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Plant Genetic and Mutation Studies

TopicLeading institutions, researchers & key papers

This cluster of papers focuses on mutation breeding techniques such as TILLING and induced mutations to improve crops through functional genomics, genetic variation, and the use of ionizing radiation. The research explores methods for identifying point mutations, genome-wide sequencing, and the application of reverse genetics for plant improvement.

41
Works

How has Plant Genetic and Mutation Studies's publication output changed over time?

ScholarIQpublication output · 1973–2020

Output grew0% over the shown period — from 1 works in 1973 to 1 in 2020.

1
1
1
1
1
1
1
1
19731975197919902007201020142020

What are the most-cited papers on Plant Genetic and Mutation Studies?

ScholarIQmost cited works
New developments in fiber hemp (Cannabis sativa L.) breeding
Elma M. J. Salentijn, Qingying Zhang, Stefano Amaducci, Ming Yang, Luisa M. Trindade
S178362034. 2014369 CitationsOPEN ACCESS
Arabidopsis rd29A::DREB1A enhances freezing tolerance in transgenic potato
Babak Behnam, Akira Kikuchi, Fevziye Celebi-Toprak, Mie Kasuga, Kazuko Yamaguchi‐Shinozaki, Kazuo Watanabe
S196783408. 2007109 Citations
A mini review of MAR-binding proteins
Tianyun Wang, Han Zhong-min, Yurong Chai, Junhe Zhang
S197962172. 201048 CitationsOPEN ACCESS
Evidence for an Adaptive Response to Radiation Damage in Plant Cells Conditioned with X-rays or Incorporated Tritium
F. Cortés, Inmaculada Domı́nguez, Santiago Mateos, J. Piñero, J.C. Mateos
S44383424. 199041 Citations

Where is Plant Genetic and Mutation Studies research published, and who funds it?

ScholarIQvenues & funding sources

TOP JOURNALS

S178362034369
S196783408109
S6593237877
S19796217248
S4438342441

TOP FUNDERS

National Science Foundation
NIH
Wellcome Trust
European Research Council
Funder breakdown is a member featureSign up free to unlock

How much of the research on Plant Genetic and Mutation Studies is open access?

ScholarIQopen access share
38%OPEN ACCESS
Gold
0%
Green
13%
Hybrid
0%
Bronze
25%
Closed
63%

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Reduced naphthylphthalamic acid binding in the tir3 mutant of Arabidopsis is associated with a reduction in polar auxin transport and diverse morphological defects.
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