dcodetm universal mutation detection system (Bio-Rad)
96
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Bio-Rad
dcodetm universal mutation detection system
Dcodetm Universal Mutation Detection System, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 3162 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/dcodetm+mutation+detection+system/DCode+System+for+DGGE/pm41440678-128-6-11
Average 96 stars, based on 3162 article reviews
Dcodetm Universal Mutation Detection System, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 3162 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/dcodetm+mutation+detection+system/DCode+System+for+DGGE/pm41440678-128-6-11
Average 96 stars, based on 3162 article reviews
dcodetm universal mutation detection system - by Bioz Stars,
2026-10
96/100 stars
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Polymerase Chain Reaction:Article Title: Diverse key nitrogen cycling genes nifH, nirS and nosZ associated with mangrove rhizosphere soils of Pichavaram as revealed by culture dependent and independent analysis. Article Snippet: .. PCR-DGGE analysis About 45 μl of the ampli ed products were loaded onto DGGE gel in Denaturing Gradient Gel Electrophoresis:Article Title: Diverse key nitrogen cycling genes nifH, nirS and nosZ associated with mangrove rhizosphere soils of Pichavaram as revealed by culture dependent and independent analysis. Article Snippet: .. PCR-DGGE analysis About 45 μl of the ampli ed products were loaded onto DGGE gel in Article Title: Cecal microbiota of Tibetan Chickens from five geographic regions were determined by 16S rRNA sequencing Article Snippet: .. Briefly, DGGE was performed using a Bio‐Rad Article Title: Diverse key nitrogen cycling genes nifH, nirS and nosZ associated with Pichavaram mangrove rhizospheres as revealed by culture-dependent and culture-independent analyses. Article Snippet: Mangroves are highly productive unique ecosystems harboring diverse unexplored microbial communities that play crucial roles in nutrient cycling as well as in maintaining ecosystem services.. The mangrove-associated microbial communities transform the dead vegetation into nutrient sources of nitrogen, phosphorus, potash, etc.. To understand the genetic and functional diversity of the bacterial communities involved in nitrogen cycling of this ecosystem, this study explored the diversity and distribution of both the nitrogen fixers and denitrifiers associated with the rhizospheres of Avicennia marina, Rhizophora mucronata, Suaeda maritima, and Salicornia brachiata of the Pichavaram mangroves. Mutagenesis:Article Title: Diverse key nitrogen cycling genes nifH, nirS and nosZ associated with mangrove rhizosphere soils of Pichavaram as revealed by culture dependent and independent analysis. Article Snippet: .. PCR-DGGE analysis About 45 μl of the ampli ed products were loaded onto DGGE gel in Article Title: Cecal microbiota of Tibetan Chickens from five geographic regions were determined by 16S rRNA sequencing Article Snippet: .. Briefly, DGGE was performed using a Bio‐Rad Article Title: Diverse key nitrogen cycling genes nifH, nirS and nosZ associated with Pichavaram mangrove rhizospheres as revealed by culture-dependent and culture-independent analyses. Article Snippet: Mangroves are highly productive unique ecosystems harboring diverse unexplored microbial communities that play crucial roles in nutrient cycling as well as in maintaining ecosystem services.. The mangrove-associated microbial communities transform the dead vegetation into nutrient sources of nitrogen, phosphorus, potash, etc.. To understand the genetic and functional diversity of the bacterial communities involved in nitrogen cycling of this ecosystem, this study explored the diversity and distribution of both the nitrogen fixers and denitrifiers associated with the rhizospheres of Avicennia marina, Rhizophora mucronata, Suaeda maritima, and Salicornia brachiata of the Pichavaram mangroves. Amplification:Article Title: Diverse key nitrogen cycling genes nifH, nirS and nosZ associated with Pichavaram mangrove rhizospheres as revealed by culture-dependent and culture-independent analyses. Article Snippet: Mangroves are highly productive unique ecosystems harboring diverse unexplored microbial communities that play crucial roles in nutrient cycling as well as in maintaining ecosystem services.. The mangrove-associated microbial communities transform the dead vegetation into nutrient sources of nitrogen, phosphorus, potash, etc.. To understand the genetic and functional diversity of the bacterial communities involved in nitrogen cycling of this ecosystem, this study explored the diversity and distribution of both the nitrogen fixers and denitrifiers associated with the rhizospheres of Avicennia marina, Rhizophora mucronata, Suaeda maritima, and Salicornia brachiata of the Pichavaram mangroves. other:Article Title: The intestinal microbial diversity in Chinese shrimp (Fenneropenaeus chinensis) as determined by PCR–DGGE and clone library analyses Article Snippet: Contents lists available at ScienceDirect Aquaculture j ourna l homepage: www.e lsev ie r.com/ locate /aqua-on l ine The intestinal microbial diversity in Chinese shrimp (Fenneropenaeus chinensis) as determined by PCR–DGGE and clone library analyses Huaide Liu a, Lei Wang b, Mei Liu b, Baojie Wang b, Keyong Jiang b, Shaosai Ma a, Qiufen Li a,⁎ a Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266071, PR China b Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, PR China ⁎ Corresponding author.. Tel./fax: +86 532 85813271 E-mail address: liqf@ysfri.ac.cn (Q. Li).. 0044-8486/$ – see front matter © 2011 Elsevier B.V. A doi:10.1016/j.aquaculture.2011.04.008 a b s t r a c t a r t i c l e i n f o Article history: Received 29 March 2011 Received in revised form 2 April 2011 Accepted 4 April 2011 Available online 12 April 2011 Keywords: Intestinal microbial diversity PCR–DGGE 16S rDNA clone library Chinese shrimp In this study, the intestinal microbiota of Chinese shrimp (Fenneropenaeus chinensis) was examined by molecular analysis of the 16S rDNA. |