![]() These internal and environmental inputs regulate the expression of genes in leaves that encode mobile peptides that move to and reprogram the shoot apical meristem to produce flowers instead of stems. Flowering time regulates by stage of development, the circadian clock, red-light signaling pathways, and temperature. Flowering and stem growth regulationīioenergy sorghum genotypes characterize the growth of very long stems due in part to delayed flowering. Mullet, The sorghum bicolor reference genome: Improved assembly and annotations, a transcriptome atlas, and signatures of genome organization. This information is enabling the engineering of key pathways and traits using gene-editing technology. This information is being used to identify gene regulatory networks and signaling pathways that guide plant development and mediate adaptive responses to the environment. In collaboration with the Joint Genome Institute, our team is constructing a transcriptome compendium that includes gene expression profiles of every sorghum organ, tissue, and cell type, stage of development, and responses to the environment. The sorghum genome encodes ~34,000 genes that differentially express in specific organs, tissues, and cell types during development and in response to variation in the environment. The Mullet laboratory is researching bioenergy sorghum, a high-yielding, drought- and heat-resilient C4 grass. Our research team is using a combination of genetic, genomic, and biochemical approaches to generate knowledge of biochemical pathways and gene regulatory networks that will enable the design of next-generation climate-resilient bioenergy crops. To help meet this need, the Mullet laboratory is collaborating with scientists affiliated with DOE Bioenergy Research Centers and the National Labs to acquire knowledge that will enable the design of next-generation crops. Privatus may also be known as or be related to Privatus.Improvements in plant productivity, resilience, and composition are needed to provide food, feed, biofuels, and bio-products for a rapidly developing world population that will reach ~10 billion by 2050. The data presented on this page does not represent the view of Privatus and its employees or that of Zippia. None of the information on this page has been provided or approved by Privatus. While we have made attempts to ensure that the information displayed are correct, Zippia is not responsible for any errors or omissions or for the results obtained from the use of this information. Sources of data may include, but are not limited to, the BLS, company filings, estimates based on those filings, H1B filings, and other public and private datasets. ![]() The data on this page is also based on data sources collected from public and open data sources on the Internet and other locations, as well as proprietary data we licensed from other companies. The employee data is based on information from people who have self-reported their past or current employments at Privatus. Zippia gives an in-depth look into the details of Privatus, including salaries, political affiliations, employee data, and more, in order to inform job seekers about Privatus.
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