期刊文献+

Natural variation in the SVP contributes to the pleiotropic adaption of Arabidopsis thaliana across contrasted habitats 被引量:2

原文传递
导出
摘要 Coordinated plant adaptation involves the interplay of multiple traits driven by habitat-specific selection pressures. Pleiotropic effects, wherein genetic variants of a single gene control multiple traits, can expedite such adaptations. Until present, only a limited number of genes have been reported to exhibit pleiotropy. Here, we create a recombinant inbred line (RIL) population derived from two Arabidopsis thaliana (A. thaliana) ecotypes originating from divergent habitats. Using this RIL population, we identify an allelic variation in a MADS-box transcription factor, SHORT VEGETATIVE PHASE (SVP), which exerts a pleiotropic effect on leaf size and drought-versus-humidity tolerance. Further investigation reveals that a natural null variant of the SVP protein disrupts its normal regulatory interactions with target genes, including GRF3, CYP707A1/3, and AtBG1, leading to increased leaf size, enhanced tolerance to humid conditions, and changes in flowering time of humid conditions in A. thaliana. Remarkably, polymorphic variations in this gene have been traced back to early A. thaliana populations, providing a genetic foundation and plasticity for subsequent colonization of diverse habitats by influencing multiple traits. These findings advance our understanding of how plants rapidly adapt to changing environments by virtue of the pleiotropic effects of individual genes on multiple trait alterations.
出处 《Journal of Genetics and Genomics》 SCIE CSCD 2023年第12期993-1003,共11页 遗传学报(英文版)
基金 This work was supported by the Natural Science Foundation of China(32030006 and 32270302) the Strategic Priority Research Program of the Chinese Academy of Sciences(XDB31000000) the Fundamental Research Funds for the Central Universities(2020SCUNL207 and SCU2022D003)。
  • 相关文献

参考文献4

二级参考文献60

  • 1Lin-Chuan Li,Ding-Ming Kang,Zhang-Liang Chen,Li-Jia Qu.Hormonal Regulation of Leaf Morphogenesis in Arabidopsis[J].Journal of Integrative Plant Biology,2007,49(1):75-80. 被引量:8
  • 2Cardon G,Hohmann S,Klein J,Netteshelm K,Seedler H,Huijser P (1999) Molecular chamctarisation of the Arabidopsis SBP-box genes.Gene 237,91-104.
  • 3Cardon GH,Hohmann S,Nettesheim K,Seedler H,HuijJser P (1997) Functional analysis of the Arabidopsis thaliana SBP-box gene SPL3:a novel gene involved in the floral transition.Plant J.12,367-377.
  • 4Chuck G,Meeley R,Irish E,Sakai H,Hake S (2007) The maize tasselseed4 microRNA controls sex determination and meristem cell fate by targeting Tasselseed6/indeterminata spikelet1.Nat.Genet.39,1517-1521.
  • 5Eriksson M,Moseley JL,Tottey S,Del Cempo JA,Quinn J,Kim Y,Merchant S (2004) Genetic dissection of nutritional copper signaling in chlamydomonas distinguishes regulatory and target genes.Genetics 168,795-807.
  • 6Fomara F,Coupland G (2009) Plant phase transitions make a SPLash.Cell 138,625-627.
  • 7Gandikota M,Birkenbihl R,Hhmann S,Cardon G,Seedler H,Huijser P (2007) The miRNA156/157 recognition element in the 3'UTR of the Arabidopsis SBP box germ SPL3 prevents early flowering by translational inhibition in seedlings.Plant J.49,683-693.
  • 8Guo J,Song J,Wang F,Zhang XS (2008) Genome-wide identification and expression analysis of rice cell cycle genes.Plant Mol.Biol.64,349-360.
  • 9Jiao Y,Wang Y,Xue D,Wang J,Yan M,Liu G,Dong G,Zeng D,Lu Z,Zhu X,Qian Q,Li J (2010) Regulation of OsSPL14 by OsmiR156 defines ideal plant architecture in rice.Nat.Genet.42,541-544.
  • 10Klein J,Saedler H,Huijser P (1996) A new family of DNA binding proteins includes putative transcriptional regulators of the Antirrhinum majus floral meristem identity gene SQUAMOSA.Mol.Gen.Genet.250,7-16.

共引文献102

同被引文献22

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部