首页> 外文学位 >STUDIES ON TILLERING ABILITY OF RICE UNDER PHOSPHORUS STRESS (SOLUTION CULTURE, DEFICIENCY).
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STUDIES ON TILLERING ABILITY OF RICE UNDER PHOSPHORUS STRESS (SOLUTION CULTURE, DEFICIENCY).

机译:磷胁迫下水稻分ILL能力的研究(溶液培养,亏缺)。

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摘要

A series of experiments were conducted in solution culture in the greenhouse, growth chamber, controlled environment room, and in the field on P-deficient rice soil at the Texas A&M University Agricultural Research and Extension Center near Beaumont. The objectives were the following: (1) develop screening techniques to identify tillering ability under P stress, (2) evaluate tiller development, grain yield and yield components of rice under P deficient and sufficient conditions, and (3) determine the heritability of tiller and panicle development under P stress.;Field experiments in P-deficient Beaumont clay soil (5 ppm P as determined by 1.0 M NH(,4)OAc-1.4 M HCL-0.01 M EDTA, pH 4.2) were conducted in 1982 and 1983. The design included two P levels, 0 and 45 kg P(,2)O(,5)/ha, with 19 cultivars in 1982 and 12 cultivars in 1983. Phosphorus application promoted tiller development and increased plant height, panicle weight, and grain yield. The plants receiving P exhibited earlier first tillering, heading, and maturity dates. The grain yield increase in the plots receiving P was due to the increase in panicle number. Grain number per panicle, filled grain percentage, and thousand filled grain weight were not statistically increased at the .05 probability level by the application of P. The high environmental effect may have masked the occurrence of cultivar x P level interactions.;Cultivars were classified as tolerant to low levels of soil P if their grain yield performance was similar whether grown under low or adequate soil P conditions. Eight crosses between P-deficiency tolerant and susceptible cultivars were evaluated for tillering response to soil P levels. Parents and F(,2)'s were grown under conditions of adequate and low P. The influence of environment on the cultivars appeared to be greater than the influence of genetic factors for the cultivars and environmental conditions used in these tests.;Screening rice for tolerance to P-deficiency, as exhibited by tillering ability, was best when plants were grown in a P-deficient nutrient solution in the greenhouse during the normal growing season. Studies indicated that higher tillering type cultivars could partially compensate for a mild P-deficient condition. Results also indicated that tiller production of each cultivar was markedly affected by the climate and the P level in the culture solution.
机译:在位于博蒙特附近的德克萨斯农工大学农业研究与推广中心的温室,生长室,可控环境室以及缺磷水稻土的田间进行溶液培养,进行了一系列实验。目的是:(1)开发筛选技术以鉴定P胁迫下的分till能力;(2)在缺乏和充分的条件下评估水稻的分er发育,籽粒产量和产量构成部分;以及(3)确定分till的遗传力缺磷的博蒙特黏土(1.0 ppm NH(,4)OAc-1.4 M HCL-0.01 M EDTA,pH 4.2测定的5 ppm P)于1982年和1983年进行了田间试验该设计包括两个磷水平,分别为0和45 kg P(,2)O(,5)/ ha,1982年有19个品种,1983年有12个品种。施磷促进了分development发育并增加了株高,穗重和谷物产量。接受磷的植物表现出较早的分till,抽穗和成熟日期。接受磷的地块的谷物产量增加是由于穗数增加。通过施用P在0.05概率水平下,每穗粒数,实粒率和千实粒重没有统计学上的增加。高环境效应可能掩盖了品种x P水平相互作用的发生。如果在低磷或充足土壤条件下生长,其谷物产量表现相似,则可耐受低磷水平的土壤。对耐缺磷品种和易感品种之间的八个杂交进行了分for对土壤磷水平的反应。亲本和F(,2)'s在足够低的磷条件下生长。环境对品种的影响似乎大于遗传因素对这些试验中所使用的品种和环境条件的影响。分till能力所显示的对磷缺乏的耐受性是在正常生长季节在温室中的磷缺乏营养液中种植植物时最好的。研究表明,分till类型较高的品种可以部分弥补轻度缺磷条件。结果还表明,每个品种的分till产量显着受气候和培养液中磷含量的影响。

著录项

  • 作者

    HUNG, HSING-HSIUNG.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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