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转昆虫抗冻蛋白基因增强甘薯抗冻能力 被引量:4
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作者 赖先军 张义正 +1 位作者 古英洪 颜朗 《植物学报》 CAS CSCD 北大核心 2020年第1期9-20,共12页
为明确昆虫抗冻蛋白基因转入甘薯(Ipomoea batatas)后是否能提升其抗冻能力,进而为培育甘薯抗冻育种材料奠定基础,将黄粉虫(Tenebrio molitor)抗冻蛋白基因TmAFP导入植物基因表达质粒,经农杆菌介导的遗传转化获得抗冻甘薯新材料。以甘... 为明确昆虫抗冻蛋白基因转入甘薯(Ipomoea batatas)后是否能提升其抗冻能力,进而为培育甘薯抗冻育种材料奠定基础,将黄粉虫(Tenebrio molitor)抗冻蛋白基因TmAFP导入植物基因表达质粒,经农杆菌介导的遗传转化获得抗冻甘薯新材料。以甘薯品种Huachano为受体材料建立甘薯植株高效再生体系,并采用不同成分的体细胞胚成熟培养基培养胚性悬浮细胞。胚性愈伤组织对除草剂的敏感性测试结果表明,转基因阳性植株筛选的最适培养基为MS+0.2 mg·L–12,4-D+0.8 mg·L^–1 GAP+100 mg·L^–1 Carb。将表达质粒分别转化Huachano后共获得7个胚性愈伤团并最终获得42株再生抗性植株,其中转pSUIBEV3-AFP有23个株系,转pCAMBIA-AFP有19个株系,经PCR、Southern杂交和RT-PCR检测后证实TmAFP基因已整合至甘薯基因组中并获得表达。将转基因甘薯及对照植株在–1℃下处理15小时后转移至室温,结果表明,转基因甘薯植株的抗冻能力显著提升。 展开更多
关键词 甘薯 抗冻蛋白 转基因 甘薯植株再生 分子育种
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Structure of a cereal purple acid phytase provides new insights to phytate degradation in plants
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作者 Raquel Faba-Rodriguez yinghong gu +4 位作者 Melissa Salmon Giuseppe Dionisio Henrik Brinch-Pedersen Charles A.Brearley Andrew M.Hemmings 《Plant Communications》 SCIE 2022年第2期52-61,共10页
Grain phytate,a mixed metal ion salt of inositol hexakisphosphate,accounts for 60%–80%of stored phosphorus in plants and is a potent antinutrient of non-ruminant animals including humans.Through neofunctionalization ... Grain phytate,a mixed metal ion salt of inositol hexakisphosphate,accounts for 60%–80%of stored phosphorus in plants and is a potent antinutrient of non-ruminant animals including humans.Through neofunctionalization of purple acid phytases(PAPhy),some cereals such as wheat and rye have acquired particularly high mature grain phytase activity.As PAPhy activity supplies phosphate,liberates metal ions necessary for seedling emergence,and obviates antinutrient effects of phytate,its manipulation and control are targeted crop traits.Here we show the X-ray crystal structure of the b2 isoform of wheat PAPhy induced during germination.This high-resolution crystal structure suggests a model for phytate recognition that,validated by molecular dynamics simulations,implicates elements of two sequence inserts(termed PAPhy motifs)relative to a canonical metallophosphoesterase(MPE)domain in forming phytate-specific substrate specificity pockets.These motifs are well conserved in PAPhys from monocot cereals,enzymes which are characterized by high specificity for phytate.Tested by mutagenesis,residues His229 in PAPhy motif 4 and Lys410 in the MPE domain,both conserved in PAPhys,are found to strongly influence phytase activity.These results explain the observed phytase activity of cereal PAPhys and open the way to the rational engineering of phytase activity in planta. 展开更多
关键词 wheat purple acid phytase X-ray crystallography STEREOSPECIFICITY
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