Developmental Pathways in Plants: Lessons from Arabidopsis for Crop Innovation

Malcolm Bennett, Rahul Bhosale, Scott A Boden, Shu-Yan Chen, Tino Colombi, Toshiro Ito, Hongju Li, Poonam Mehra, Lars Østergaard, Meng Li, Liu Liu, Nana Otsuka, Bipin Pandey, Scott Poethig, Kalika Prasad, Yue Qu, Makoto Shirakawa, Yinghua Su, Cao Xu, Weicai Yang, Wenjie Zhang, Xiaolan Zhang, Xiansheng Zhang, Zhaoyang Zhou, Shuang Wu
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Abstract

The emergence of molecular biology, along with the use of Arabidopsis thaliana as a model organism, has significantly enhanced our understanding of plant development. Research on Arabidopsis has led to the identification of key regulatory genes involved in various developmental processes. In the past decade, advances in genome sequencing and the decoding of numerous plant genomes have enabled the application of these findings from Arabidopsis to crop species. In this review, leading plant scientists summarize historical insights gained from arabidopsis studies and highlight their implications for crop development, with the aim of inspiring further research in these promising new areas.
植物发育途径:拟南芥对作物创新的启示
分子生物学的出现,以及拟南芥作为模式生物的使用,极大地增强了我们对植物发育的理解。对拟南芥的研究已经确定了参与各种发育过程的关键调控基因。在过去的十年中,基因组测序的进步和许多植物基因组的解码使得这些发现能够从拟南芥应用到作物物种。在这篇综述中,主要的植物科学家总结了从拟南芥研究中获得的历史见解,并强调了它们对作物发展的意义,旨在启发这些有前途的新领域的进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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