pairwise sequence alignments (MacVector inc)
90
Structured Review
MacVector inc
pairwise sequence alignments
Pairwise Sequence Alignments, supplied by MacVector inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pairwise+sequence+alignment/pairwise+sequence+alignments/pm25307286-54-23-26
Average 90 stars, based on 1 article reviews
Pairwise Sequence Alignments, supplied by MacVector inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pairwise+sequence+alignment/pairwise+sequence+alignments/pm25307286-54-23-26
Average 90 stars, based on 1 article reviews
pairwise sequence alignments - by Bioz Stars,
2026-09
90/100 stars
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Related Articles
Sequencing:Article Title: A SNP in OsMCA1 responding for a plant architecture defect by deactivation of bioactive GA in rice. Article Snippet: Plant architecture directly affects grain yields.. Rice plant architecture, which has recently been extensively investigated (Sakamoto and Matsuoka 2004; Springer 2010; Wang and Li 2005, 2008; Xing and Zhang 2010; Yang and Hwa 2008; Zhang et al. 2008), is a complicated agronomic trait that is mainly determined by tiller number, tiller angle, leaf arrangement, plant height and panicle morphology.. In previous studies, several genes involved in controlling the abovementioned components, such as TEOSINTE BRANCHED 1 (OsTB1), MONOCULM 1 (MOC1), LAZY1 (LA1), Tiller Angle Control 1 (TAC1), PROSTRATE GROWTH 1 (PROG1), YABBY1 (YAB1), OsDWARF4, Loose Plant Architecture1 (LPA1), Semi-Dwarf1 (SD1) and SOUAMOSA PROMOTER BINDING PROTEIN-LIKE 14 (OsSPL14), were identified based on natural and artificially generated mutants of various rice varieties (Dai et al. 2007; Jiao et al. 2010; Jin et al. 2008; Li et al. 2007; 2003; Miura et al. 2010; Sakamoto et al. 2006; Sasaki et al. 2002; Takeda et al. 2003; Tan et al. 2008; Wu et al. 2013; Yoshihara and Iino 2007; Yu et al. 2007). Mutagenesis:Article Title: A SNP in OsMCA1 responding for a plant architecture defect by deactivation of bioactive GA in rice. Article Snippet: Plant architecture directly affects grain yields.. Rice plant architecture, which has recently been extensively investigated (Sakamoto and Matsuoka 2004; Springer 2010; Wang and Li 2005, 2008; Xing and Zhang 2010; Yang and Hwa 2008; Zhang et al. 2008), is a complicated agronomic trait that is mainly determined by tiller number, tiller angle, leaf arrangement, plant height and panicle morphology.. In previous studies, several genes involved in controlling the abovementioned components, such as TEOSINTE BRANCHED 1 (OsTB1), MONOCULM 1 (MOC1), LAZY1 (LA1), Tiller Angle Control 1 (TAC1), PROSTRATE GROWTH 1 (PROG1), YABBY1 (YAB1), OsDWARF4, Loose Plant Architecture1 (LPA1), Semi-Dwarf1 (SD1) and SOUAMOSA PROMOTER BINDING PROTEIN-LIKE 14 (OsSPL14), were identified based on natural and artificially generated mutants of various rice varieties (Dai et al. 2007; Jiao et al. 2010; Jin et al. 2008; Li et al. 2007; 2003; Miura et al. 2010; Sakamoto et al. 2006; Sasaki et al. 2002; Takeda et al. 2003; Tan et al. 2008; Wu et al. 2013; Yoshihara and Iino 2007; Yu et al. 2007). |