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Titlebook: Rice Genomics, Genetics and Breeding; Takuji Sasaki,Motoyuki Ashikari Book 2018 Springer Nature Singapore Pte Ltd. 2018 GWAS.Rice genome e

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书目名称Rice Genomics, Genetics and Breeding
编辑Takuji Sasaki,Motoyuki Ashikari
视频video
概述Addresses a wide range of topics on the latest advances in rice science for geneticists, biologists and breeders.Each chapter provides a comprehensive review and discussion by distinguished rice scien
图书封面Titlebook: Rice Genomics, Genetics and Breeding;  Takuji Sasaki,Motoyuki Ashikari Book 2018 Springer Nature Singapore Pte Ltd. 2018 GWAS.Rice genome e
描述.This book presents the latest advances in rice genomics, genetics and breeding, with a special focus on their importance for rice biology and how they are breathing new life into traditional genetics. Rice is the main staple food for more than half of the world’s population. Accordingly, sustainable rice production is a crucial issue, particularly in Asia and Africa, where the population continues to grow at an alarming rate. The book’s respective chapters offer new and timely perspectives on the synergistic effects of genomics and genetics in novel rice breeding approaches, which can help address the urgent issue of providing enough food for a global population that is expected to reach 9 billion by 2050..
出版日期Book 2018
关键词GWAS; Rice genome editing; Genome sequence; Small RNA; Organelle genomics; Gene expression; Plant hormone;
版次1
doihttps://doi.org/10.1007/978-981-10-7461-5
isbn_softcover978-981-13-5639-1
isbn_ebook978-981-10-7461-5
copyrightSpringer Nature Singapore Pte Ltd. 2018
The information of publication is updating

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Plant Hormone Cross Talk with a Focus on Strigolactone and Its Chemical Dissection in Rice,on in rice. In this chapter, we focus on summarizing the recent studies on the cross talk of SLs with other plant hormones to give an insight on the complexity of plant hormone signals. We also introduce and propose the combination of chemical regulators with genomics and genetics studies to drive the studies on plant forward.
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Gene Network of Grain Size and Number in Rice,ed rice productivity in the breeding program. These findings have paved new ways for understanding the molecular basis of grain size and number and enable us to develop the desirable crops with high yield by precise design.
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Cold and Water Deficit Regulatory Mechanisms in Rice: Optimizing Stress Tolerance Potential by Pathesented in brief in the third section. And finally, the last section summarizes the large-effect QTL for cold tolerance and yield stability under drought. By integrating these four layers of information, this chapter should inspire a holistic approach for stress tolerance engineering with strategies illuminated by systems-level biology.
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Genetic and Molecular Dissection of Flowering Time Control in Rice,encing of the rice genome has facilitated genome-wide mapping of loci and gene cloning; thus, more progress has been made in elucidating the genetic control pathways of flowering. In this chapter, we provide an overview of the studies investigating rice flowering.
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Book 2018ve chapters offer new and timely perspectives on the synergistic effects of genomics and genetics in novel rice breeding approaches, which can help address the urgent issue of providing enough food for a global population that is expected to reach 9 billion by 2050..
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