Heavy ion beams are generally recognized as one of powerful mutagens in plant breeding to generate new mutantswith ideal or useful agronomic characters[1]. 12C6+ ion beams (80 MeV/u) accelerated by Heavy Ion Research ...Heavy ion beams are generally recognized as one of powerful mutagens in plant breeding to generate new mutantswith ideal or useful agronomic characters[1]. 12C6+ ion beams (80 MeV/u) accelerated by Heavy Ion Research Facilityin Lanzhou (HIRFL) were used to irradiate wheat samples, one of the major wheat varieties in Qinghai province,named Gaoyuan448. The radiation doses ranged from 10 to 200 Gy. The irradiated samples, controls, and anothermajor wheat variety named Abo were planted in farm locating in Ledu county of Qinghai province in 2014.展开更多
In recent years,with the development of robotics,sensors and kinds of imaging apparatuses,researchers have developed varieties of automation,high precision and throughput phenotype analysis platforms by ceaselessly ha...In recent years,with the development of robotics,sensors and kinds of imaging apparatuses,researchers have developed varieties of automation,high precision and throughput phenotype analysis platforms by ceaselessly hard working and exploring[1,2].Although these platforms have improved the development of phenomics to some degree,there are still some problems in need of resolution.For example,researchers have not yet carried out an effective evaluation of the relationship between plant phenotype and genotype.Certainly,it is the key to solve these problems that how to analyze thoroughly and availably the“big data”obtained from the“high throughput”of the phenotypic analysis platform[3].Based on these issues,we attempted to analyze the huge amounts of data produced by Scanalyzer HTS,and summed up a set of research methods to analyze phenomics data.展开更多
文摘Heavy ion beams are generally recognized as one of powerful mutagens in plant breeding to generate new mutantswith ideal or useful agronomic characters[1]. 12C6+ ion beams (80 MeV/u) accelerated by Heavy Ion Research Facilityin Lanzhou (HIRFL) were used to irradiate wheat samples, one of the major wheat varieties in Qinghai province,named Gaoyuan448. The radiation doses ranged from 10 to 200 Gy. The irradiated samples, controls, and anothermajor wheat variety named Abo were planted in farm locating in Ledu county of Qinghai province in 2014.
文摘In recent years,with the development of robotics,sensors and kinds of imaging apparatuses,researchers have developed varieties of automation,high precision and throughput phenotype analysis platforms by ceaselessly hard working and exploring[1,2].Although these platforms have improved the development of phenomics to some degree,there are still some problems in need of resolution.For example,researchers have not yet carried out an effective evaluation of the relationship between plant phenotype and genotype.Certainly,it is the key to solve these problems that how to analyze thoroughly and availably the“big data”obtained from the“high throughput”of the phenotypic analysis platform[3].Based on these issues,we attempted to analyze the huge amounts of data produced by Scanalyzer HTS,and summed up a set of research methods to analyze phenomics data.