• 제목/요약/키워드: rice mutants

검색결과 133건 처리시간 0.021초

A Short-chain Dehydrogenase/reductase Gene is Required for Infection-related Development and Pathogenicity in Magnaporthe oryzae

  • Kwon, Min-Jung;Kim, Kyoung-Su;Lee, Yong-Hwan
    • The Plant Pathology Journal
    • /
    • 제26권1호
    • /
    • pp.8-16
    • /
    • 2010
  • The phytopathogenic fungus Magnaporthe oryzae is a major limiting factor in rice production. To understand the genetic basis of M. oryzae pathogenic development, we previously analyzed a library of T-DNA insertional mutants of M. oryzae, and identified ATMT0879A1 as one of the pathogenicity-defective mutants. Molecular analyses and database searches revealed that a single TDNA insertion in ATMT0879A1 resulted in functional interference with an annotated gene, MGG00056, which encodes a short-chain dehydrogenase/reductase (SDR). The mutant and annotated gene were designated as $MoSDR1^{T-DNA}$ and MoSDR1, respectively. Like other SDR family members, MoSDR1 possesses both a cofactor-binding motif and a catalytic site. The expression pattern of MoSDR1 suggests that the gene is associated with pathogenicity and plays an important role in M. oryzae development. To understand the roles of MoSDR1, the deletion mutant ${\Delta}Mosdr1$ for the gene was obtained via homology-dependent gene replacement. As expected, ${\Delta}Mosdr1$ was nonpathogenic; moreover, the mutant displayed pleiotropic defects in conidiation, conidial germination, appressorium formation, penetration, and growth inside host tissues. These results suggest that MoSDR1 functions as a key metabolic enzyme in the regulation of development and pathogenicity in M. oryzae.

Different Physiological Response to Salt in Salt Tolerant Rice Mutants Induced by Gamma-Mutagenesis

  • Jang, Duk-Soo;Song, Mira;Kim, Sun-hee;Kim, Jin-Baek;Kim, Sang Hoon;Ha, Bo-Keun;Kang, Si-Yong;Kim, Wook;Kim, Dong Sub
    • 방사선산업학회지
    • /
    • 제5권3호
    • /
    • pp.259-266
    • /
    • 2011
  • When plants undergo stress, Reactive oxygen species (ROS) which remove bad elements such as mildew and virus is activated in plant body. However, if ROS is excessively increased, plant will be harmed itself by destruction of cell and signal system and phenomenon of lipid peroxidation. In order to identify content of lipid peroxidation and activity of some enzymes scavenging ROS, phenotypical and physiological analysis was performed with two mutant lines, Till-II-877 and Till-II-894, comparing with cv. Dongan (WT). In phenotype analysis, two mutant lines give to well-conditioned growth better than WT in since 5 days after salt treatment. In enzyme activities, there was a modest difference in the content of catalase (CAT) and peroxidase (POD) between Till-II-877 and Till-II-894, two mutant lines showed high levels in CAT contents than WT. However, they express low levels in POD contents. In MDA analysis, the content of Till-II-877 was higher than that of WT, but Till-II-894 was lower. This result indicates that two mutants have different mechanism against salt stress.

Characterization of Type VI Secretion System in Xanthomonas oryzae pv. oryzae and Its Role in Virulence to Rice

  • Choi, Yeounju;Kim, Namgyu;Mannaa, Mohamed;Kim, Hongsup;Park, Jungwook;Jung, Hyejung;Han, Gil;Lee, Hyun-Hee;Seo, Young-Su
    • The Plant Pathology Journal
    • /
    • 제36권3호
    • /
    • pp.289-296
    • /
    • 2020
  • Type VI secretion system (T6SS) is a contact-dependent secretion system, employed by most gram-negative bacteria for translocating effector proteins to target cells. The present study was conducted to investigate T6SS in Xanthomonas oryzae pv. oryzae (Xoo), which causes bacterial blight in rice, and to unveil its functions. Two T6SS clusters were found in the genome of Xoo PXO99A. The deletion mutants, Δhcp1, Δhcp2, and Δhcp12, targeting the hcp gene in each cluster, and a double-deletion mutant targeting both genes were constructed and tested for growth rate, pathogenicity to rice, and inter-bacterial competition ability. The results indicated that hcp in T6SS-2, but not T6SS-1, was involved in bacterial virulence to rice plants. However, neither T6SS-1 nor T6SS-2 had any effect on the ability to compete with Escherichia coli or other bacterial cells. In conclusion, T6SS gene clusters in Xoo have been characterized, and its role in virulence to rice was confirmed.

Insertional Transposon Mutagenesis of Xanthomonas oryzae pv. oryzae KXO85 by Electroporation

  • Lee, Byoung-Moo;Park, Young-Jin;Park, Dong-Suk;Kang, Hee-Wan;Lee, Gil-Bok;Hahn, Jang-Ho
    • The Plant Pathology Journal
    • /
    • 제20권3호
    • /
    • pp.229-233
    • /
    • 2004
  • The bacterial leaf blight, which is caused by Xantho-monas oryzae pv. oryzae, is the most damaging and intractable disease of rice. To identify the genes involved in the virulence mechanism of transposon TnS complex, which possesses a linearized transposon and transposase, was successfully introduced into X. oryzae pv. oryzae by electroporation. The transposon mutants were selected and confirm the presence of transposition in X. oryzae pv. oryzae by the PCR amplification of transposon fragments and the Southern hybridization using these mutants. Furthermore, transposon insertion sites in the mutant bacterial chromosome were deter-mined by direct genomic DNA sequencing using transposon-specific primers with ABI 3100 Genetic Analyzer. Efficiency of transposition was influenced mostly by the competence status of X. oryzae pv. oryzae cells and the conditions of electroporation. These results indicated that the insertion mutagenesis strategy could be applied to define function of uncharacterized genes in X. oryzae pv. oryzae.

Genetics, Agronomic, and Molecular Study of Leaflet Mutants in Mungbean(Vigna radiata(L.) Wilczek)

  • Soehendi, Rudy;Chanprame, Sontichai;Toojinda, Theerayut;Ngampongsai, Sumana;Srinives, Peerasak
    • Journal of Crop Science and Biotechnology
    • /
    • 제10권3호
    • /
    • pp.193-200
    • /
    • 2007
  • Mungbean plants generally have a relatively close canopy, thus a large amount of self-shading can reduce yield due to poor light penetration. Modification of leaflet type can affect leaf canopy and could alter seed yield. Two multiple leaflet mutants were obtained from gamma-ray irradiation and used to study the mode of inheritance related to leaflet types and to evaluate their agronomic features. The cross between large-heptafoliate leaflet with small-pentafoliate leaflet mutants produce all $F_1$ plants with normal trifoliate leaflets. The $F_2$ plants segregated in leaflet size and leaflet number into a 9:3:3:1 ratio of large-trifoliate: large-heptafoliate: small-pentafoliate: small-heptafoliate plants, suggesting that independent loci control leaflet size and leaflet number. Regarding leaflet number, the $F_2$ population can be classified into normal-trifoliate, small-pentafoliate, large-heptafoliate, and small-heptafoliate at the dihybrid ratio of 9:3:3:1. The gene symbols $N_1,n_1$ and $N_2,n_2$ are proposed to represent leaflet number. Since no plant was found with large-pentafoliate leaflets, we hypothesize that the $N_2$ allele expresses pleiotropic effect on both leaflet number and leaflet size. Another possibility is that an additional locus with S and s alleles controls leaflet size and S is tightly linked with $N_2$. The effect of multifoliate leaflet on yield and yield components was evaluated in four mungbean families each with four leaflet isolines under three environments. Averaging across the families and environments, the normal-trifoliate and large-heptafoliate lines gave higher yield than small pentafoliate and heptafoliate ones. These two large leaflet lines also had higher leaf area per plant than the other multifoliate lines. Therefore, the mungbean lines with a greater leaf area, which were likely to intercept more sunlight, gave greater yield. Three AFLP markers that were found to be linked to number of leaflets per leaf, corresponded to the N1 allele of the smallpentafoliate parent.

  • PDF

돌연변이 벼 종자로부터 선발된 5-methyltryptophan 저항성 계통의 특성 (Characterization of the 5-methyltryptophan Resistant Mutant Lines Selected by Mutagenized Seeds in Rice)

  • 이효연;배창휴;임용표;박노동;조백호;이수인;최해춘;김호일
    • 식물조직배양학회지
    • /
    • 제27권6호
    • /
    • pp.453-459
    • /
    • 2000
  • 5-methyltryptophan (5MT) 저항성 벼의 3계통 (DTR1, DTR2, DTR3)을 돌연변이 처리된 M3세대의 종자로부터 선발하였다. Ml세대에서 엽록소 돌연변이의 빈도는 개화 2시간 후의 벼이삭에 EMS (0.2%) 처리된 실험구로부터 가장 많이 관찰되었다. 5MT저항성으로 선발된 3계통은 자식후대에 있어서도 저항성과 감수성의 비율이 3:1을 보여주었다. 또한 M4세대의 저항성 식물 중에서 자식후대의 5MT에 대한 저항성은 homozygote와 heterozygote 형태로 분리된것이 1 : 2의 비율로 관찰되었다. 이러한 저항성 돌연변이 식물은 5MT저항성 형질이 단일 우성 핵 유전자에 의해 지배된다는 것을 보여준 것이다. 또한 5MT저항성 형질은 세포수준에서도 관찰되었다. DTR1, DTR2의 homozygous 종자로부터 추출된 전 유리아미노산 함량은 야생형 식물에 비해 약 1.7배정도 높았으며, 특히 phenylalanine, Lysine의 함량이 각각 6.2, 3.2배로 증가하였다. 그러나 DTR3의 경우 야생형과 비교하여 유리 아미노산 함량의 증가는 보이지 않고 약간 감소하였다. 이러한 결과는 곡류작물의 아미노산 함량을 변화시키는 데 있어서 5MT저항성 식물체의 선발이 매우 효과적인 방법이라는 것을 보여주었다.

  • PDF

Rice 7-Hydroxymethyl Chlorophyll a Reductase Is Involved in the Promotion of Chlorophyll Degradation and Modulates Cell Death Signaling

  • Piao, Weilan;Han, Su-Hyun;Sakuraba, Yasuhito;Paek, Nam-Chon
    • Molecules and Cells
    • /
    • 제40권10호
    • /
    • pp.773-786
    • /
    • 2017
  • The loss of green coloration via chlorophyll (Chl) degradation typically occurs during leaf senescence. To date, many Chl catabolic enzymes have been identified and shown to interact with light harvesting complex II to form a Chl degradation complex in senescing chloroplasts; this complex might metabolically channel phototoxic Chl catabolic intermediates to prevent oxidative damage to cells. The Chl catabolic enzyme 7-hydroxymethyl Chl a reductase (HCAR) converts 7-hydroxymethyl Chl a (7-HMC a) to Chl a. The rice (Oryza sativa) genome contains a single HCAR homolog (OsHCAR), but its exact role remains unknown. Here, we show that an oshcar knockout mutant exhibits persistent green leaves during both dark-induced and natural senescence, and accumulates 7-HMC a and pheophorbide a (Pheo a) in green leaf blades. Interestingly, both rice and Arabidopsis hcar mutants exhibit severe cell death at the vegetative stage; this cell death largely occurs in a light intensity-dependent manner. In addition, 7-HMC a treatment led to the generation of singlet oxygen ($^1O_2$) in Arabidopsis and rice protoplasts in the light. Under herbicide-induced oxidative stress conditions, leaf necrosis was more severe in hcar plants than in wild type, and HCAR-overexpressing plants were more tolerant to reactive oxygen species than wild type. Therefore, in addition to functioning in the conversion of 7-HMC a to Chl a in senescent leaves, HCAR may play a critical role in protecting plants from high light-induced damage by preventing the accumulation of 7-HMC a and Pheo a in developing and mature leaves at the vegetative stage.

거대배 돌연변이 계통벼 쌀 배유 전분의 이화학적 특성 (Some Physical Properties of Starch Granules from Giant Embryonic Rice Endosperm)

  • 강미영;이연리;고희종;남석현
    • Applied Biological Chemistry
    • /
    • 제46권2호
    • /
    • pp.117-122
    • /
    • 2003
  • 화청찰벼, 화청벼, 그리고 이들의 거대배아미 품종인 화청찰거대배아미, 화청거대배아미 등 4품종의 쌀로부터 전분을 분리하여 몇몇 이화학적 특성을 비교하였다. 거대배아 품종으로 유기되면서 아밀로오스의 함량은 감소하고 있었으며, 아밀로오스 분획의 포도당 사슬의 길이도 짧아지고 있었다. 아밀로펙틴의 미세구조는 거대배아 품종으로 유기됨에 따라 B chain의 사슬길이가 약간씩 증가하는 경향이 있고, A chain의 양은 감소하고 있었으며, 아밀로펙틴을 구성하는 포도당의 평균 사슬길이는 약간씩 증가하고 있었다. X선 회절도상에서는 4품종 모두 전형적인 A type이었으며, glucoamylase에 의한 가수분해도는 찰품종의 경우에는 거대배아미로 유기되면서 가수분해도가 낮아지는데 비해서 메품종의 경우에는 반대의 결과를 얻었다. 호화종료온도는 거대배아미 품종으로 유기됨에 따라 낮아지고 있었고, 호화 엔탈피는 거대배아미 품종으로 유기됨에 따라 증가하고 있었다.

Ac/Ds 삽입 변이체를 이용한 벼 유전자 기능 연구 (Current status of Ac/Ds mediated gene tagging systems for study of rice functional genomics in Korea)

  • 이강섭;박성한;윤도원;안병옥;김창국;한창덕;이기환;박동수;은무영;윤웅한
    • Journal of Plant Biotechnology
    • /
    • 제37권2호
    • /
    • pp.125-132
    • /
    • 2010
  • Rice is the staple food of more than 50% of the worlds population. Cultivated rice has the AA genome (diploid, 2n=24) and small genome size of only 430 megabase (haploid genome). As the sequencing of rice genome was completed by the International Rice Genome Sequencing Project (IRGSP), many researchers in the world have been working to explore the gene function on rice genome. Insertional mutagenesis has been a powerful strategy for assessing gene function. In maize, well characterized transposable elements have traditionally been used to clone genes for which only phenotypic information is available. In rice endogenous mobile elements such as MITE and Tos (Hirochika. 1997) have been used to generate gene-tagged populations. To date T-DNA and maize transposable element systems has been utilized as main insertional mutagens in rice. A main drawback of a T-DNA scheme is that Agrobacteria-mediated transformation in rice requires extensive facilities, time, and labor. In contrast, the Ac/Ds system offers the advantage of generating new mutants by secondary transposition from a single tagged gene. Revertants can be utilized to correlate phenotype with genotype. To enhance the efficiency of gene detection, advanced gene-tagging systems (i.e. activation, gene or enhancer trap) have been employed for functional genomic studies in rice. Internationally, there have been many projects to develop large scales of insertionally mutagenized populations and databases of insertion sites has been established. Ultimate goals of these projects are to supply genetic materials and informations essential for functional analysis of rice genes and for breeding using agronomically important genes. In this report, we summarize the current status of Ac/Ds-mediated gene tagging systems that has been launched by collaborative works from 2001 in Korea.

Epistatic Relationships among Genes Related to Endosperm Starch Synthesis in Rice

  • Lee, Joohyun;Koh, Hee-jong
    • 한국육종학회지
    • /
    • 제42권2호
    • /
    • pp.151-156
    • /
    • 2010
  • The mutants of sugary-2 (su-2), floury (flo), shrunken-1 (shr-1), and dull-1 (du-1) were crossed to waxy (wx) to produce $F_2$ seeds. Chi-square analysis on the segregating ratio of the $F_2$ seeds revealed that flo, su-2, and shr-1 were independently transmitted with wx, while wx was epistatic over du-1. The floury and sugary-2 were crossed to Hwasunchalbyeo, a waxy variety, and then the $F_4$ of floury-waxy and sugary-2-waxy seeds were developed, respectively. As the parents phenotypes of sugary-2 and floury, the grains of these two lines showed lower hardness and grain weight than normal grain of Hwacheongbyeo. For alkali digestive value (AVD), the sugary-2-waxy showed lower ADV than Hwacheongbyeo. For the gel consistency of grain flours, the floury was medium like Hwacheongbyeo, while those of the sugary-2, floury-waxy, and sugary-2-waxy were soft like Hwasunchalbyeo. The amylose contents in the grains of the sugary-2 and floury were decreased to ~15% whereas that of Hwacheongbyeo was 19.1%. All the lines showing waxy endosperm (Hwasunchalbyeo, floury-waxy, and sugary-2-waxy) showed less than 4% amylose contents. Interestingly, the free sugar content in the brown rice was increased to 9.27% in the sugary-2-waxy, showing transgressive segregation phenomenon where the free sugar contents in its parents, sugary-2 and Hwasunchalbyeo, were 5.98% and 3.98% respectively. Also, the floury-waxy showed transgressive segregation phenomenon, containing 6.15% of free sugar content in the grains.