Effects of Cytoplasmic Sterility on Roots and Yield of Nitrogen Sources in Rice.

IF 4 2区 生物学 Q1 PLANT SCIENCES
Rong Liu, Qin Wang, Xiyuan Wang, Shengmin Yan, Guotao Yang, Peng Ma, Yungao Hu
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Abstract

Rice is an important food crop, acting as the staple food for more than 50% of the global population. We selected seedlings (two sterile male lines: WA803A and JW803A) that had different cytoplasmic but the same nuclear composition and were heterogeneous. The maintainer line 803B was also used. We aimed to study their nitrogen uptake rate in different concentrations of NH4+ and NO3- and explore the differences in nitrogen uptake efficiency between different cytoplasmic genes. The results showed a significant difference in the nitrogen uptake rate for different seedlings. With ammonium nutrition, the nitrogen uptake efficiency of the JW cytoplasm was significantly higher than that of the WA cytoplasm. In low concentrations of ammonium nitrogen, the JW cytoplasm had an additive effect to the nuclear gene regulation of ammonium uptake. The JW cytoplasm's ammonium nitrogen absorption effect on nuclear gene regulation was higher than that of the WA cytoplasm. The effect of the WA and JW cytoplasms on the nitrate uptake rate was not significant, and the nuclear gene regulation of both cytoplasms was reduced by absorbing nitrate. Under nitrogen deficiency conditions, the material output and conversion rate of the JW-type cytoplasmic hybrid rice combination was relatively high, significantly higher than those of other cytoplasmic combinations. Under medium nitrogen conditions, the material output and conversion rate of the (N2) W-type hybrid rice combination were significantly higher than those of the other cytoplasmic combinations. The yield of JW-type rice first increased and then decreased with the increase in the nitrogen application rate and was highest, 8195.55 kg/hm2, under the N2 treatment.

细胞质不育性对水稻根系及氮素源产量的影响。
水稻是一种重要的粮食作物,是全球50%以上人口的主食。选用细胞质不同但核组成相同的不育雄系WA803A和JW803A。维护线路803B也被使用。我们旨在研究它们在不同浓度NH4+和NO3-下的氮吸收速率,并探讨不同细胞质基因对氮吸收效率的差异。结果表明,不同幼苗的氮素吸收率存在显著差异。在铵态营养条件下,JW细胞质对氮的吸收效率显著高于WA细胞质。在低浓度铵态氮胁迫下,JW细胞质对核基因对铵态氮吸收的调控具有加性效应。JW细胞质对核基因调控的铵态氮吸收作用高于WA细胞质。WA和JW细胞质对硝酸盐吸收速率的影响不显著,吸收硝酸盐降低了两种细胞质的核基因调控。缺氮条件下,jw型细胞质杂交水稻组合的物质产量和转化率较高,显著高于其他细胞质组合。中氮条件下,(N2) w型杂交稻组合的物质产量和转化率显著高于其他细胞质组合。jw型水稻产量随施氮量的增加先升后降,其中N2处理产量最高,为8195.55 kg/hm2。
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来源期刊
Plants-Basel
Plants-Basel Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.50
自引率
11.10%
发文量
2923
审稿时长
15.4 days
期刊介绍: Plants (ISSN 2223-7747), is an international and multidisciplinary scientific open access journal that covers all key areas of plant science. It publishes review articles, regular research articles, communications, and short notes in the fields of structural, functional and experimental botany. In addition to fundamental disciplines such as morphology, systematics, physiology and ecology of plants, the journal welcomes all types of articles in the field of applied plant science.
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