Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Interannual variability of photosynthesis across Africa and its attribution

Domain:

climateenvironment and energygeospatial

Record type:

paper
Creator:
ChrNiaIanG.
Publisher:
Ame
Host:
Africa is thought to be a large source of interannual variability in the global carbon cycle, only vaguely attributed to climate fluctuations. This study uses a biophysical model, Simple Biosphere, to examine in detail what specific factors, physiological (acute stress from low soil water, temperature, or low humidity) and biophysical (low vegetation radiation use), are responsible for spatiotemporal patterns of photosynthesis across the African continent during the period 1982–2003. Acute soil water stress emerges as the primary factor driving interannual variability of photosynthesis for most of Africa. Southern savannas and woodlands are a particular hot spot of interannual variability in photosynthesis, owing to high rainfall variability and photosynthetic potential but intermediate annual rainfall. Surprisingly low interannual variability of photosynthesis in much of the Sudano‐Sahelian zone derives from relatively low vegetation cover, pronounced humidity stress, and somewhat lower rainfall variability, whereas perennially wet conditions diminish interannual variability in photosynthesis across much of the Congo Basin and coastal West Africa. Though not of focus here, the coefficient of variation in photosynthesis is notably high in drylands and desert margins (i.e., Sahel, Greater Horn, Namib, and Kalahari) having implications for supply of food and fiber. These findings emphasize that when considering impacts of climate change and land surface feedbacks to the atmosphere, it is important to recognize how vegetation, climate, and soil characteristics may conspire to filter or dampen ecosystem responses to hydroclimatic variability.

Visit

doi.org

Licenses

http://onlinelibrary.wiley.com/termsAndConditions#vor

Similar

Tropical drivers of interannual vegetation variability in eastern AfricaInterannual Climate Variability and Malaria in MozambiqueInterannual Variability and Trends of Extreme Rainfall Indices over BeninTrends and Interannual Variability of Extreme Rainfall Indices over CameroonInterannual Hydroclimatic Variability of the Lake Mweru Basin, ZambiaTrend, decadal and interannual variability in annual rainfall of subequatorial and tropical North Africa (1900–1994)

Tropical drivers of interannual vegetation variability in eastern Africa

Here, we use idealized climate model simulations to elucidate the governing processes for eastern Af

Interannual Climate Variability and Malaria in Mozambique

Abstract Malaria is among the greatest public health threats in Mozambique, with over 10 million ca

Interannual Variability and Trends of Extreme Rainfall Indices over Benin

Observed rainfall data (1961–2016) were used to analyze variability, trends and changes of extreme p

Trends and Interannual Variability of Extreme Rainfall Indices over Cameroon

Central African citizens are highly vulnerable to extreme hydroclimatic events due to excess precipi

Interannual Hydroclimatic Variability of the Lake Mweru Basin, Zambia

Annual precipitation inputs to the Lake Mweru basin, Zambia, were computed from historic data and re

Trend, decadal and interannual variability in annual rainfall of subequatorial and tropical North Africa (1900–1994)

International audience