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Items: 14

1.

Response to Comment on "Plant diversity increases with the strength of negative density dependence at the global scale".

LaManna JA, Mangan SA, Alonso A, Bourg NA, Brockelman WY, Bunyavejchewin S, Chang LW, Chiang JM, Chuyong GB, Clay K, Cordell S, Davies SJ, Furniss TJ, Giardina CP, Gunatilleke IAUN, Gunatilleke CVS, He F, Howe RW, Hubbell SP, Hsieh CF, Inman-Narahari FM, Janík D, Johnson DJ, Kenfack D, Korte L, Král K, Larson AJ, Lutz JA, McMahon SM, McShea WJ, Memiaghe HR, Nathalang A, Novotny V, Ong PS, Orwig DA, Ostertag R, Parker GG, Phillips RP, Sack L, Sun IF, Tello JS, Thomas DW, Turner BL, Vela Díaz DM, Vrška T, Weiblen GD, Wolf A, Yap S, Myers JA.

Science. 2018 May 25;360(6391). pii: eaar5245. doi: 10.1126/science.aar5245.

PMID:
29798855
2.

Response to Comment on "Plant diversity increases with the strength of negative density dependence at the global scale".

LaManna JA, Mangan SA, Alonso A, Bourg NA, Brockelman WY, Bunyavejchewin S, Chang LW, Chiang JM, Chuyong GB, Clay K, Cordell S, Davies SJ, Furniss TJ, Giardina CP, Gunatilleke IAUN, Gunatilleke CVS, He F, Howe RW, Hubbell SP, Hsieh CF, Inman-Narahari FM, Janík D, Johnson DJ, Kenfack D, Korte L, Král K, Larson AJ, Lutz JA, McMahon SM, McShea WJ, Memiaghe HR, Nathalang A, Novotny V, Ong PS, Orwig DA, Ostertag R, Parker GG, Phillips RP, Sack L, Sun IF, Tello JS, Thomas DW, Turner BL, Vela Díaz DM, Vrška T, Weiblen GD, Wolf A, Yap S, Myers JA.

Science. 2018 May 25;360(6391). pii: eaar3824. doi: 10.1126/science.aar3824.

PMID:
29798853
3.

Plant diversity increases with the strength of negative density dependence at the global scale.

LaManna JA, Mangan SA, Alonso A, Bourg NA, Brockelman WY, Bunyavejchewin S, Chang LW, Chiang JM, Chuyong GB, Clay K, Condit R, Cordell S, Davies SJ, Furniss TJ, Giardina CP, Gunatilleke IAUN, Gunatilleke CVS, He F, Howe RW, Hubbell SP, Hsieh CF, Inman-Narahari FM, Janík D, Johnson DJ, Kenfack D, Korte L, Král K, Larson AJ, Lutz JA, McMahon SM, McShea WJ, Memiaghe HR, Nathalang A, Novotny V, Ong PS, Orwig DA, Ostertag R, Parker GG, Phillips RP, Sack L, Sun IF, Tello JS, Thomas DW, Turner BL, Vela Díaz DM, Vrška T, Weiblen GD, Wolf A, Yap S, Myers JA.

Science. 2017 Jun 30;356(6345):1389-1392. doi: 10.1126/science.aam5678.

PMID:
28663501
4.

Correction: Persistence of Neighborhood Demographic Influences over Long Phylogenetic Distances May Help Drive Post-Speciation Adaptation in Tropical Forests.

Wills C, Harms KE, Wiegand T, Punchi-Manage R, Gilbert GS, Erickson D, Kress WJ, Hubbell SP, Gunatilleke CV, Gunatilleke IA.

PLoS One. 2016 Dec 20;11(12):e0168976. doi: 10.1371/journal.pone.0168976. eCollection 2016.

5.

Persistence of Neighborhood Demographic Influences over Long Phylogenetic Distances May Help Drive Post-Speciation Adaptation in Tropical Forests.

Wills C, Harms KE, Wiegand T, Punchi-Manage R, Gilbert GS, Erickson D, Kress WJ, Hubbell SP, Gunatilleke CV, Gunatilleke IA.

PLoS One. 2016 Jun 15;11(6):e0156913. doi: 10.1371/journal.pone.0156913. eCollection 2016. Erratum in: PLoS One. 2016 Dec 20;11(12 ):e0168976.

6.

Neighborhood diversity of large trees shows independent species patterns in a mixed dipterocarp forest in Sri Lanka.

Punchi-Manage R, Wiegand T, Wiegand K, Getzin S, Huth A, Gunatilleke CV, Gunatilleke IA.

Ecology. 2015 Jul;96(7):1823-34.

PMID:
26378305
7.

Effect of spatial processes and topography on structuring species assemblages in a Sri Lankan dipterocarp forest.

Punchi-Manage R, Wiegand T, Wiegand K, Getzin S, Gunatilleke CV, Gunatilleke IA.

Ecology. 2014 Feb;95(2):376-86.

PMID:
24669731
8.

Multispecies coexistence of trees in tropical forests: spatial signals of topographic niche differentiation increase with environmental heterogeneity.

Brown C, Burslem DF, Illian JB, Bao L, Brockelman W, Cao M, Chang LW, Dattaraja HS, Davies S, Gunatilleke CV, Gunatilleke IA, Huang J, Kassim AR, Lafrankie JV, Lian J, Lin L, Ma K, Mi X, Nathalang A, Noor S, Ong P, Sukumar R, Su SH, Sun IF, Suresh HS, Tan S, Thompson J, Uriarte M, Valencia R, Yap SL, Ye W, Law R.

Proc Biol Sci. 2013 Jun 19;280(1764):20130502. doi: 10.1098/rspb.2013.0502. Print 2013 Aug 7.

9.

Testing the independent species' arrangement assertion made by theories of stochastic geometry of biodiversity.

Wiegand T, Huth A, Getzin S, Wang X, Hao Z, Gunatilleke CV, Gunatilleke IA.

Proc Biol Sci. 2012 Aug 22;279(1741):3312-20. doi: 10.1098/rspb.2012.0376. Epub 2012 May 16.

10.

Spatial patterns reveal negative density dependence and habitat associations in tropical trees.

Bagchi R, Henrys PA, Brown PE, Burslem DF, Diggle PJ, Gunatilleke CV, Gunatilleke IA, Kassim AR, Law R, Noor S, Valencia RL.

Ecology. 2011 Sep;92(9):1723-9.

PMID:
21939068
11.

How individual species structure diversity in tropical forests.

Wiegand T, Gunatilleke CV, Gunatilleke IA, Huth A.

Proc Natl Acad Sci U S A. 2007 Nov 27;104(48):19029-33. Epub 2007 Nov 16.

12.

The importance of demographic niches to tree diversity.

Condit R, Ashton P, Bunyavejchewin S, Dattaraja HS, Davies S, Esufali S, Ewango C, Foster R, Gunatilleke IA, Gunatilleke CV, Hall P, Harms KE, Hart T, Hernandez C, Hubbell S, Itoh A, Kiratiprayoon S, Lafrankie J, de Lao SL, Makana JR, Noor MN, Kassim AR, Russo S, Sukumar R, Samper C, Suresh HS, Tan S, Thomas S, Valencia R, Vallejo M, Villa G, Zillio T.

Science. 2006 Jul 7;313(5783):98-101. Epub 2006 Jun 8.

13.

Three genes determine the carboxin sensitivity of mitochondrial succinate oxidation in aspergillus nidulans.

Gunatilleke IA, Arst HN Jr, Scazzocchio C.

Genet Res. 1975 Dec;26(3):297-305. No abstract available.

PMID:
178574
14.

Cytoplasmic and nuclear mutations to chloramphenicol resistance in Aspergillus nidulans.

Gunatilleke IA, Scazzocchio C, Arst HN Jr.

Mol Gen Genet. 1975;137(3):269-76.

PMID:
1102919

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