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水稻控蘖增粒栽培高产与碳氮代谢及维管束的关系
引用本文:徐孟亮,王子立.水稻控蘖增粒栽培高产与碳氮代谢及维管束的关系[J].湖南师范大学自然科学学报,1995,18(4):52-57.
作者姓名:徐孟亮  王子立
作者单位:湖南师范大学生物系,湖南省生物研究所,湖南省慈利县农业局
摘    要:水稻控蘖增粒载培法与常规栽培法相比,秧苗叶片及叶鞘中氮含量,叶片中叶绿素含量明显高。而碳含量、C/N明显低,表出氮代谢优势;茎基部节间横截面维管束数量与总面积显著多或大,有利于培育健根多蘖壮秧和提高成穗率。

关 键 词:水稻  控蘖增粒  维管束  栽培  碳代谢  氮代谢

Study on Relation Between High Yield and Carbon-Nitrogen Metabolism and Vascular Bundle of Rice with Tiller-controlling Culture
Xu Mengliang, Wu Jianzhong.Study on Relation Between High Yield and Carbon-Nitrogen Metabolism and Vascular Bundle of Rice with Tiller-controlling Culture[J].Journal of Natural Science of Hunan Normal University,1995,18(4):52-57.
Authors:Xu Mengliang  Wu Jianzhong
Abstract:Compared with the rice conventional culture, the rice tiller-controlling culture shows different in carbon content, nitrogen content, chlorophyll content, and the number and area of vascular bundles of rice plant. At the seedling stage, the nitrogen contents in leaf and leaf sheath and chlorophyll content in leaf are relatively higher, but carbon content and C/N in them are much lower, so the nitrogen metaolism is superior. The number and total area of all vascular bundles of internode of stem base in horizontal crosssection are more or bigger. All those are favourable for raising vigorous seedlings which have vigorous and healthy roots and many tillers, and for improving panicle rate. After the seedlings are transplanted, nitrogen and chlorophyll contents become obviously lower,therefore, nitrogen metabolism is decreased, however, carbon content is increased and keep stable,C/N is higher, so the carbon metabolism is superior. The number and total area of all vascular bundles of internode of panicle neck base in horizontal cross-section are more or bigger. All these are advantageous for controlling tillers at tillering stage, bettering the structure of population, impelling spikelet development of individual plant, improving seed set rate and grain weight, coordinating the contraduction between the development of individual plant and that of population, and eventually increasing grain yield.
Keywords:rice tiller-controlling culture  nitrogen  carbon  chlorophyll  vascularbundle
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