Development Center of Plant Germplasm Resources, College of Life and Environment Sciences, Shanghai Normal University, Shanghai 200234, China.
The Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, 12 South Zhong-Guan Cun Street, Beijing 100081, China.
Plant Sci. 2014 Feb;215-216:172-9. doi: 10.1016/j.plantsci.2013.11.003. Epub 2013 Nov 18.
The chloroplast development governs plant growth and metabolism. This study characterized a novel rice thermo-sensitive chloroplast development 9 (tcd9) mutant, which exhibited the albino phenotype before the 3-leaf stage grown below 24 °C whereas displayed normal green at over 28 °C or even at 20 °C after 5-leaf stage. The obvious decrease in Chl levels, abnormal chloroplasts with few thylakoid lamella and abnormal thylakoids were observed for the albino mutant seedlings at low temperature, but the mutant was apparently normal green at high temperature, suggesting the thermo-sensitivity of albino phenotype. Genetic analysis showed that the albino phenotype was controlled by a single recessive nuclear gene (tcd9). The map-based cloning and molecular complementation tests revealed that the mutation of TCD9 encoding α subunit of Cpn60 protein (Cpn60α), localized in chloroplasts, was responsible for albino phenotype. In addition, TCD9 exhibited the high expression in all tested tissues, especially in young leaves. The transcriptional analysis indicated that all expression levels of the studied genes related to chloroplast development in tcd9 mutant were seriously affected in the albino seedlings at 20 °C, whereas some of them recovered into normal levels in green-seedlings at 32 °C. Our observations suggest that the nuclear-encoded Cpn60α protein TCD9 plays a crucial role in chloroplast development at early leaf stage of rice.
叶绿体发育调控植物的生长和代谢。本研究对一个新的水稻温度敏感型叶绿体发育 9 突变体(tcd9)进行了研究,该突变体在 24°C 以下生长的三叶期前表现出白化表型,而在 28°C 以上甚至在五叶期后 20°C 时表现出正常的绿色。低温下白化突变体幼苗的叶绿素水平明显下降,叶绿体异常,类囊体片层较少,类囊体异常,而高温下突变体明显呈绿色,表明白化表型的热敏性。遗传分析表明,白化表型受单个隐性核基因(tcd9)控制。基于图谱的克隆和分子互补试验表明,TCD9 编码 Cpn60 蛋白(Cpn60α)的α亚基的突变,定位于叶绿体,是白化表型的原因。此外,TCD9 在所有测试的组织中都表现出高表达,尤其是在幼叶中。转录分析表明,在 20°C 下,tcd9 突变体中与叶绿体发育相关的所有研究基因的表达水平在白化幼苗中受到严重影响,而在 32°C 下绿色幼苗中的一些基因恢复到正常水平。我们的观察结果表明,核编码的 Cpn60α 蛋白 TCD9 在水稻早期叶片发育中起着至关重要的作用。