Nicholas Smirnoff

Nicholas Smirnoff

University of Exeter

H-index: 70

Europe-United Kingdom

About Nicholas Smirnoff

Nicholas Smirnoff, With an exceptional h-index of 70 and a recent h-index of 47 (since 2020), a distinguished researcher at University of Exeter, specializes in the field of Plant Biology.

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

The ascorbate biosynthesis pathway in plants is known but there is a way to go with understanding control and functions

Rapid evolution of thermal tolerance and phenotypic plasticity in variable environments

RBOHF activates stomatal immunity by modulating both reactive oxygen species and apoplastic pH dynamics in Arabidopsis

Comparative experimental evolution reveals species‐specific idiosyncrasies in marine phytoplankton adaptation to warming

Organelle-targeted biosensors reveal distinct oxidative events during pattern-triggered immune responses

Diatoms exhibit dynamic chloroplast calcium signals in response to high light and oxidative stress

OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae

Shining a light on ascorbate metabolism

Nicholas Smirnoff Information

University

Position

___

Citations(all)

30799

Citations(since 2020)

9392

Cited By

25128

hIndex(all)

70

hIndex(since 2020)

47

i10Index(all)

134

i10Index(since 2020)

105

Email

University Profile Page

Google Scholar

Nicholas Smirnoff Skills & Research Interests

Plant Biology

Top articles of Nicholas Smirnoff

The ascorbate biosynthesis pathway in plants is known but there is a way to go with understanding control and functions

2024/2/1

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Rapid evolution of thermal tolerance and phenotypic plasticity in variable environments

2024/1/31

RBOHF activates stomatal immunity by modulating both reactive oxygen species and apoplastic pH dynamics in Arabidopsis

The Plant Journal

2023/10

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Comparative experimental evolution reveals species‐specific idiosyncrasies in marine phytoplankton adaptation to warming

Global Change Biology

2023/9

Organelle-targeted biosensors reveal distinct oxidative events during pattern-triggered immune responses

Plant Physiology

2023/4/1

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Diatoms exhibit dynamic chloroplast calcium signals in response to high light and oxidative stress

bioRxiv

2023

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae

Plants

2022/8/24

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Shining a light on ascorbate metabolism

Free Radical Biology and Medicine

2022/8/20

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Evolution of thermal tolerance and phenotypic plasticity under rapid and slow temperature fluctuations

Proceedings of the Royal Society B

2022/8/10

OsVTC1-1 RNAi Mutant with Reduction of Ascorbic Acid Synthesis Alters Cell Wall Sugar Composition and Cell Wall-Associated Proteins

Agronomy

2022/5/26

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Journal of Experimental Botany 70th anniversary: plant metabolism in a changing world

2021/9/2

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Liposome-based measurement of light-driven chloride transport kinetics of halorhodopsin

Biochimica et Biophysica Acta (BBA)-Biomembranes

2021/8/1

Photosynthesis-independent production of reactive oxygen species in the rice bundle sheath during high light is mediated by NADPH oxidase

Proceedings of the National Academy of Sciences

2021/6/22

Plant redox biology—On the move

2021/5/1

Differences between apoplastic and cytosolic reactive oxygen species production in Arabidopsis during pattern-triggered immunity

bioRxiv

2021/4/21

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

The role of GDP-l-galactose phosphorylase in the control of ascorbate biosynthesis

Plant physiology

2021/4/1

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Spatiotemporal patterns of intracellular Ca2+ signalling govern hypo‐osmotic stress resilience in marine diatoms

New Phytologist

2021/4

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Chloroplast immunity illuminated

2021/3

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Jasmonates induce Arabidopsis bioactivities selectively inhibiting the growth of breast cancer cells through CDC6 and mTOR

new phytologist

2021/2

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

Amanda Harvey
Amanda Harvey

H-Index: 13

70th anniversary-plant metabolism in a changing world.

2021

Nicholas Smirnoff
Nicholas Smirnoff

H-Index: 45

See List of Professors in Nicholas Smirnoff University(University of Exeter)

Co-Authors

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