稻的产量。

Overexpression of OsGATA12 regulates chlorophyll content, delays plant senescence and improves rice yield under high density planting.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road E., Guelph, ON, N1G 2W1, Canada.

出版信息

Plant Mol Biol. 2017 May;94(1-2):215-227. doi: 10.1007/s11103-017-0604-x. Epub 2017 Mar 24.

Abstract

Agronomic traits controlling the formation, architecture and physiology of source and sink organs are main determinants of rice productivity. Semi-dwarf rice varieties with low tiller formation but high seed production per panicle and dark green and thick leaves with prolonged source activity are among the desirable traits to further increase the yield potential of rice. Here, we report the functional characterization of a zinc finger transcription factor, OsGATA12, whose overexpression causes increased leaf greenness, reduction of leaf and tiller number, and affects yield parameters. Reduced tillering allowed testing the transgenic plants under high density which resulted in significantly increased yield per area and higher harvest index compared to wild-type. We show that delayed senescence of transgenic plants and the corresponding longer stay-green phenotype is mainly due to increased chlorophyll and chloroplast number. Further, our work postulates that the increased greenness observed in the transgenic plants is due to more chlorophyll synthesis but most significantly to decreased chlorophyll degradation, which is supported by the reduced expression of genes involved in the chlorophyll degradation pathway. In particular we show evidence for the down-regulation of the STAY GREEN RICE gene and in vivo repression of its promoter by OsGATA12, which suggests a transcriptional repression function for a GATA transcription factor for prolonging the onset of senescence in cereals.

摘要

农艺性状控制源库器官的形成、结构和生理特性,是水稻产量的主要决定因素。具有分蘖形成少、每穗种子产量高、叶片深绿且厚实、源活性延长等特性的半矮秆水稻品种是进一步提高水稻产量潜力的理想特性之一。在这里,我们报告了一个锌指转录因子 OsGATA12 的功能特征,其过表达导致叶片绿色加深、叶片和分蘖数减少,并影响产量参数。分蘖减少使转基因植物在高密度下进行了测试,与野生型相比,转基因植物的单位面积产量显著增加,收获指数更高。我们表明,转基因植物衰老延迟和相应的更长的持绿表型主要是由于叶绿素和叶绿体数量的增加。此外,我们的工作假设,在转基因植物中观察到的绿色加深是由于更多的叶绿素合成,但最重要的是由于叶绿素降解减少,这得到了参与叶绿素降解途径的基因表达减少的支持。特别是,我们证明了 STAY GREEN RICE 基因的下调和 OsGATA12 对其启动子的体内抑制,这表明 GATA 转录因子在延缓禾本科植物衰老方面具有转录抑制功能。

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