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YELLOW-GREEN LEAF2 的敲低突变会阻止水稻中叶绿素的生物合成。

A knockdown mutation of YELLOW-GREEN LEAF2 blocks chlorophyll biosynthesis in rice.

机构信息

National Key Laboratory for Crop Genetics and Germplasm Enhancement, Jiangsu Plant Gene Engineering Research Center, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Plant Cell Rep. 2013 Dec;32(12):1855-67. doi: 10.1007/s00299-013-1498-y. Epub 2013 Sep 17.

Abstract

An insert mutation of YELLOW-GREEN LEAF2 , encoding Heme Oxygenase 1 , results in significant reduction of its transcript levels, and therefore impairs chlorophyll biosynthesis in rice. Heme oxygenase (HO) in higher plants catalyzes the degradation of heme to synthesize phytochrome precursor and its roles conferring the photoperiodic control of flowering in rice have been revealed. However, its involvement in regulating rice chlorophyll (Chl) synthesis is not fully explored. In this study, we isolated a rice mutant named yellow-green leaf 2 (ygl2) from a (60)Co-irradiated population. Normal grown ygl2 seedlings showed yellow-green leaves with reduced contents of Chl and tetrapyrrole intermediates whereas an increase of Chl a/b ratio. Ultrastructural analyses demonstrated grana were poorly stacked in ygl2 mutant, resulting in underdevelopment of chloroplasts. The ygl2 locus was mapped to chromosome 6 and isolated via map-based cloning. Sequence analysis indicated that it encodes the rice HO1 and its identity was verified by transgenic complementation test and RNA interference. A 7-Kb insertion was found in the first exon of YGL2/HO1, resulting in significant reduction of YGL2 expressions in the ygl2 mutant. YGL2 was constitutively expressed in a variety of rice tissues with the highest levels in leaves and regulated by temperature. In addition, we found expression levels of some genes associated with Chl biosynthesis and photosynthesis were concurrently altered in ygl2 mutant. These results provide direct evidence that YGL2 has a vital function in rice Chl biosynthesis.

摘要

YELLOW-GREEN LEAF2 基因的插入突变导致其转录本水平显著降低,从而损害了水稻中的叶绿素生物合成。高等植物中的血红素加氧酶(HO)催化血红素的降解以合成光敏色素前体,其在水稻光周期开花控制中的作用已经被揭示。然而,其在调节水稻叶绿素(Chl)合成中的作用尚未完全探索。在这项研究中,我们从(60)Co 辐照群体中分离出一个名为 yellow-green leaf 2(ygl2)的水稻突变体。正常生长的 ygl2 幼苗表现出黄绿叶,叶绿素和四吡咯中间体含量降低,而叶绿素 a/b 比值增加。超微结构分析表明 ygl2 突变体中类囊体垛叠不良,导致叶绿体发育不良。ygl2 基因座定位于第 6 号染色体上,并通过图谱克隆分离。序列分析表明它编码水稻 HO1,其身份通过转基因互补测试和 RNA 干扰得到验证。在 YGL2/HO1 的第一个外显子中发现了一个 7-Kb 的插入,导致 ygl2 突变体中 YGL2 表达的显著降低。YGL2 在各种水稻组织中持续表达,在叶片中表达水平最高,并受温度调节。此外,我们发现 ygl2 突变体中一些与叶绿素生物合成和光合作用相关的基因的表达水平也同时发生了改变。这些结果提供了直接证据表明 YGL2 在水稻叶绿素生物合成中具有重要功能。

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