Clint Chapple

Clint Chapple

Purdue University

H-index: 70

North America-United States

About Clint Chapple

Clint Chapple, With an exceptional h-index of 70 and a recent h-index of 47 (since 2020), a distinguished researcher at Purdue University, specializes in the field of secondary metabolism, Arabidopsis, lignin, biofuel.

His recent articles reflect a diverse array of research interests and contributions to the field:

Genome‐wide association identifies a BAHD acyltransferase activity that assembles an ester of glucuronosylglycerol and phenylacetic acid

INAUGURAL ARTICLE by a Recently Elected Academy Member: Pinoresinol rescues developmental phenotypes of Arabidopsis phenylpropanoid mutants overexpressing FERULATE 5-HYDROXYLASE

Pinoresinol rescues developmental phenotypes of Arabidopsis phenylpropanoid mutants overexpressing FERULATE 5-HYDROXYLASE

UGT76F1 glycosylates an isomer of the C7‐necic acid component of pyrrolizidine alkaloids in Arabidopsis thaliana

Transcript and metabolite network perturbations in lignin biosynthetic mutants of Arabidopsis

Disruption of Zea mays isochorismate synthase1 decreases PHENYLALANINE AMMONIA LYASE activity and suppresses hypersensitive response-induced …

H-lignin can be deposited independently of CINNAMYL ALCOHOL DEHYDROGENASE C and D in Arabidopsis

Manipulation of lignin monomer composition combined with the introduction of monolignol conjugate biosynthesis leads to synergistic changes in lignin structure

Clint Chapple Information

University

Position

Distinguished Professor Department of Biochemistry and Center for Plant Biology

Citations(all)

21506

Citations(since 2020)

7439

Cited By

17084

hIndex(all)

70

hIndex(since 2020)

47

i10Index(all)

117

i10Index(since 2020)

94

Email

University Profile Page

Google Scholar

Clint Chapple Skills & Research Interests

secondary metabolism

Arabidopsis

lignin

biofuel

Top articles of Clint Chapple

Genome‐wide association identifies a BAHD acyltransferase activity that assembles an ester of glucuronosylglycerol and phenylacetic acid

The Plant Journal

2024/4/1

INAUGURAL ARTICLE by a Recently Elected Academy Member: Pinoresinol rescues developmental phenotypes of Arabidopsis phenylpropanoid mutants overexpressing FERULATE 5-HYDROXYLASE

Proceedings of the National Academy of Sciences of the United States of America

2023/6/6

Pinoresinol rescues developmental phenotypes of Arabidopsis phenylpropanoid mutants overexpressing FERULATE 5-HYDROXYLASE

Proceedings of the National Academy of Sciences

2023/8/1

UGT76F1 glycosylates an isomer of the C7‐necic acid component of pyrrolizidine alkaloids in Arabidopsis thaliana

The Plant Journal

2023/7

Transcript and metabolite network perturbations in lignin biosynthetic mutants of Arabidopsis

Plant Physiology

2022/12/1

Disruption of Zea mays isochorismate synthase1 decreases PHENYLALANINE AMMONIA LYASE activity and suppresses hypersensitive response-induced …

bioRxiv

2022/11/5

H-lignin can be deposited independently of CINNAMYL ALCOHOL DEHYDROGENASE C and D in Arabidopsis

Plant Physiology

2022/8/1

Manipulation of lignin monomer composition combined with the introduction of monolignol conjugate biosynthesis leads to synergistic changes in lignin structure

Plant and Cell Physiology

2022/6/1

Tag you're it: Application of stable isotope labeling and LC-MS to identify the precursors of specialized metabolites in plants

2022/1/1

Clint Chapple
Clint Chapple

H-Index: 47

Identification of the tyrosine-and phenylalanine-derived soluble metabolomes of sorghum

Frontiers in Plant Science

2021/9/14

Brian Dilkes
Brian Dilkes

H-Index: 26

Clint Chapple
Clint Chapple

H-Index: 47

Fast Determination of the Lignin Monomer Compositions of Genetic Variants of Poplar via Fast Pyrolysis/Atmospheric Pressure Chemical Ionization Mass …

Journal of the American Society for Mass Spectrometry

2021/8/31

Spatio-temporal control of phenylpropanoid biosynthesis by inducible complementation of a cinnamate 4-hydroxylase mutant

Journal of Experimental Botany

2021/4/2

Clint Chapple
Clint Chapple

H-Index: 47

Metabolic source isotopic pair labeling and genome-wide association are complementary tools for the identification of metabolite–gene associations in plants

The Plant Cell

2021/3/1

Advances in Transgenic Engineering

Advances in Transgenic Engineering

2020

Clint Chapple
Clint Chapple

H-Index: 47

Glucosinolate and phenylpropanoid biosynthesis are linked by proteasome‐dependent degradation of PAL

New Phytologist

2020/1

Xuebin Zhang
Xuebin Zhang

H-Index: 16

Clint Chapple
Clint Chapple

H-Index: 47

See List of Professors in Clint Chapple University(Purdue University)

Co-Authors

academic-engine