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石家庄市优势种植业发展现状及对策 被引量:1
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作者 门佳婕 李瑜玲 +4 位作者 陈莉 宋晓 李建芬 花学军 李夕军 《河北农业科学》 2023年第4期105-108,共4页
基于实地走访与座谈,了解石家庄市优势种植业的发展现状,分析在发展过程中存在的问题。提出加快土地流转率,促进集约化生产;推动农业科技创新,提高农业科技水平;延伸产业链,创建优势农业品牌,推进品牌兴农的对策建议。从而促进该地区种... 基于实地走访与座谈,了解石家庄市优势种植业的发展现状,分析在发展过程中存在的问题。提出加快土地流转率,促进集约化生产;推动农业科技创新,提高农业科技水平;延伸产业链,创建优势农业品牌,推进品牌兴农的对策建议。从而促进该地区种植产业健康持续发展。 展开更多
关键词 石家庄市 优势种植业 粮食安全 发展对策
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石家庄市新型农业经营主体发展现状问题与对策研究——以石家庄市7个区13个县调研数据为例
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作者 李瑜玲 宋晓 +4 位作者 李夕军 李建芬 付勇 花学军 陈莉 《河北农业科学》 2018年第4期82-84,88,共4页
以石家庄市7个区13个县的农业生产大户、家庭农场、农业合作社、农业园区、农业企业等新型农业经营主体为例,论述了新型农业经营主体的发展现状,包括产业发展、一二三产业融合情况、运行机制、品牌建设等方面取得的成效与存在的问题,并... 以石家庄市7个区13个县的农业生产大户、家庭农场、农业合作社、农业园区、农业企业等新型农业经营主体为例,论述了新型农业经营主体的发展现状,包括产业发展、一二三产业融合情况、运行机制、品牌建设等方面取得的成效与存在的问题,并提出对策和建议,可为新型农业经营主体的发展提供参考。 展开更多
关键词 新型农业经营主体 发展现状 调研 思考
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甘蓝型油菜脯氨酸合成相关同源基因的进化和差异表达分析 被引量:1
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作者 王翠平 华学军 +1 位作者 林彬 刘爱华 《作物学报》 CAS CSCD 北大核心 2017年第10期1480-1488,共9页
以异源四倍体甘蓝型油菜(Brassica napus)及其二倍体祖先白菜(B.rapa)和甘蓝(B.oleracea)为对象,研究了脯氨酸合成途径关键酶基因P5CS和OAT的进化命运以及各自不同祖先来源的同源基因的差异表达情况。序列比对和进化分析表明,甘蓝型油菜... 以异源四倍体甘蓝型油菜(Brassica napus)及其二倍体祖先白菜(B.rapa)和甘蓝(B.oleracea)为对象,研究了脯氨酸合成途径关键酶基因P5CS和OAT的进化命运以及各自不同祖先来源的同源基因的差异表达情况。序列比对和进化分析表明,甘蓝型油菜中P5CS基因和OAT基因和其二倍体祖先的相对应基因高度同源;进化上,和二倍体亲本相比甘蓝型油菜P5CS2基因发生了1个拷贝的丢失,而OAT基因没有基因丢失现象;半定量RT-PCR结果表明,甘蓝型油菜中来自二倍体亲本白菜和甘蓝的P5CS2和OAT同源基因在所有检测器官中均表达,没有发生基因沉默;但是它们可能发生了亚功能化,不同祖先来源的2个P5CS2同源基因存在较弱的偏向性表达,不同器官的同源基因表达模式稍有不同;而OAT基因明显偏向于表达来自于甘蓝祖先的同源基因,OAT的2个同源基因的不同器官表达模式基本一致;盐胁迫处理后,来自于甘蓝的BnaC.P5CS1.d表达量显著高于来自于白菜的Bna A.P5CS1.a,表明盐处理条件下甘蓝型油菜偏向性表达BnaC.P5CS1.d。甘蓝型油菜的脯氨酸合成基因Bna A.P5CS1.a、BnaC.P5CS1.d及Bna A.P5CS2.a、BnaC.P5CS2.c的盐诱导表达模式均基本保持了亲本来源基因的特征。以上结果表明,与二倍体祖先相比,甘蓝型油菜中脯氨酸合成基因序列和表达模式均存在高度保守性,这可能说明了脯氨酸积累在进化上对植物的有利性。 展开更多
关键词 甘蓝型油菜 脯氨酸合成 多倍化 偏向性表达 亚功能化
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Comparative Study on the Expression of Genes Involved in Carotenoid and ABA Biosynthetic Pathway in Response to Salt Stress in Tomato 被引量:3
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作者 DUAN Hui-kun ZHU Yan +4 位作者 QI Dong-dong LI Wen-long hua xue-jun LIU Yong-xiu DENG Xin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2012年第7期1093-1102,共10页
Carotenoid biosynthetic pathway produces not only pigments that protect photosynthetic system against photo-oxidative damage, but also precursors of abscisic acid, the major hormone regulates stress responses. To unde... Carotenoid biosynthetic pathway produces not only pigments that protect photosynthetic system against photo-oxidative damage, but also precursors of abscisic acid, the major hormone regulates stress responses. To understand the response of carotenoid biosynthetic pathway to salt stress, the expression of the genes involved in carotenoid and ABA biosynthesis were compared in cultivated tomato Solanum lycopersicon cv. Moneymaker and its relative wild genotype S. pimpinellifolium (PI365967) together with the contents of carotenoids and ABA. The results showed that 11 of the 15 genes investigated were up-regulated and four unaltered in Moneymaker after 5 h of salt stress; whereas only four genes were up-regulated, four unaltered, and seven down-regulated in PI365967 after stress. Further comparison revealed that 11 salinity-induced genes were expressed significantly lower in Moneymaker than in PI365967 under normal condition, and 8 of them were induced to similar levels after salt stress. In consistence, ABA level was doubled in Moneymaker but kept consistent in PI365967 after salt stress, though the contents of neoxanthin, violaxanthin, [3-carotene, lutein, and total carotenoids were kept unchanged in both species. Since it is known that PI365967 is more tolerant to salt stress than Moneymaker, we proposed that the constitutive high level of carotenoid and ABA biosynthetic pathway under normal growth condition could be benefit to PI365967 for establishing the early response to salt stress. In addition, CrtR-bl and CrtR-b2 that encode [3-carotenoid hydroxylases were the only genes in carotenoid biosynthetic pathway that were up-regulated by salt stress in both species. The CrtR-b2 gene was cloned from both species and no essential difference was found in the encoded amino acid sequences. Transformation of CrtR-b2 to tobacco improved the seed germination under salt stress condition, indicating that the hydrolysis of β-carotenoid is the target of transcriptional regulation of the carotenoid biosynthesis in both tomato cultivar and wild relative. 展开更多
关键词 ABA carotenoid biosynthetic pathway gene expression salt stress TOMATO
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