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1Heterotic patterns in rapeseed (Brassica napus L.) using exotic germplasm for Chinese semi-winter hybrid breeding显示文摘Chinese semi-winter rapeseed,genetically differing from winter and spring rapeseed,has been considered to possess strong potential as parent in winter and spring rapeseed hybrid breeding programs. However,no detailed researches have been documented whether winter and spring rapeseed lines have potential for Chinese semiwinter rapeseed hybrid breeding. The objectives of this study are to estimate the potential of winter and spring rapeseed for semi-winter rapeseed hybrid breeding,and to investigate the association of general combining ability(GCA) with adaptation of parental lines by combining with the data in our previous studies. Four winter and four spring male sterile lines were crossed with 14 Chinese semi-winter rapeseed lines to develop 112 hybrids,which were evaluated together with their parents for seed yield under three environments in China. The exotic parental lines were not adapted to local environment as demonstrated by late flowering,low seed weight and poor seed yield per se. However,the hybrids,especially derived from winter rapeseed exhibited strong heterosis for seed yield,indicating that winter rapeseed germplasm has a great potential for rapeseed hybrid breeding in China. Our data suggested a strong association of GCA with their adaptation ability of parental lines,since high to middle correlations were found for local parental lines and low correlations for exotic parental lines under spring,winter and semi-winter eco-growth environments. The hybrid breeding program using exotic germplasm in rapeseed was discussed.Qian Lunwen Chen Lunlin Mei Jiaqin Li Maoteng Martin Frauen Christian Jung Qian Wei Meng Jinling 2013Engineering Sciences2013,11,5:2
2CRISPR-based genome editing technology and its applications in oil crops显示文摘Oil crops,mainly comprised of soybean,rapeseed,groundnut,sunflower and etc.,have provided substantial edible oil and other tremendous nutrients for human beings,as well as valuable biofuels for associated industries.The genetic improvement of significant oil crops and/or domesticating novel high-yielding oil crops are in urgent need to cope with the ever-increasing demand for various oil crop products.CRISPR(Clustered Regularly Interspaced Short Palindromic Repeats)-based genome editing technology,born a few years ago,edits stretches of DNA in a targeted and RNA-dependent fashion.The Characteristics of targeted mutagenesis and easy manipulation owned by the technology make it have been applied to many plants and exhibited great potential in the genetic improvement of many important oil crops.In the face of growing need for oil crop products and the rapid developments in CRISPR-based genome editing technology,a critical review regarding the technology and its application in oil crops is badly required to provide references for the better use of this technology to modify the oil crops for higher yield.In this review paper,we briefly described the CRISPR-based genome editing technology and summarized its applications and future prospects in oil crops.Jianjie He Kai Zhang Mi Tang Weixian Zhou Liurong Chen Zhaobo Chen Maoteng Li 2021Oil Crop Science2021,6,3:1
3A new approach to the standard addition method for the analysis of F, Al and K content in green tea 显示文摘LI Tao YU Longjiang LI Maoteng 2006Microchimica Acta2006,153,:1
4MiRNA identification,characterization and integrated network analysis for flavonoid biosynthesis in Brassicacoraphanus显示文摘Brassica rapa(AA,2n=20)and Raphanus sativus(RR,2n=18)are popular vegetables containing multiple secondary metabolites,such as flavonoids and anthocyanins.Nevertheless,fewstudies on miRNA expression profiles and potential regulatory network of flavonoid metabolism have been reported in the intergeneric hybrid of B.rapa and R.sativus(Brassicacoraphanus,AARR,2n=38).Here,themiRNAs of Brassicacoraphanus and its parents were first identified by small RNA sequencing.It was revealed that 315 conserved miRNAs and 193 novel miRNAs were found in Brassicacoraphanus and its parents.Moreover,the miRNA expression profiles were characterized and 204 miRNAs with differential expression were obtained.Further analysis showed that 184 miRNAs were non-additively expressed in Brassicacoraphanus.At last,the potential regulatory network of flavonoid metabolism in Brassicacoraphanus was analyzed by multi-omics data,suggesting possible roles of miR858a and miR157a in regulating flavonoid synthesis pathway in Brassicacoraphanus.Taken together,this study provides useful resources for probing globalmiRNA expression patterns in Brassicacoraphanus,which facilitates regulatory mechanism research on the biosynthesis pathway of secondary metabolites in Brassicacoraphanus.Libin zhang Heng Xia Jiangsheng Wu Maoteng Li 2022Horticultural Plant Journal2022,8,3:1
5Multistrip Bundle Block Adjustment of ZY-3 Satellite Imagery by Rigorous Sensor Model without Ground Control Point显示文摘ZHANG Yongjun ZHENG Maoteng XIONG Xiaodong 2015IEEE Geoscience and Remote Sensing Letters2015,12,4:1
6A New Approach to the Standard Addition Method for the Analysis of F, A1 and K Content in Green Tea显示文摘Li Tao Yu Longjiang Li Maoteng 2006Microchimica Acta2006,153,1:1
7Combined Bundle Block Adjustment with Spaceborne Linear Array and Airborne Frame Array Imagery显示文摘Yongjun Zhang Liwen Lin Maoteng Zheng Jinxin Xiong 20132013 (142)2013,,142:1
8Genome-wide unbalanced expression bias and expression level dominance toward Brassica oleracea in artificially synthesized intergeneric hybrids of Raphanobrassica显示文摘Raphanobrassica(R^(r)R^(r)C^(r)C^(r),2n=4x=36),which is generated by distant hybridization between the maternal parent Raphanus sativus(R s R s,2n=2x=18)and the paternal parent Brassica oleracea(C°C°,2n=2x=18),displays intermediate silique phenotypes compared to diploid progenitors.However,the hybrid shares much more similarities in silique phenotypes with those of B.oleracea than those of R.sativus.Strikingly,the silique of Raphanobrassica is obviously split into two parts.To investigate the gene expression patterns behind these phenomena,transcriptome analysis was performed on the upper,middle,and lower sections of pods(RCsiu,RCsim,and RCsil),seeds in the upper and lower sections of siliques(RCseu and RCsel)from Raphanobrassica,whole pods(Rsi and Csi)and all seeds in the siliques(Rse and Cse)from R.sativus and B.oleracea.Transcriptome shock was observed in all five aforementioned tissues of Raphanobrassica.Genome-wide unbalanced biased expression and expression level dominance were also discovered,and both of them were toward B.oleracea in Raphanobrassica,which is consistent with the observed phenotypes.The present results reveal the global gene expression patterns of different sections of siliques of Raphanobrassica,pods,and seeds of B.oleracea and R.sativus,unraveling the tight correlation between global gene expression patterns and phenotypes of the hybrid and its parents.Libin Zhang Jianjie He Hongsheng He Jiangsheng Wu Maoteng Li 2021Horticulture Research2021,8,1:1
9Refinement of four major QTL for oil content in Brassica napus by integration of genome resequencing and transcriptomics显示文摘Rapeseed(Brassica napus)supplies about half of the vegetable oil in China.Increasing oil production and searching for genes that control oil content in the crop are research goals.In our previous studies,four major QTL for oil content located on A08,A09,C03 and C06 in the Ken C-8×N53-2(KN DH)mapping population were detected.The parental lines were resequenced to identify structural variations and candidate genes affecting oil content in these four major QTL regions.Insertion-deletion(In Del)markers were developed and used to narrow the regions.Differentially expressed genes located in the regions were investigated.GO and KEGG analysis showed that several genes were associated with lipid metabolism.Several transcription factors with higher expression in N53-2 than in Ken C-8 were identified.These results shed light on the genetic control of oil content and may be helpful for the development of highoil-content cultivars.Shuxiang Yan Huaixin Li Hongbo Chao Jianjie He Yiran Ding Weiguo Zhao Kai Zhang Yiyi Xiong Kang Chen Libin Zhang Maoteng Li 2022The Crop Journal2022,10,3:0
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