Livelihood resilience in the face of multiple stressors: biocultural resource-based adaptive strategies among the vulnerable communities

Author(s):  
Ranjay K. Singh ◽  
Rakesh Bhardwaj ◽  
Amish K. Sureja ◽  
Arvind Kumar ◽  
Anshuman Singh ◽  
...  
Author(s):  
Mammusa Rosinah Lekoa ◽  
Sibusiso Louis Ntuli

This paper provides accounts on the impact that COVID-19 and the subsequent lockdown(s) had on the Church and its leaders in the South African context. The study explores challenges that the leaders faced and how they dealt with them to remain standing despite their fears. The context is COVID-19 pandemic, which brought mass deaths, fear, confusion and frustration to congregations globally. Church leaders faced a challenge to show resilience amid fear because they too were directly affected. Governments introduced regulations that imposed lockdowns to control the spread of the virus. Limiting contact by restricting distance amongst citizens. The church was one sector that could not operate. Although some sectors were never declared essential services like churches, this left vulnerable communities without support in the face of fear. Spiritual leaders had to demonstrate resilience to support the congregants. The key question the researchers seek to understand is to what extent did the church remain resilient during COVID-19 pandemic? And how did the church leaders deal with fear despite anointing and expectations from the congregants and communities? A qualitative approach was used in this study. COVID-19 has shown that Church leaders are humans and they are also fearful, however their faith in God has assisted them to show resilience even at this difficult time. The study also asserts that governments should consult different groupings of faith-based organisations, not only those that are under organised bodies before embarking on restrictions for pandemic control. Communities encompass many churches and leaders require support to assist them from church members.


Food Security ◽  
2020 ◽  
Author(s):  
Tiziana Pagnani ◽  
Elisabetta Gotor ◽  
Francesco Caracciolo

mSystems ◽  
2017 ◽  
Vol 2 (5) ◽  
Author(s):  
Cynthia L. Darnell ◽  
Peter D. Tonner ◽  
Jordan G. Gulli ◽  
Scott C. Schmidler ◽  
Amy K. Schmid

ABSTRACT To ensure survival in the face of stress, microorganisms employ inducible damage repair pathways regulated by extensive and complex gene networks. Many archaea, microorganisms of the third domain of life, persist under extremes of temperature, salinity, and pH and under other conditions. In order to understand the cause-effect relationships between the dynamic function of the stress network and ultimate physiological consequences, this study characterized the physiological role of nearly one-third of all regulatory proteins known as transcription factors (TFs) in an archaeal organism. Using a unique quantitative phenotyping approach, we discovered functions for many novel TFs and revealed important secondary functions for known TFs. Surprisingly, many TFs are required for resisting multiple stressors, suggesting cross-regulation of stress responses. Through extensive validation experiments, we map the physiological roles of these novel TFs in stress response back to their position in the regulatory network wiring. This study advances understanding of the mechanisms underlying how microorganisms resist extreme stress. Given the generality of the methods employed, we expect that this study will enable future studies on how regulatory networks adjust cellular physiology in a diversity of organisms. Gene regulatory networks (GRNs) are critical for dynamic transcriptional responses to environmental stress. However, the mechanisms by which GRN regulation adjusts physiology to enable stress survival remain unclear. Here we investigate the functions of transcription factors (TFs) within the global GRN of the stress-tolerant archaeal microorganism Halobacterium salinarum. We measured growth phenotypes of a panel of TF deletion mutants in high temporal resolution under heat shock, oxidative stress, and low-salinity conditions. To quantitate the noncanonical functional forms of the growth trajectories observed for these mutants, we developed a novel modeling framework based on Gaussian process regression and functional analysis of variance (FANOVA). We employ unique statistical tests to determine the significance of differential growth relative to the growth of the control strain. This analysis recapitulated known TF functions, revealed novel functions, and identified surprising secondary functions for characterized TFs. Strikingly, we observed that the majority of the TFs studied were required for growth under multiple stress conditions, pinpointing regulatory connections between the conditions tested. Correlations between quantitative phenotype trajectories of mutants are predictive of TF-TF connections within the GRN. These phenotypes are strongly concordant with predictions from statistical GRN models inferred from gene expression data alone. With genome-wide and targeted data sets, we provide detailed functional validation of novel TFs required for extreme oxidative stress and heat shock survival. Together, results presented in this study suggest that many TFs function under multiple conditions, thereby revealing high interconnectivity within the GRN and identifying the specific TFs required for communication between networks responding to disparate stressors. IMPORTANCE To ensure survival in the face of stress, microorganisms employ inducible damage repair pathways regulated by extensive and complex gene networks. Many archaea, microorganisms of the third domain of life, persist under extremes of temperature, salinity, and pH and under other conditions. In order to understand the cause-effect relationships between the dynamic function of the stress network and ultimate physiological consequences, this study characterized the physiological role of nearly one-third of all regulatory proteins known as transcription factors (TFs) in an archaeal organism. Using a unique quantitative phenotyping approach, we discovered functions for many novel TFs and revealed important secondary functions for known TFs. Surprisingly, many TFs are required for resisting multiple stressors, suggesting cross-regulation of stress responses. Through extensive validation experiments, we map the physiological roles of these novel TFs in stress response back to their position in the regulatory network wiring. This study advances understanding of the mechanisms underlying how microorganisms resist extreme stress. Given the generality of the methods employed, we expect that this study will enable future studies on how regulatory networks adjust cellular physiology in a diversity of organisms.


2014 ◽  
Vol 5 (1) ◽  
pp. 23-26 ◽  
Author(s):  
Thomas Tanner ◽  
David Lewis ◽  
David Wrathall ◽  
Robin Bronen ◽  
Nick Cradock-Henry ◽  
...  

2009 ◽  
Vol 12 (5) ◽  
pp. 469-488 ◽  
Author(s):  
William L. Coventry ◽  
Sarah E. Medland ◽  
Naomi R. Wray ◽  
Einar B. Thorsteinsson ◽  
Andrew C. Heath ◽  
...  

AbstractThe associations between social support and depression, and between stress and depression have been the subject of considerable research, and although this has included longitudinal designs, these have rarely controlled for genetic effects that mediate these associations. The sample comprised 7,356 female and 4,882 male participants aged 18–95 from the Australian NHMRC Twin Registry (ATR). Of these, between 100 and 324 female pairs and between 41 and 169 male pairs, depending on the measure, were monozygotic (MZ) pairs discordant for depression. We use the co-twin control design in combination with prospective analyses to explore the association between a composite of predictors (perceived social support, stress, and support × stress) and depression. With familial effects included, both perceived support and stress were antecedents to, and sequelae of, depression, but no stress-buffering occurred. With familial effects controlled, stress was a sequela of a prior depressive episode, and neither lack of support nor stress were antecedents to depression, though their interaction approached significance for males. The male twin who later became depressed had previously reported lower perceived support in the face of multiple stressors compared to his co-twin who did not become depressed. We show that associations commonly observed with prospective designs are partly due to familial factors.


2019 ◽  
Vol 684 ◽  
pp. 425-433 ◽  
Author(s):  
Geoff Phillips ◽  
Heliana Teixeira ◽  
Sandra Poikane ◽  
Fuensanta Salas Herrero ◽  
Martyn G. Kelly
Keyword(s):  

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