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91.
92.
Yoshitaka Hara 《Plant Production Science》2017,20(4):406-411
Seed coating with molybdenum compounds improves seedling establishment for rice, wheat, barley, and soybean when such seeds were sown under flooded conditions. Tungsten belongs to the same chemical group as molybdenum in the periodic table, and similar to molybdenum, inhibits the generation of sulfide ions. Here, the effects of tungsten and molybdenum containing seed coatings on seedling establishment under flooded conditions were compared using rice, wheat, barley, and soybean. In rice, the effects of tungsten compounds on seedling establishment varied. Tungsten trioxide had little effect but tungstic acid and ammonium phosphotungstate significantly improved seedling establishment when the amounts were at least .1–.2 mol W kg?1. Although the effect of tungsten coating varied depending on the compound used, ammonium phosphotungstate, along with other tungsten compounds, improved seedling establishment in a manner comparable with that of molybdenum compounds. For wheat and barley, ammonium phosphotungstate treatment resulted in a significant increase in establishment that was only slightly less than the results observed using molybdenum compounds. Tungstic acid and ammonium phosphotungstate treatments improved soybean establishment in a significant manner that was comparable with those of molybdenum compounds. Collectively, these results suggest that tungsten compounds, as well as molybdenum compounds, improve seedling establishment under flooded conditions. 相似文献
93.
Akira Fukushima Hisatoshi Ohta Narifumi Yokogami Naoto Tsuda Akiko Yoshida Junko Kyozuka 《Plant Production Science》2017,20(4):485-489
The genes TAWAWA1 (TAW1) and ABERRANT PANICLE ORGANIZATION1 (APO1) increase the number of spikelets per panicle (SN). In the present study, we examined the effects of these genes on morphological traits, yield, and yield-related traits including yield components using the near-isogenic lines (NILs) in the genetic background of a japonica rice variety, Koshihikari – NIL-taw1, NIL-apo1-D3, and NIL-apo1-D4 – in a field experiment. The SN and total number of spikelets per area of the three NILs were larger than those of Koshihikari. However, the yield of the three NILs did not exceed that of Koshihikari due to their low filling ability. Interestingly, our field experiments indicated that TAW1 did not affect the diameter of internodes and the PN, whereas APO1 decreased the PN and increased the diameter of internodes. These results suggest that TAW1 and APO1 differently affect yield-related traits. 相似文献
94.
This study aimed to investigate the possible causes for inconsistent performances of upland New Rice for Africa (NERICA) varieties in uplands and lowlands, while identifying important determinants in grain yield under deficient soil moisture. We compared the growth and yield of NERICA 1 and NERICA 5 to those of Yumenohatamochi, a Japanese upland variety, and Hinohikari, a Japanese lowland variety, subjected to different water management regimes (continually flooded, supplementary irrigation, and non-irrigation). Under conditions of deficient soil moisture, panicle number per square meter, spikelet number per panicle, and 1000-grain weight of NERICAs decreased, whereas the panicle number of the Japanese varieties experienced little change. In contrast, the grain filling ratio was unaffected by water management, irrespective of variety. The primary source of yield reduction under low soil water conditions was a decrease in spikelet number per panicle, and water stress intensity was the primary factor for the degree of this reduction. Variation in the abortion of secondary rachis-branches caused differences between NERICAs in their spikelet number response to soil moisture deficiency. The inconsistency in NERICA performance across uplands vs. lowlands can be partially attributed to variation in yield response to low soil water conditions. Moreover, water stress intensity and the presence of a water gradient along the vertical soil profile may combine to affect the fluctuation in NERICA performance under upland conditions. 相似文献
95.
豫南“籼改粳”理论与技术研究进展 总被引:1,自引:0,他引:1
简要介绍了豫南稻区"籼改粳"的基本情况和在理论技术方面的研究进展。高温、稻瘟病和纹枯病、三代三化螟危害是豫南粳稻产量低、品质差的三大障碍因子,而播期早是产生障碍的根源,推迟粳稻播期是"籼改粳"的关键技术;豫南"籼稻-小麦"轮作存在制度缺陷,推迟粳稻播期可以得到修复,因秧龄过长而减产、机插秧以及抛秧难以利用等问题得到解决;增产提质、机械化、轻简化、规模化生产是"籼改粳"的必然选择;"东粳西移"是解决豫南粳稻品种利用的有效途径;机插秧、抛秧有利于实现粳稻推迟播种,而"泥质法"育秧解决了高温条件下育秧的问题,提高了机插秧、抛秧的秧苗素质;粳稻晚播稻瘟病、纹枯病和三化螟已不再是豫南"籼改粳"的毁灭性病虫害,恶苗病、干尖线虫病、稻蓟马、稻曲病上升为主要病虫害;水稻两段栽培技术是根据水稻高产稳产生长发育规律,分别从群体、形态和机能构建三个方面进行栽培设计,按照营养生长和生殖生长两个阶段进行定向培育的一种栽培方法,不仅高产稳产,而且减肥减药。 相似文献
96.
【目的】为探讨水稻幼苗根系NH_4~+、K~+吸收的交互作用,深化水稻养分吸收理论,【方法】采用溶液培养的方法,对低钾及高钾浓度下水稻在有铵和无铵时的K~+吸收动力学特征进行了研究,对不同钾浓度下水稻根系NH_4~+的吸收速率进行了比较。【结果】1)当K~+0.2 mmol/L时,水稻根系通过高亲和转运系统吸收K~+服从Michaelich-Menten动力学方程;NH_4~+的存在显著降低K~+的最大吸收速率(Vmax),且降幅随着NH_4~+浓度的增加而增大;NH_4~+对水稻根表载体与K~+的亲和力(Km)影响较小,在1.62 mmol/L NH_4~+浓度下,水稻品种齐粒丝苗和沪科3号的Km分别下降了12.33%和16.46%,远低于Vmax 47.30%和39.21%的降幅。2)当K~+0.5 mmol/L时,水稻根系K~+低亲和转运系统发挥作用,K~+吸收速率随浓度的增加而不断增加,呈不饱和特征;但在相同K~+浓度下,水稻根系的K~+吸收速率随NH_4~+浓度的增加而下降。3)水稻根系对NH_4~+的吸收速率随着NH_4~+浓度的增加而增加;在相同NH_4~+浓度下,水稻根系对NH_4~+的吸收速率受K~+浓度的影响很小。【结论】NH_4~+抑制水稻苗期根系K~+的高亲和转运和低亲和转运,NH_4~+对K~+高亲和吸收的影响主要是由于铵竞争细胞膜上的钾载体所致;外界K~+浓度的变化对水稻幼苗的NH_4~+吸收速率影响很小。水稻铵钾的交互作用主要表现在NH_4~+对K~+吸收的抑制作用。 相似文献
97.
以中浙优1号和甬优1540为材料,采用栽培池培养试验,研究缩二脲对水稻出苗率及叶片白化特性的影响。结果表明,缩二脲含量在0~2.0%时对水稻的出苗率和秧苗生长量影响较小;缩二脲含量高于4.0%时显著降低了出苗率,显著抑制秧苗的生长,中浙优1号和甬优1540干物质量分别降低24%和17%;水稻叶片对缩二脲比较敏感,缩二脲造成叶片发白的叶位主要在第2叶,第3叶叶片发白比例较低,但是当缩二脲含量达到4.0%时,第3叶叶片发白比例也开始上升;当缩二脲含量过量时,显著降低叶绿素含量以及叶绿素a/叶绿素b比值。化肥中的缩二脲是引起直播稻出现白化苗的重要原因,在直播稻和水稻育秧中,应选用缩二脲含量较低的肥料。 相似文献
98.
本研究建立了一种基于雷达图分析稻米食味评价的新方法.该方法选择胶稠度、碱消值、粒型、直链淀粉含量和蛋白质含量等5个对稻米食味品质影响较大的理化指标作为雷达图分析的评价指标.各个评价指标经无量纲化处理后用于绘制雷达图.为消除指标排列顺序不同引起的差异,本文采用雷达图的平均周长和平均面积作为特征向量构建评价参数,并对10个参试样品的食味品质进行综合评价.结果表明,采用本文建立的雷达图分析法得到的食味评价排序与常规感官评价法的排序基本一致,表明本文建立的雷达图分析法适用于稻米食昧品质的初步评价. 相似文献
99.
100.