Climate envelope modelling reveals intraspecific relationships among flowering phenology, niche breadth and potential range size inArabidopsis thaliana

Author:

Banta Joshua A.1,Ehrenreich Ian M.2,Gerard Silvia3,Chou Lucy4,Wilczek Amity5,Schmitt Johanna6,Kover Paula X.7,Purugganan Michael D.8

Affiliation:

1. Department of Biology; University of Texas at Tyler; 3900 University Blvd.; Tyler; TX; 75799; USA

2. Section of Molecular and Computational Biology; University of Southern California; Los Angeles; CA; 90089; USA

3. Department of Systems Biology; Harvard Medical School; Boston; MA; 02115; USA

4. Animal Medical Center; 510 E. 62nd Street; New York; NY; 10065; USA

5. Deep Springs College; Big Pine; CA; 93513; USA

6. Department of Ecology and Evolutionary Biology; Brown University; Providence; RI; 02912; USA

7. Department of Biology and Biochemistry; University of Bath; Bath; BA2 7AY; UK

8. Department of Biology and Center for Genomics and Systems Biology; New York University; New York; NY; 10003; USA

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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