• Title/Summary/Keyword: spikelet number

Search Result 145, Processing Time 0.027 seconds

Sorghum TCP transcription factor MULTISEED1 affects grain yield regulating at pedicellate spikelet fertility

  • Lee, Young Koung;Jiao, Yinping;Gladman, Nicholas;Chopra, Ratan;Burow, Gloria;Burke, John;Xin, Zhanguo;Ware, Doreen
    • Proceedings of the Korean Society of Crop Science Conference
    • /
    • 2017.06a
    • /
    • pp.25-25
    • /
    • 2017
  • Inflorescence architecture mainly contributes to final grain yield in crops. Sorghum inflorescence is basically composed of one fertile sessile spikelet (SS) and two infertile pedicellate spikelets (PS). To identify regulatory factors involved in the inflorescence architecture, we screened an EMS mutagenesis population from the pedigreed sorghum mutant library. We found inflorescent architecture mutants, named as multi-seed mutants, msd, with gained fertile ability in PS and also an increased number of floral branches. In natural sorghum populations, it is not common that are fertile. A detailed dissection of developmental stages of wild type and msd1 mutant described that the PS in wild type do not have floral organs, including ovary, stigma, filament and anther, while the msd1 mutants generate intact floral organ in the sessile spikelet. We found MSD1 encoded a TCP transcription factor using bulk segregant analysis (BSA) of F2 population, and was a strongly enriched expression during inflorescence developmental stages. We proposed that MSD1 functions to suppress floral organ maintenance at PS during inflorescence development in Sorghum. To explore the regulatory network associated with PS fertility, whole genome expression profiling was performed at 4 different developmental stages in 6 various tissue types between wild type and msd1. Taken together, we demonstrated that MSD1 was involved in the plant hormone and maybe influenced program cell death in PS via the activation of plant hormonal pathway.

  • PDF

Effects of Seedling Age on Growth and Yield of Machine Transplanted Rice in Southern Plain Region

  • Kim, Sang-Su;Kim, Bo-Kyeong;Choi, Min-Gyu;Back, Nam-Hyun;Choi, Weon-Young;Lee, Sean-Yong
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.44 no.2
    • /
    • pp.122-128
    • /
    • 1999
  • Three rice cultivars, Namweonbyeo (early maturing), Hwaseongbyeo (medium maturing) and Dongjinbyeo (medium-late maturing) were trans-planted with 3 different seedling ages to investigate their growth habits and to improve the cultural method in paddy fields in the southern plain area of the Honam region in 1993. The 10-day old seedlings had more vigorous elongation of plant height and higher tillering ability but lower effective tiller rate, when compared with 35-day or 40-day old seedlings. Leaf area index and top dry weight were lower in 10-day old seedlings up to 40 days after transplanting but thereafter, were not different among seedlings ages. CGR was later in 10-day old seedlings, up to 30 days after transplanting, but in 30 to 40 days after transplanting, it was reversed. RGR was the highest in infant seedlings to 40 days after trans-planting, while in 50 days after transplanting, it was reversed. Panicle number and spikelet number per square meter were the highest in 40-day old seedlings, next highest in 35-day old seedlings and the lowest and in adult seedlings up to 40 days after transplanting, while spikelet number per panicle was vice versa. Milled rice yield did not vary significantly by seedling ages, but among the varieties, it was less in Hwaseongbyeo compared with Naweonbyeo and Dongjnbyeo.

  • PDF

A taxonomic study on genus Rhynchospora Vahl in Korea (한국산 골풀아재비속 3종의 분류학적 검토)

  • Oh, Yong Cha;Lee, Chang Shook
    • Korean Journal of Plant Taxonomy
    • /
    • v.33 no.4
    • /
    • pp.393-409
    • /
    • 2003
  • Morphological and anatomical characters of selected 3 taxa of Rhynchospora were reexamined. The epidermal patterns of achene and leaf were investigated using a scanning electron microscope (SEM) and a light microscope (LM). Morphological characters such as length and width of bract, spikelet, scale, achene, stem, leaf and leaf sheath, and shape of inflorescence, spikelet, scale, apex of scale, perigynium and achene, and number of stigma and anatomical characters (transectional shape of the stem, and leaf: vascular bundles in stem and leaf epidermal patterns: shape of fundamental epidermal cell and cell wall, type of silica body, subsidiary cell shape, size and frequency of stomatal complex of leaf) were useful for the identification. Keys based on data were presented here.

Increasing plant yield by modulating root hair development in Brachypodium distachyon

  • Kim, Chul Min
    • Korean Journal of Agricultural Science
    • /
    • v.47 no.2
    • /
    • pp.305-313
    • /
    • 2020
  • Root hair development has the potential to increase crop yields and at the same time to decrease fertilizer use, which will be required in the next 30 years to meet the demand for crop-derived commodities in a world with decreasing available natural resources. Root hair defective six (RHD6) encoding a basic helix-loop-helix transcription factor, is associated with root hair differentiation, and its roles are root hair initiation and elongation. Grass plants, rice and Brachypodium have been used as model plants to study the gene function of the root hair defective six like (RSL) subfamily which is orthologous to AtRHD6. The RSL subfamily has an identical gene function with AtRHD6 which is involved with root hair differentiation as well. Plants with longer root hairs within a species should have an improved Pi uptake efficiency; therefore, we would expect that a plant with a high Pi uptake could contribute to increasing the plant yield. We achieved increased root hair length by manipulating the RSL subfamily genes. It is expected that in these transgenic plants, the long root hairs would be sufficient to improve the Pi uptake and hence improve biomass and yield component (tiller, spikelet number, and spikelet weight) of the plant. Here, we demonstrate that Brachypodium transgenic plants overexpressing the BdRSL subfamily genes have an improved biomass and grain yield. The result of this study could be applied to important crop plants like rice.

Estimation of Spikelet Number of Rice with Shoot Dry Weight and Nitrogen Nutrition Index (질소영양지수와 지상부 건물중을 이용한 벼의 단위면적당 영화수 추정)

  • 이변우;최일선
    • Proceedings of The Korean Society of Agricultural and Forest Meteorology Conference
    • /
    • 2001.06a
    • /
    • pp.97-100
    • /
    • 2001
  • 벼의 수량은 일차적으로 결정되는 단위면적당 영화수와 출수기 전후의 광합성량과 동화산물의 이삭으로의 전류에 의해 결정되는 등숙율에 의해 최종 결정된다. 또한, 단위면적당 영화수의 증가는 수량증대에 중요한 역할을 하며(Ying et al., 1998; Kropff, et al., 1994a), 단위면적 당 영화수는 벼 수량변이의 약 80% 이상을 설명할 수 있다고 하였다(Yoshida and Parao, 1976).(중략)

  • PDF

Relation of the Fertility and Grain Weight of Wheat and Barley to their Spike Differentiation and Development (대소맥에 있어서 소수 및 소화의 분화, 발육정도가 임성 및 립중에 미치는 영향)

  • 남윤일;하용웅
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.27 no.2
    • /
    • pp.116-122
    • /
    • 1982
  • In three diverse wheat and one barley cultivars were used to examine the relation of the spikelet and floret differentiation to fertility and an winter wheat Norin 61 was used to examine the spikelet size gradients in the mature ear in relation to their grain development. The greatest number of grains and florets per spikelet, and the heaviest grains occurred in the low-mid part of the ear. Within the spikelets, the 2nd grain from the base was heavier than the I st or the 3rd one. In this region, the fertility of the 1 st floret was 97%, the 2nd 93%, the 3rd 88%, and 4th floret was 15%. The fertility of the wheat and barley was closely related to spikelet and floret differentiation. Barley spikelets was fertile as their differentiation stage was X that is 25 days before heading. Wheat florets were fertile as their differentiation stage was X that is 15-20 days before heading. But, they were sterile or reduced in fertility if they were not reached to the stage X.

  • PDF

Establishment of Economic Threshold Caused by Rice Sheath Blight Disease severity (벼 잎집무늬마름병의 발생정도에 따른 경제적 방제수준 설정)

  • Shim, Hongsik;Choi, Hyo Won;Yeh, Wan-Hae;Lee, Yong-Hwan
    • The Korean Journal of Pesticide Science
    • /
    • v.19 no.4
    • /
    • pp.394-398
    • /
    • 2015
  • This research was performed to establish economic threshold (ET) for rice sheath blight disease with the cultivar Odeabyeo. Total yield and yield components, such as the panicle number per hill, the spikelet per panicle, the percent ripened grain and the thousand grain weight were evaluated depending on the disease severity of sheath blight on rice, respectively. Significant negative correlation between the percent of diseased hill (PDH) and total yield was observed (r = -0.93). Moreover, negative correlation coefficients were found between PDH and spikelet per panicle, and percent ripened grain (r = -0.66 and -0.77, respectively). There were no correlations between PDH and the panical number per hill, and a thousand grain weight, respectively. In this study, economic threshold level on sheath blight disease on rice was established on 7.8% of PDH.

Effect of Planting Density and Nitrogen Level on Growth and Yield in Heavy Panicle Weight Type of Japonica Rice

  • Kim, Bo-Kyeong;Kim, Hyun-Ho;Ko, Jae-Kwon;Shin, Hyun-Tak
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.44 no.2
    • /
    • pp.106-111
    • /
    • 1999
  • To investigate the effects of planting density and nitrogen level on growth and yield potential of newly bred heavy panicle japonica rice with large grain (Iksan 435 and Iksan 438) or many spikelets per panicle(HR14022-21-8-4 and HR14022-21-8-6), four heavy panicle type rices and two many panicle type rices(Dongjinbyeo and Donganbyeo) as the checks were planted under standard planting density (30$\times$15 cm) and dense planting density (15$\times$15 cm) with two nitrogen levels of standard nitrogen level(110 kg h $a^{-1}$) and heavy nitrogen level(165 kg h $a^{-1}$). Effective tiller rate decreased in dense planting or heavy nitrogen, when compared to standard nitrogen and planting, while leaf area index and to dry weight increased in dense planting or heavy nitrogen. Tiller numbers and panicle numbers were more increased by dense planting than heavy nitrogen, whereas spikelet numbers were more increased by heavy nitrogen than dense planting. Ripened grain ratio was slightly lower only in dense planting. 1,000 grain weight in brown rice was not significantly different in dense planting or heavy nitrogen. Milled rice yield was highest in heavy nitrogen with standard planting for heavy panicle type rice, while yield for many panicle type rice was highest in heavy nitrogen with dense planting, suggesting that many panicle type rice possesses higher adapt-ability for dense planting than heavy panicle type rice. Path coefficient analysis revealed that top dry weight, spikelet number and grain weight were the greatest positive contributors to yield, whereas tiller number was negative to yield.d.

  • PDF

N Top-Dressing and Rice Straw Application for Low-Input Cultivation of Transplanted Rice in Japan

  • Cho, Y.S.;Kobata, T.
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.47 no.4
    • /
    • pp.273-278
    • /
    • 2002
  • An efficient low-input system (LIS) for fertiliser use in rice cultivation is necessary to reduce fossil energy use and pollution. Japanese people like Japonica rice, especially cv. Koshihikari. However, it has very low lodging resistance in Japanese weather condition. Our objective was to develop a LIS with the minimum sacrifice of grain yield in rice. Koshihikari was grown using conventional fertilization as a control (CON) with 4 g N $m^{-2}$., 8g $P_2$ $O_{5}$ $m^{-2}$ and 8 g $K_2$O $m^{-2}$ as a basal fertilizer dressing. It was compared with a low fertilizer treatment (LF) with only 4 g $P_2$ $O_{5}$ $m^{-2}$ as a basal dressing in the first year and no basal phosphorus fertilizer in the second year. Chopped rice straw was incorporated into the soil before the cropping season in both years. Fertilizer of 4 g N $m^{-2}$ was top-dressed at 15 days before heading in CON plots and 30 days before heading in LF plots in both years. Lodging was significantly less in LF than in CON plots, however, no rice straw effect was found in low fertilized condition. Grain yields in LF plots were reduced by 15-16% below those of CON plots. Lower yields in LF plots were associated with a reduced number of spikelets per unit area. However, big spikelet size was acquired in LF by 10 days earlier N top dressing than CON plots. A close relationship was found between spikelet numbers and N content of the plant at heading, and between grain yield or shoot dry weight and N content of the plant at maturity. Regardless of the fertilizer application methods, N use efficiency for the number of spikelets, final total dry matter and grain yield was essentially identical among fertilizer treatments. The reduced growth and yield in the LF plots resulted from low absorption of nitrogen. Conclusively, LIS can drastically reduce chemical fertilizer use and facilitate harvest operations by reducing lodging with some yield reduction..