Flowers and Ornamental Plants Market Demand: Growth, Share, Value, Size, and Insights
The flowers and ornamental plants market is witnessing significant growth, driven by rising consumer demand for aesthetic appeal, landscaping, and decorative purposes across residential, commercial, and public spaces. Increasing urbanization, rising disposable incomes, and the popularity of home décor trends are fueling the adoption of ornamental plants in households and gardens. Additionally, the growing use of flowers in events, weddings, and cultural festivals continues to boost market demand worldwide. With the expansion of e-commerce platforms and online delivery services, consumers now have greater access to fresh flowers and decorative plants, further supporting industry growth.
Sustainability and eco-friendly practices are also shaping the flowers and ornamental plants market. Many consumers are shifting towards organically grown plants and locally sourced flowers to reduce environmental impact. Moreover, technological advancements in greenhouse production, vertical farming, and hydroponics are improving yield and quality, allowing suppliers to meet year-round demand. Europe and Asia-Pacific are emerging as…




Whole genome and exome sequencing are advanced genomic technologies that enable comprehensive analysis of an individual’s DNA to identify genetic variations linked to health, disease, and inherited conditions. Whole genome sequencing (WGS) examines nearly 100% of the DNA, including coding regions, non-coding regions, regulatory elements, and structural variations. This makes WGS highly valuable for uncovering complex genetic patterns, rare mutations, and variants that traditional tests may miss. It is increasingly used in clinical diagnostics, personalized medicine, evolutionary studies, and large-scale research projects aimed at understanding genetic diversity and disease susceptibility at a population level.
Exome sequencing, on the other hand, focuses solely on the exome, the 1–2% of the genome that codes for proteins but contains nearly 85% of disease-causing mutations. Because it targets only the most functionally relevant regions, exome sequencing is faster, more cost-effective, and widely used for diagnosing genetic disorders, especially rare Mendelian diseases. While it does not capture regulatory or non-coding variants, exome sequencing provides high-depth coverage and actionable insights that support clinical decision-making. Together, whole genome and exome sequencing have become essential tools for precision medicine, enabling earlier diagnosis, targeted therapies, and improved understanding of human genetics.
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