Li Tingchun, Yang Huaying, Lu Yan, Dong Qing, Liu Guihu, Chen Feng, Zhou Yingbing
Tobacco Research Institute, Anhui Academy of Agricultural Sciences, Hefei, China.
Department of Plant Sciences, University of Tennessee, Knoxville, TN, USA.
PeerJ. 2021 Feb 16;9:e10567. doi: 10.7717/peerj.10567. eCollection 2021.
Chlorophylls, green pigments in chloroplasts, are essential for photosynthesis. Reduction in chlorophyll content may result in retarded growth, dwarfism, and sterility. In this study, a yellow-green leaf mutant of maize, indicative of abnormity in chlorophyll content, was identified. The physiological parameters of this mutant were measured. Next, global gene expression of this mutant was determined using transcriptome analysis and compared to that of wild-type maize plants. The yellow-green leaf mutant of maize was found to contain lower contents of chlorophyll , chlorophyll and carotenoid compounds. It contained fewer active PSII centers and displayed lower values of original chlorophyll fluorescence parameters than the wild-type plants. The real-time fluorescence yield, the electron transport rate, and the net photosynthetic rate of the mutant plants showed reduction as well. In contrast, the maximum photochemical quantum yield of PSII of the mutant plants was similar to that of the wild-type plants. Comparative transcriptome analysis of the mutant plants and wild-type plants led to the identification of differentially expressed 1,122 genes, of which 536 genes were up-regulated and 586 genes down-regulated in the mutant. Five genes in the chlorophyll metabolism pathway, nine genes in the tricarboxylic acid cycle and seven genes related to the conversion of sucrose to starch displayed down-regulated expression. In contrast, genes encoding a photosystem II reaction center PsbP family protein and the PGR5-like protein 1A (PGRL1A) exhibited increased transcript abundance.
叶绿素是叶绿体中的绿色色素,对光合作用至关重要。叶绿素含量降低可能导致生长迟缓、植株矮小和不育。在本研究中,鉴定出一个玉米黄绿叶片突变体,这表明其叶绿素含量异常。测定了该突变体的生理参数。接下来,利用转录组分析确定了该突变体的全基因组表达,并与野生型玉米植株进行了比较。发现玉米黄绿叶片突变体的叶绿素、叶绿素和类胡萝卜素化合物含量较低。其活性PSII中心较少,原始叶绿素荧光参数值低于野生型植株。突变体植株的实时荧光产量、电子传递速率和净光合速率也有所降低。相比之下,突变体植株PSII的最大光化学量子产量与野生型植株相似。对突变体植株和野生型植株进行比较转录组分析,鉴定出1122个差异表达基因,其中536个基因在突变体中上调,586个基因下调。叶绿素代谢途径中的5个基因、三羧酸循环中的9个基因以及与蔗糖转化为淀粉相关的7个基因表达下调。相比之下,编码光系统II反应中心PsbP家族蛋白和类PGR5蛋白1A(PGRL1A)的基因转录丰度增加。