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Santiago Signorelli Poppolo

Dr

  • The University of Western Australia (M310), 35 Stirling Highway,

    6009 Perth

    Australia

  • 364 Citations
  • 11 h-Index
20112018
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Fingerprint Dive into the research topics where Santiago Signorelli Poppolo is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 3 Similar Profiles
Lotus corniculatus var. japonicus Agriculture & Biology
proline Agriculture & Biology
nitric oxide Agriculture & Biology
Lotus Agriculture & Biology
Proline Medicine & Life Sciences
reactive oxygen species Agriculture & Biology
oxygen Agriculture & Biology
forage legumes Agriculture & Biology

Network Recent external collaboration on country level. Dive into details by clicking on the dots.

Research Output 2011 2018

  • 364 Citations
  • 11 h-Index
  • 15 Article
  • 2 Chapter
  • 1 Review article
12 Citations (Scopus)

Developmental control of hypoxia during bud burst in grapevine

Meitha, K., Agudelo-Romero, P., Signorelli, S., Gibbs, D. J., Considine, J. A., Foyer, C. H. & Considine, M. J., May 2018, In : Plant, Cell & Environment. 41, 5, p. 1154-1170

Research output: Contribution to journalArticle

Open Access
hypoxia
buds
Oxygen
oxygen
genes
10 Citations (Scopus)
Open Access
seed dormancy
nitric oxide
abscisic acid
germination
dormancy
9 Citations (Scopus)

Roles for Light, Energy and Oxygen in the Fate of Quiescent Axillary Buds

Signorelli, S., Agudelo-Romero, P., Meitha, K., Foyer, C. H. & Considine, M. J., Feb 2018, In : Plant Physiology. 176, 2, p. 1171-1181

Research output: Contribution to journalArticle

Open Access
14 Citations (Scopus)

Cell cycle arrest in plants: What distinguishes quiescence, dormancy and differentiated G1?

Velappan, Y., Signorelli, S. & Considine, M. J., 17 Oct 2017, In : Annals of Botany. 120, 4, p. 495-509 15 p.

Research output: Contribution to journalReview article

dormancy
cell cycle
physiology
ubiquitin
somatic cells
5 Citations (Scopus)
Lotus corniculatus var. japonicus
osmotic stress
proline
synthesis
plant response