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玉米制种灵在制种田上增产效果的研究
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作者 金石芬 张宝权 +1 位作者 周凤兰 田淑芳 《延边农学院学报》 1996年第4期218-221,共4页
玉米制种灵是我院高新技术所研制并生产的多功能高效玉米生长调节合剂。其主要功能是改善株型结构,提高生理效应,促进根和叶的生长发育,加强根的吸收能力,增强光合产物向果穗转移,降低成熟期含水量2—5%,一般可增产10%以上。
关键词 玉米 制种灵 调节合剂 生理效应 制种
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玉米制种促熟优质增产良药——玉米制种灵
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作者 田淑芳 周凤兰 《农村天地》 1996年第1期17-17,共1页
玉米在我国农业和粮食生产上占有举足轻重的地位。玉米杂交种在玉米生产上起着关键性作用。由于玉米自交系长势弱和某些不良条件的影响,玉米制种产量不高不稳,种子质量也不理想。为此,吉林市农科院高新技术研究所在承担国家科委重点课... 玉米在我国农业和粮食生产上占有举足轻重的地位。玉米杂交种在玉米生产上起着关键性作用。由于玉米自交系长势弱和某些不良条件的影响,玉米制种产量不高不稳,种子质量也不理想。为此,吉林市农科院高新技术研究所在承担国家科委重点课题“植物化控工程研究”过程中,研制并开发了一种玉米制种促熟、优质、增产良药——玉米制种灵。玉米制种灵是以促进为主的多功能高效玉米生育调节合剂。它在生育中期只喷1次。 展开更多
关键词 玉米制种 制种灵 玉米生产 玉米自交系 玉米杂交种 粮食生产 种子质量 调节合剂 制种产量 促熟
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The evolution of complex brains and behaviors in African cichlid fishes 被引量:1
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作者 Caroly A.SHUMWAY 《Current Zoology》 SCIE CAS CSCD 北大核心 2010年第1期144-156,共13页
In this review, I explore the effects of both social organization and the physical environment, specifically habitat complexity, on the brains and behavior of highly visual African cichlid fishes, drawing on examples ... In this review, I explore the effects of both social organization and the physical environment, specifically habitat complexity, on the brains and behavior of highly visual African cichlid fishes, drawing on examples from primates and birds where appropriate. In closely related fishes from the monophyletic Ectodinii clade of Lake Tanganyika, both forces influence cichlid brains and behavior. Considering social influences first, visual acuity differs with respect to social organization (monogamy versus polygyny). Both the telencephalon and amygdalar homologue, area Dm, are larger in monogamous species. Monogamous species are found to have more vasotocin-immunoreactive cells in the preoptic area of the brain. Habitat complexity also influences brain and behavior in these fishes. Total brain size, telencephalic and cerebellar size are positively correlated with habitat complexity. Visual acuity and spatial memory are enhanced in cichlids living in more complex environments. However habitat complexity and social forces affect cichlid brains differently. Taken together, our field data and plasticity data suggest that some of the species-specific neural effects of habitat complexity could be the consequence of the corresponding social correlates. Environmental forces, however, exert a broader effect on brain structures than social ones do, suggesting allometric expansion of the brain structures in concert with brain size and/or co-evolntion of these structures [Current Zoology 56 (1): 144-156, 2010]. 展开更多
关键词 FISH EVOLUTION BRAIN Behavior Social organization Habitat complexity
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