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Studies on the Mechanism of Single Basal Application of Controlled-Release Fertilizers for Increasing Yield of Rice (Oryza sativa L.) 被引量:29
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作者 TANG Shuan-hu YANG Shao-hai +4 位作者 CHEN Jian-sheng XU Pei-zhi ZHANG Fa-bao AI Shao-ying HUANG Xu 《Agricultural Sciences in China》 CAS CSCD 2007年第5期586-596,共11页
This paper was to explore the mechanism of single basal application of controlled-release fertilizers for increasing yield of rice (Oryza sativa L.). Pot trials and cylinder trials were carried out from 2002 to 2005... This paper was to explore the mechanism of single basal application of controlled-release fertilizers for increasing yield of rice (Oryza sativa L.). Pot trials and cylinder trials were carried out from 2002 to 2005 to study the influences of single basal application of 3 controlled-release fertilizers on the changes of soil available N, root development, senescence and lodging resistance at late growth stages. Results showed that at 30 days after fertilization, single basal application of controlled-release fertilizers coated with vegetal-substance (CRF1) and polymer materials (CRF3) increased soil available N to 12.0 and 147.9%, respectively, in comparison to split fertilization of rice-specific fertilizer (RSF1). Treatments of the two CRFs obviously benefited the development of root system, resulting in greater rice root weights with extensive distribution and higher root activity. In addition, the two CRF treatments, in comparison to RSF1, enhanced chlorophyll consents of the flag leaves to 9.5 and 15.5%, and soluble protein up to 89.7 and 108.0% respectively. Application of the two CRFs also made the base of rice stems strong and large, declined the proportion of shoot and root, increased root depth index. Though relatively low K rate, single basal application of the CRF3 coated with NH4MgPO4 could also promote the development of root system, enhance root activity and some physiological functions of flag leaves. Based on these results, it was concluded that major mechanisms for increasing rice yield by single basal application of the CRFs should be attributed to grater soil available N supply, superior development of root systems, better nutrient absorption capacity, slower senescence and enhancement of lodging resistance at late stages. 展开更多
关键词 rice (Oryza sativa L.) single basal fertilization controlled-release fertilizer root system available nitrogen
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水稻一次性施用控释肥料增产机理探讨 被引量:52
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作者 唐拴虎 杨少海 +4 位作者 陈建生 徐培智 张发宝 艾绍英 黄旭 《中国农业科学》 CAS CSCD 北大核心 2006年第12期2511-2520,共10页
目的探讨水稻一次性施用控释肥增产机理。方法采用盆栽试验和网箱试验,研究了3种控释肥对土壤速效氮含量、水稻根系生长发育、后期衰老和抗倒伏能力的影响。结果与专用肥分次施用处理比较,一次性施用等养分的植物素包膜控释肥(CRF1)、... 目的探讨水稻一次性施用控释肥增产机理。方法采用盆栽试验和网箱试验,研究了3种控释肥对土壤速效氮含量、水稻根系生长发育、后期衰老和抗倒伏能力的影响。结果与专用肥分次施用处理比较,一次性施用等养分的植物素包膜控释肥(CRF1)、高分子材料包膜尿素复混肥(CRF3)显著提高了土壤速效氮含量,移栽30d以后平均含量分别高出12.0%和147.9%;明显促进根系生长,根系数量大、分布深广、活力增强;灌浆后期旗叶叶绿素含量分别提高9.5%和15.5%,可溶性蛋白提高89.7%和108.0%,CAT酶活性明显增加;茎基部粗壮,根深指数大,茎根比降低。即使施用低钾含量的磷酸铵镁包膜控释肥CRF2也能促进根系发育、提高根系活力、增强旗叶生理功能。结论水稻一次性施用控释肥增产主要机理表现为显著提高了氮素供应水平,明显促进水稻根系生长发育,强化根系吸收养分能力,延缓后期衰老速度,并显著改善了水稻抗倒伏能力。 展开更多
关键词 水稻 根系 一次性施肥 控释肥料 速效氮
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一次性全层施用控释肥对水稻根系形态发育及抗倒伏能力的影响 被引量:61
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作者 唐拴虎 徐培智 +2 位作者 张发宝 陈建生 谢春生 《植物营养与肥料学报》 CAS CSCD 北大核心 2006年第1期63-69,共7页
通过盆栽试验、网箱栽培试验研究了一次性全层施用控释肥对水稻根系形态发育及抗倒伏能力的影响。结果表明,采用等养分量的自研控释肥一次性施用(BNCRF)和国产包膜尿素复混肥一次性施用(BRCU)处理收获期根系重量比专用肥分次施用[S... 通过盆栽试验、网箱栽培试验研究了一次性全层施用控释肥对水稻根系形态发育及抗倒伏能力的影响。结果表明,采用等养分量的自研控释肥一次性施用(BNCRF)和国产包膜尿素复混肥一次性施用(BRCU)处理收获期根系重量比专用肥分次施用[SNRSF(ck)]处理分别增加26.56%~35.24%和17.99%~37.35%,比专用肥一次性施用(BNRSF)处理分别增加14.57%~23.24%和7.52%~24.34%;根系体积比SNRSF处理分别增加13.94%~41.77%和19.02%~21.40%,比BNRSF处理分别增加3.99%~26.54%和9.40%~16.40%;根系的深层分布比例、根深指数和茎基部都明显大于SNRSF处理。采用低钾含量的国产磷酸铵镁包膜控释肥(BLCRF)处理,其促根壮茎效果虽逊于高钾含量的BNCRF和BRCU处理,但收获期的根系重量仍较高钾含量的SNRSF处理增加10.16%~16.84%。说明一次性全层施用控释肥能明显促进水稻的根系生长发育,增加深层根数量,显著改善抗倒伏能力。 展开更多
关键词 水稻 一次性全层施肥 控释肥 根系 抗倒伏
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不同处理对兰州百合子球根系生长的影响 被引量:2
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作者 郝瑞杰 练从龙 《西北林学院学报》 CSCD 北大核心 2013年第2期105-108,共4页
为研究不同处理对兰州百合子球根系生长的影响,以兰州百合子球为试验材料,对不同处理下子球根数和根长进行了测定分析。结果表明:腐殖土/沙子(1∶1)是适宜百合子球基生根系发生的基质;栽培深度为子球高度2倍时能获得较多的基生根,栽培... 为研究不同处理对兰州百合子球根系生长的影响,以兰州百合子球为试验材料,对不同处理下子球根数和根长进行了测定分析。结果表明:腐殖土/沙子(1∶1)是适宜百合子球基生根系发生的基质;栽培深度为子球高度2倍时能获得较多的基生根,栽培深度与地平齐时可获得较长的根系;NAA溶液处理能促进子球生根,合适的NAA溶液浓度在1∶1 000到1∶500之间;轻划子球鳞茎盘能够提高基生根系的发生,其处理结果极显著高于对照处理;兰州百合子球根数与根长在生长过程中都表现出快-慢-快-慢的规律。 展开更多
关键词 兰州百合 子球 根系 根数 根长 生长规律
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Development of upland rice introgression lines and identification of QTLs for basal root thickness under different water regimes 被引量:3
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作者 Junzhou Li Deping Wang +6 位作者 Yan Xie Hongliang Zhang Guanglong Hu Jinjie Li Anyong Dai Lifeng Liu Zichao Li 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2011年第11期547-556,共10页
Introgression lines (ILs) are valuable materials for identifying quantitative trait loci (QTLs), evaluating genetic interactions, and marker assisted breeding. A set of 430 ILs (BC5F3) containing segments from u... Introgression lines (ILs) are valuable materials for identifying quantitative trait loci (QTLs), evaluating genetic interactions, and marker assisted breeding. A set of 430 ILs (BC5F3) containing segments from upland tropical japonica cultivar IRAT109 in a lowland temperate japonica cultivar Yuefu background were developed. One hundred and seventy-six polymorphic markers were used to identify introgressed segments. No segment from IRAT109 was found in 160 lines. Introgressed segments of the other 270 lines covered 99.1% of the donor genome. The mean number of introgressed donor segments per individual was 3.3 with an average length of 14.4 cM. QTL analysis was conducted on basal root thickness (BRT) of the 270 ILs grown under irrigated lowland, upland and hydroponic conditions. A total of 22 QTLs affecting BRT were identified, six QTLs (qBRT3.1, qBRT3.2, qBRT6.1, qBRTS.2, qBRT9.1, and qBRT9.2) were consistently expressed under at least two environments (location and water regime), and qBRT7.2 was a new BRT QTL identified under lowland conditions. IL255 containing qBRT9.1 showed an increase of 10.09% and 7.07% BRT over cultivar Yuefu when grown under upland and lowland conditions, respectively. Using a population of 304 F2:3 lines derived from the cross IL255 Yuefu, qBRT9.1 was validated and mapped to a 1.2 cM interval between RM24271 and RM566. The presence of qBRT9.1 explained 12% of BRT variation. The results provide upland rice ILs and BRT QTLs for analyzing the genetic basis of drought resistance, detecting favorable genes from upland rice, and rice drought resistance breeding. 展开更多
关键词 Upland rice Quantitative trait loci Introgression lines basal root thickness
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