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Developmental genetics of corolla tube formation: role of the tasiRNA-ARF pathway

biorxiv. 2018; 
Baoqing Ding,  Rui Xia,  Qiaoshan Lin,  Vandana Gurung,  Janelle M. Sagawa,  Lauren E. Stanley,  Matthew Strobel,  Pamela K. Diggle,  Blake C. Meyers,  Yao-Wu Yuan
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Gene Synthesis To generate the 35S:mMlARF3/4 constructs, CDS of sRNA insensitive forms of MlARF3 (mARF3) and MlARF4 (mARF4) that carries synonymous substitutions in the two tasiRNA recognition sites were synthesized by All rights reserved. No reuse allowed without permission. bioRxiv preprint doi: https://doi.org/10.1101/253112. The copyright holder for this preprint (which was not peer-reviewed) is the author/funder. 18 GenScript (NJ, USA) and then cloned into the pEarleyGate 100 destination vector as described for the 35S:MlAGO7 and 35S:MlSGS3 constructs. Get A Quote

摘要

More than 80,000 angiosperm species produce flowers with petals fused into a corolla tube. As an important element of the tremendous diversity of flower morphology, the corolla tube plays a critical role in many specialized interactions between plants and animal pollinators (e.g., beeflies, hawkmoths, hummingbirds, nectar bats), which in turn drives rapid plant speciation. Despite its clear significance in plant reproduction and evolution, the corolla tube remains one of the least understood plant structures from a developmental genetics perspective. Through mutant analyses and transgenic experiments, here we show that the tasiRNA-ARF pathway is required for corolla tube formation in the monkeyflower species M... More

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