生物
进化生物学
克莱德
基因
计算生物学
进化动力学
山茶
基因复制
人类进化遗传学
适应性进化
遗传学
芯(光纤)
定向进化
系统发育学
亚科
频道(广播)
下调和上调
分子进化
基因表达谱
基因组学
拟南芥
生物进化
生物系统
基因家族
系统发育树
多年生植物
植物进化
作者
Da Li,Yingqi Wang,Yu Huang,Ya Jin,Yu Zhao,Ning Ren,Qin-Hua Lu,Chunlin Li,Xin‐Qiang Zheng,Qingsheng Li
标识
DOI:10.1021/acs.jafc.6c03626
摘要
Cyclic nucleotide-gated channels (CNGCs) are critical Ca 2+ -permeable cation channels that orchestrate plant stress responses, yet their evolutionary dynamics in tea plants ( Camellia sinensis ) remain unknown. Here we dissect the CNGC family using a pan-genome of 28 tea accessions. We identified 867 CNGC genes into 30 orthogroups, revealing a dual evolutionary strategy: an ultraconstrained, two-gene core ( CsCNGC8/17 ) under strong purifying selection ensuring signaling fidelity, and Group IVc─a novel clade (39.4% of the family)─exhibiting lineage-specific motif reconfiguration, dispersed duplications and elevated Ka/Ks ratios. Expression profiling suggested that Group IVc members are broadly upregulated across multiple stresses, whereas core genes display condition-specific responses. This unique architecture─balancing a minimalist, conserved core with a massively expanded, plastic periphery─provides a robust adaptive solution to the lifelong stress exposure characteristic of perennial tea plants. These findings offer critical insights into stress-response evolution and valuable molecular targets for breeding resilient tea cultivars.
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