College of Life Sciences, Northwest A&F University, Yangling, Shaanxi 712100, People's Republic of China.
BMC Plant Biol. 2010 Dec 28;10:287. doi: 10.1186/1471-2229-10-287.
The Arabidopsis var2 mutant displays a unique green and white/yellow leaf variegation phenotype and lacks VAR2, a chloroplast FtsH metalloprotease. We are characterizing second-site var2 genetic suppressors as means to better understand VAR2 function and to study the regulation of chloroplast biogenesis.
In this report, we show that the suppression of var2 variegation in suppressor line TAG-11 is due to the disruption of the SUPPRESSOR OF VARIEGATION3 (SVR3) gene, encoding a putative TypA-like translation elongation factor. SVR3 is targeted to the chloroplast and svr3 single mutants have uniformly pale green leaves at 22°C. Consistent with this phenotype, most chloroplast proteins and rRNA species in svr3 have close to normal accumulation profiles, with the notable exception of the Photosystem II reaction center D1 protein, which is present at greatly reduced levels. When svr3 is challenged with chilling temperature (8°C), it develops a pronounced chlorosis that is accompanied by abnormal chloroplast rRNA processing and chloroplast protein accumulation. Double mutant analysis indicates a possible synergistic interaction between svr3 and svr7, which is defective in a chloroplast pentatricopeptide repeat (PPR) protein.
Our findings, on one hand, reinforce the strong genetic link between VAR2 and chloroplast translation, and on the other hand, point to a critical role of SVR3, and possibly some aspects of chloroplast translation, in the response of plants to chilling stress.
拟南芥 var2 突变体表现出独特的绿色和白色/黄色叶片斑驳表型,且缺失 VAR2,一种叶绿体 FtsH 金属蛋白酶。我们正在对第二个位点 var2 遗传抑制子进行特征描述,以便更好地理解 VAR2 的功能,并研究叶绿体生物发生的调控。
在本报告中,我们表明,抑制子系 TAG-11 中 var2 斑驳的表型是由于 SUPPRESSOR OF VARIEGATION3(SVR3)基因的破坏,该基因编码一个假定的 TypA 样翻译延伸因子。SVR3 靶向叶绿体,svr3 单突变体在 22°C 时具有均匀的浅绿色叶片。与该表型一致,svr3 中的大多数叶绿体蛋白和 rRNA 种类的积累接近正常,只有 Photosystem II 反应中心 D1 蛋白是例外,其存在水平大大降低。当 svr3 受到冷胁迫(8°C)的挑战时,它会出现明显的黄化,同时伴随着异常的叶绿体 rRNA 加工和叶绿体蛋白积累。双突变体分析表明,svr3 和 svr7 之间可能存在协同相互作用,svr7 是一种叶绿体五肽重复(PPR)蛋白缺陷。
我们的发现一方面加强了 VAR2 和叶绿体翻译之间的强烈遗传联系,另一方面表明 SVR3 以及可能的某些叶绿体翻译方面在植物对冷胁迫的反应中起着关键作用。