Chen Fei, Fasoli Marianna, Tornielli Giovanni Battista, Dal Santo Silvia, Pezzotti Mario, Zhang Liangsheng, Cai Bin, Cheng Zong-Ming
Fruit Crop Systems Biology Laboratory, College of Horticulture, Nanjing Agricultural University, Nanjing, China.
PLoS One. 2013 Dec 6;8(12):e80818. doi: 10.1371/journal.pone.0080818. eCollection 2013.
Calcium-dependent protein kinases (CDPKs) are molecular switches that bind Ca(2+), ATP, and protein substrates, acting as sensor relays and responders that convert Ca(2+) signals, created by developmental processes and environmental stresses, into phosphorylation events. The precise functions of the CDPKs in grapevine (Vitis vinifera) are largely unknown. We therefore investigated the phylogenetic relationships and expression profiles of the 17 CDPK genes identified in the 12x grapevine genome sequence, resolving them into four subfamilies based on phylogenetic tree topology and gene structures. The origins of the CDPKs during grapevine evolution were characterized, involving 13 expansion events. Transcriptomic analysis using 54 tissues and developmental stages revealed three types of CDPK gene expression profiles: constitutive (housekeeping CDPKs), partitioned functions, and prevalent in pollen/stamen. We identified two duplicated CDPK genes that had evolved from housekeeping to pollen-prevalent functions and whose origin correlated with that of seed plants, suggesting neofunctionalization with an important role in pollen development and also potential value in the breeding of seedless varieties. We also found that CDPKs were involved in three abiotic stress signaling pathways and could therefore be used to investigate the crosstalk between stress responses.
钙依赖蛋白激酶(CDPKs)是结合Ca(2+)、ATP和蛋白质底物的分子开关,作为传感器中继器和响应器,将由发育过程和环境胁迫产生的Ca(2+)信号转化为磷酸化事件。CDPKs在葡萄(Vitis vinifera)中的精确功能在很大程度上尚不清楚。因此,我们研究了在12倍体葡萄基因组序列中鉴定出的17个CDPK基因的系统发育关系和表达谱,根据系统发育树拓扑结构和基因结构将它们分为四个亚家族。对葡萄进化过程中CDPKs的起源进行了表征,涉及13次扩张事件。使用54种组织和发育阶段进行的转录组分析揭示了三种类型的CDPK基因表达谱:组成型(管家CDPKs)、功能分区型和在花粉/雄蕊中普遍存在型。我们鉴定出两个重复的CDPK基因,它们已从管家功能进化为花粉普遍存在的功能,其起源与种子植物的起源相关,表明新功能化在花粉发育中具有重要作用,并且在无核品种育种中也具有潜在价值。我们还发现CDPKs参与了三条非生物胁迫信号通路,因此可用于研究胁迫反应之间的相互作用。