العودة إلى أطلس نقطة →

سجل مستودعي · ncbi-prjeb37471

Effect of saturation-level salinities on metabolic activities in a microbial mat from a saltflat

عُمانEnvironmental and microbial genomicsRepository record

Microbial mats are densely populated, stratified ecosystems often performing a complete cycling of elements. Such metabolically diverse and self-sustaining communities can also be found at hypersaline conditions. In this study we investigated the biogeochemical activities and responsible microbial communities in salt-crust covered microbial mats growing at the verge of salt-saturation on a coastal sabkha in Oman. Thereby we explored the salinity limits for key microbial processes and potential protective properties of the salt crust with a combination of geochemical and molecular ecology methods, including microsensor profiles, hyperspectral imaging, pigment extraction, and fluorescence microscopy combined with 16S rRNA gene amplicon sequencing.While the salt crust did not reduce light intensities or heat, the microbial community remained active under these multi-stress conditions. Sulfate reduction, aerobic respiration and anoxygenic photosynthesis could be measured at saturation-level salinity (40%), while oxygenic phototrophs appeared to be more susceptible to such high salt concentrations. Oxygenic photosynthesis was still measurable at 30% salinity, but was completely inhibited at salt saturation and only resumed after significant dilution of the salt. High-resolution amplicon sequencing revealed a diverse microbial community including two layers of Cyanobacteria, high relative abundances of Chloroflexi and Archaea.Our study describes a microbial community adapted to exist at near salt-saturation, but also reveals a salinity limit for its carbon input via oxygenic photosynthesis. Thus, this community has to be depending on salt dilution by tides or floods to be truly self-sustaining.

تفسير سجل المستودع

تم التحقق من رقم الوصول وارتباطه بدولة خليجية. ولا يثبت التسجيل وحده أن البرنامج البحثي الأوسع ما زال نشطًا.

01 / نظرة عامة على المشروع

ما الذي يثبته السجل.

النطاق الجغرافي
Oman connection indexed in BioProject metadata
نوع المشروع
Repository project
مجال البحث
Environmental and microbial genomics
السنوات
2020–
حالة المشروع
repository_recorded
أساس تحديد الحالة
Registered in NCBI BioProject on 2020/07/11; operational lifecycle is not asserted.
تاريخ دليل الحالة
2020-07-11
الحجم
1 BioProject accession grouped by matching submitter, date, data type and narrative.

02 / المؤسسات والمجتمع

من وما الذي يربطه المشروع.

الجهات القائدة
UNIVERSITY OF VIENNA
الجهات الشريكة
غير مذكور
الكائن / المجتمع
Not stated

03 / البيانات والإتاحة

ما الموجود وكيف يمكن الوصول إليه.

أنواع البيانات

  • Other
  • Sequencing
  • Genome

إتاحة البيانات

Public repository metadata with linked data where supplied by the submitter

المعرّفات

  • BioProjectPRJEB37471

04 / الدليل والمصدر

لماذا أُدرج هذا السجل.

أساس الإدراج

Exact country-name match in authoritative NCBI BioProject metadata; repeated submissions are grouped into one Atlas series.

ملاحظة تحريرية

Repository verification confirms the accession and regional connection, not whether the broader research programme remains active.

المصادر

  1. primary record source تم التحقق في 2026-08-15

الإصدار v0.2.0

خذ السجل العام معك.