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Χ灾绷吹矸酆康挠跋焓钦?,直接影响比间接影响大。Study on the correlation between rice quality and agronomic traits of quality riceNIE Cheng rong, WEN Yu hui, WANG Yun bo, CHEN Ming zhong,LI Mei, LIU Dao quan(Agronomy Department, Foshan University , Nanhai 528231,China)The correlative analy 相似文献
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Time course of grain filling pattern in two rice (Oryza sativa L.) cultivars, grown under normal and low light intensities, was studied. The number of spikelets, partially filled grains and high density grains were monitored at a 5 day interval during grain filling period from uniform panicles tagged at anthesis. The low light tolerant cultivar Swarnaprabha had more high density grains and less partially filled grains throughout the grain filling period and at harvest compared to cultivar Ratna under both normal and low light intensities. Further, the opening of spikelets in two flushes in Swarnaprabha seemed to result in a more efficient resource allocation and hence better yield as compared to Ratna, in which the opening of spikelets was in a single flush on day 10. 相似文献
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特优175高产结构分析和配套栽培技术探讨 总被引:1,自引:0,他引:1
特优175分蘖力中强、穗大粒重、株型理想、高产稳产.经调查分析,其高产结构中,以每穗结实粒数的变异(cv=17.20%)最大,与产量相关最密切(r=0.591 1**,对产量的通径(p=1.035 6)和净贡献率(pr=0.612 1)最大;其次为有效穗(cv=10.40%,p=0.709 5,r=0.184 4,pr=0.130 8);千粒重是品种的稳定性状,对产量的贡献有限.每公顷产量7 500 kg左右的适宜产量结构为:每公顷250万穗,每穗结实120粒、千粒重28 g左右.在保持一定的穗数下,较高的每穗结实粒数是高产栽培的主攻重点.配套栽培技术是:(1)适时播种,培育壮秧;(2)适时移栽,合理密植(每公顷基本苗150~180万);(3)合理调控水肥,每公顷施纯氮150~180 kg,氧化钾120~160 kg,五氧化二磷60~80 kg;(4)综合防治病虫害. 相似文献
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对N×特青示范田中试区与肥料试验田各处理小区稻株分析结果表明:抽穗后,亚种间杂交稻N×特青比常规稻特青干物质生产能力强,灌浆速度快;地上部各器官占植株干重比例,前者叶片比重大于茎,后者茎比重大于叶。亚种间杂交稻对肥料反应敏感,抽穗后,干物质累积,植株高度,每穗总粒数和粒重均随施肥量增加而增加,在高肥区有利于进一步提高产量,但增施氮肥后,灌浆速度明显滞后。 相似文献
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以金优桂99、W6154S/特青、香S/GER-1等杂交组合为材料,从分蘖节位、茎杆粗细、穗粒结构等方面探讨“控蘖法”对杂交水稻的增产原因。 相似文献
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加快淮北地区杂交粳稻发展的几个问题 总被引:2,自引:0,他引:2
回顾了淮北地区十多年来杂交粳稻示范推广的发展过程,分析了影响杂交粳稻发展的主要原因,并论述了加快该地区杂交粳稻发展的几个主要问题。 相似文献
8.
光敏核不育水稻选育与利用的几个问题讨论 总被引:4,自引:0,他引:4
对现有光敏核不育材料进行了分类,分为4种遗传类型;其中,温光弱感到光敏核不育系是最为理 想的遗传工具,并就其选育途径和选择“粳不籼恢”繁殖制种技术体系进行了论证. 相似文献
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Yohei Kato 《Pesticide biochemistry and physiology》2004,79(2):64-73
A hydrophilic form of acetylcholinesterase (AChE) was purified from N-methyl carbamate susceptible (SA) and highly N-methyl carbamate-resistant (N3D) strains of the green rice leafhopper (GRLH), Nephotettix cincticeps Uhler. Both of purified AChE from SA and N3D strains displayed the highest activities toward acetylthiocholine (ATCh) at pH 8.5. In the SA strain, the optimum concentrations for ATCh, propionylthiocholine (PTCh), and butyrylthiocholine (BTCh) were about 1 × 10−3, 2.5 × 10−3, and 1 × 10−3 M, respectively. However, in the N3D strain, substrate inhibition was not identified for ATCh, PTCh, and BTCh to 1 × 10−2 M. The Km value in the SA strain was 51.1, 39.1, and 41.6 μM and that in the N3D strain was 91.8, 88.1, and 85.2 μM for ATCh, PTCh, and BTCh, respectively. The Km value in the N3D strain indicated about 1.80-, 2.25-, and 2.05-fold lower affinity than that of the SA strain for ATCh, PTCh, and BTCh, respectively. The Vmax value in the SA strain was 70.2, 30.5, and 4.6 U/mg protein and that in the N3D strain was 123.0, 27.0, and 14.5 U/mg protein for ATCh, PTCh, and BTCh, respectively. The Vmax value in the N3D strain was 1.75- and 3.15-fold higher for ATCh and BTCh than that in the N3D strain. However, it was 1.13-fold lower for PTCh. The increased activity of AChE in the N3D strain is due to the qualitatively modified enzyme with a higher catalytic efficiency. The bimolecular rate constant (ki) for propoxur was 27.1 × 104 and 0.51 × 104 M−1 min−1 in the SA and N3D strain and that for monocrotophos was 0.031 × 104 and 2.0 × 104 M−1 min−1 in the SA and N3D strain. AChE from the N3D strain was 53-fold less sensitive than SA strain to inhibition by propoxur. In contrast, AChE from the N3D strain was 65-fold more sensitive to inhibition by monocrotophos than AChE from the SA strain. This indicated negatively correlated cross-insensitivity of AChE to propoxur and monocrotophos. 相似文献