• 제목/요약/키워드: koshihikari

검색결과 42건 처리시간 0.026초

Estimation of the quantitative trait loci associated with breaking and bending types lodging resistance in rice using chromosome segment substitution lines derived from a cross between Takanari and Koshihikari

  • Mulsanti, Indria Wahyu;Yamamoto, Toshio;Ueda, Tadamasa;Samadi, Ahmad Fahim;Adachi, Shunsuke;Hirasawa, Tadashi;Ookawa, Taiichiro
    • 한국작물학회:학술대회논문집
    • /
    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
    • /
    • pp.133-133
    • /
    • 2017
  • Lodging is one of the important constraints in rice production. The lodging destroys the canopy structure, and sharply reduces the capacity of photosynthetic rate and dry matter production. In cereal crops, stem lodging can be classified into two types: stem breaking type and stem bending type. To improve stem lodging resistance, it is important to reveal strong culm traits of superior lodging resistant varieties. There are large varietal differences in parameters associated with the bending moment at breaking (M) and flexural rigidity (FR). The indica variety Takanari possesses large M due to its large section modulus (SM) despite of its small bending stress (BS), while Takanari also has large FR due to its large secondary moment of inertia (SMI) and Young's modulus (YM). To identify quantitative trait loci (QTLs) and the corresponding genes associated with the parameters for M ($=SM{\times}BS$) and FR ($=SM{\times}YM$) should enable to develop lodging resistant varieties, efficiently. In order to identify QTLs for cell wall materials such as cellulose, hemicellulose and lignin associated with BS and YM, a set of Chromosome Segment of Substitution Lines (CSSLs) consisted of 37 lines with chromosome segments of Koshihikari in the genetic background of Takanari were used. Takanari had large M and small BS as compared with Koshihikari. The QTLs for BS were estimated on chromosomes 3, 5, 6, 8, 9, 10, 11 and 12. Koshihikari alleles increased BS in these QTLs. Takanari had a large FR due to its large SMI and YM as compared with Koshihikari. The YM was increased by substitution of the Koshihikari chromosomal segments on chromosomes 2, 10 and 11. Other QTLs estimated on chromosomes 7 and 12 that Koshihikari alleles contributed to the decrease of YM. For lignin, only one major QTL for lignin density was detected on chromosome 11. Hollocellulose densities were increased by the substitution of Koshihikari segments on chromosomes 5 and 11. On the other hand, these were decreased on chromosomes 1 and 3 by substitution of Koshihikari segments. QTLs for cellulose density were estimated on chromosomes 1, 3 and 5 by substitution of Koshihikari segments. For hemicellulose, QTL on chromosome 3 showed that hemicellulose density decreased by the substitution of Koshihikari segment. However, hemicellulose densities on chromosomes 5, 8 and 11 showed the opposite effects. The QTLs for hemicellulose, cellulose, and hollocelulose densities identified on chromosome 5 overlapped with that for bending stress, indicating the positive effect of Koshihikari segment on increasing bending stress. These results suggest that some QTLs for the densities of cell wall materials contribute to increasing bending stress and Young's modulus, and could be utilized to improve the lodging resistance for both types of breaking and bending in rice varieties.

  • PDF

Identification of the quantitative trait loci for breaking and bending types lodging resistance in rice, using recombinant inbred lines derived from Koshihikari and a strong culm variety, leaf star

  • Samadi, Ahmad Fahim;Yamamoto, Toshio;Ueda, Tadamasa;Adachi, Shunsuke;Hirasawa, Tadashi;Ookawa, Taiichiro
    • 한국작물학회:학술대회논문집
    • /
    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
    • /
    • pp.93-93
    • /
    • 2017
  • To develop rice cultivars with increased biomass and grain yield, superior lodging resistance is an essential trait. The new breeding approach can be adopted for the improvement of stem lodging resistance by enhancing culm strength. The resistance to breaking type lodging is attributed to bending moment of basal culm (M), which is composed of the section modulus (SM) and bending stress (BS). The resistance to the bending type lodging is attributed to flexural rigidity (FR) of stem, which is composed of the secondary moment of inertia (SMI) and Young's modulus (YM). Starch and cell wall components such as cellulose, hemicellulose and lignin also play a significant role in physical strength of culm, and thus affect lodging. Leaf Star has a superior lodging resistance due to its thick and stiff culm because of its high M and FR compared with Koshihikari. Furthermore, Leaf Star contains high densities of hemicellulose, cellulose and low lignin density in culm compared with Koshihikari. In this study, we performed QTL analysis for these traits associated with culm strength, using 94 recombinant inbred lines (RILs, $F_8$), derived from a cross between Leaf Star and Koshihikari. The SM in the RILs showed a continuous distribution. QTLs for SM were detected on chrs.2, 3 and 10. Leaf Star alleles increased SM on chrs. 2 and 3, but Koshihikari allele increased on chr.10. These QTLs overlapped with those QTLs identified using backcrossed inbred line derived from a cross between Chugoku 117 and Koshihikari, the parents of Leaf Star. The FR in Leaf Star was higher than that in Koshihikari due to the larger SMI and YM. 3 QTLs for SMI were detected on chrs.2, 3 and 10. Leaf Star alleles increased SMI on chrs.2 and 3, and Koshihikari alleles increased on chr.10. One QTL on chr.3 and two QTLs on chr.5 for hollocelulose content were detected with Leaf Star alleles contribution. Moreover, two QTLs were detected for hemicellulose density on chrs.3 and 5. Leaf Star allele increased hemicellulose density on chr.5, and Koshihikari allele increased on chr.3. Furthermore, two QTLs for cellulose density were detected on chr.5, and one QTL on chr.2. For starch content, one QTL on chr.3 and two QTLs on chr.5 with Leaf Star alleles contribution were detected. TULK-6 carrying a chromosome segment of Leaf Star on chr.5 in the Koshihikari genetic background showed higher densities of starch and hemicellulose than those in Koshihikari. These results suggest that the detected QTLs for culm strength could be utilized for the improvement of lodging resistance in rice by marker-assisted selection.

  • PDF

Salt tolerant rice cv Nona Bokra chromosome segments introgressed into cv Koshihikari improved its yield under salinity through retained grain filling

  • Mitsuya, Shiro;Murakami, Norifumi;Sato, Tadashi;Kano-Nakata, Mana;Yamauchi, Akira
    • 한국작물학회:학술대회논문집
    • /
    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
    • /
    • pp.238-238
    • /
    • 2017
  • Salt stress is one of the deteriorating abiotic stresses due to the climate change, which causes over-accumulation of $Na^+$ and $Cl^-$ ions in plants and inhibits the growth and yield of rice especially in coastal Southeastern Asia. The yield components of rice plant (panicle number, spikelet number per panicle, 1000-grain weight, % of ripened grains) that are majorly affected by salt stress vary with growth stages at which the plant is subjected to the stress. In addition, the salt sensitivity of each yield component differs among rice varieties even when the salt-affected growth stage was same, which indicates that the physiological mechanism to maintain each yield component is different from each other. Therefore, we hypothesized that rice plant has different genes/QTLs that contribute to the maintenance of each yield component. Using a Japanese leading rice cultivar, Koshihikari, and salt-tolerant Nona bokra's chromosome segment substitution lines (CSSLs) with the genetic background of Koshihikari (44 lines in total) (Takai et al. 2007), we screened higher yielding CSSLs under salinity in comparison to Koshihikari and identified the yield components that were improved by the introgression of chromosome segment(s) of Nona bokra. The experiment was conducted in a salinized paddy field. One-month-old seedlings were transplanted into a paddy field without salinity. These were allowed to establish for one month, and then the field was salinized by introducing saline water to maintain the surface water at 0.4% salinity until harvest. The experiments were done twice in 2015 and 2016. Although all the CSSLs and Koshihikari decreased their yield under salinity, some CSSLs showed relatively higher yield compared with Koshihikari. In Koshihikari, all the yield components except panicle number were decreased by salinity and % of ripened grains was mostly reduced, followed by spikelet number per panicle and 1000-grain weight. When compared with Koshihikari, keeping a higher % of ripened grains under salinity attributed to the significantly greater yield in one CSSL. This indicated that the % of ripened grains is the most sensitive to salt stress among the yield components of Koshihikari and that the Nona bokra chromosome segments that maintained it contributed to increased yield under salt stress. In addition, growth analyses showed that maintaining relative growth rate in the late grain filling stage led to the increased yield under salt stress but not in earlier stages.

  • PDF

Dry matter and grain production of a near-isogenic line carrying a 'Takanari' (high yielding, Indica) allele for increased leaf inclination angle in rice with the 'Koshihikari' (Japonica) genetic background

  • San, Nan Su;Otsuki, Yosuke;Adachi, Shunsuke;Yamamoto, Toshio;Ueda, Tadamasa;Tanabata, Takanari;Ookawa, Taiichiro;Hirasawa, Tadashi
    • 한국작물학회:학술대회논문집
    • /
    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
    • /
    • pp.32-32
    • /
    • 2017
  • To increase rice production, manipulating plant architecture, especially developing new high-yielding cultivars with erect leaves, is crucial in rice breeding programs. Leaf inclination angle determines the light extinction coefficient (k) of the canopy. Erect leaves increase light penetration into the canopy and enable dense plantings with a high leaf area index, thus increasing biomass production and grain yield. Because of erect leaves, the high-yielding indica rice cultivar 'Takanari' has smaller k during ripening than 'Koshihikari', a japonica cultivar with good eating quality. In our previous study, using chromosome segment substitution lines (CSSLs) derived from a cross between 'Takanari' and 'Koshihikari', we detected seven quantitative trait loci (QTLs) for leaf inclination angle on chromosomes 1 (two QTLs), 2, 3, 4, 7, and 12. In this study, we developed a near-isogenic line (NIL-3) carrying a 'Takanari' allele for increased leaf inclination angle on chromosome 3 in the 'Koshihikari' genetic background. We compared k, dry matter production, and grain yield of NIL-3 with those of 'Koshihikari' in the field from 2013 to 2016. NIL-3 had higher inclination angles of the flag, second, and third leaves at full heading and 3 (- 4) weeks after full heading and smaller k of the canopy at the ripening stage. Biomass at full heading and leaf area index at full heading and at harvest did not significantly differ between NIL-3 and 'Koshihikari'. However, biomass at harvest was significantly greater in NIL-3 than in 'Koshihikari' due to a higher net assimilation rate at the ripening stage. The photosynthetic rates of the flag and third leaves did not differ between NIL-3 and Koshihikari at ripening. Grain yield was higher in NIL-3 than 'Koshihikari'. Higher panicle number per square meter in NIL-3 contributed to the higher grain yield of NIL-3. We conclude that the QTL on chromosome 3 increases dry matter and grain production in rice by increasing leaf inclination angle.

  • PDF

Comparative Analysis of Root and Shoot Growth between Tongil and Japonica Type Rice

  • Kang, Si-Yong;Shigenori Morita
    • 한국작물학회지
    • /
    • 제43권3호
    • /
    • pp.161-167
    • /
    • 1998
  • Root and shoot development of two rice (Oryza sativa L.) cultivars with different genetic backgrounds was studied with reference to their relative growth. Tongil type (indica-japonica hybrid) cultivar 'Kuemkangbyeo' and japonica cultivar 'Koshihikari' were grown in $5000^{-1}$ a Wagnar pots under flooded condition. Three plants with roots of both cultivars were taken in every phyllochron through the heading stage to record morphological characteristics of shoot and root system. Compared to Koshihikari, Kuemkangbyeo produced more tillers and had greater shoot weight and leaf area per hill. Length and weight of the root system in both cultivars increased exponentially with time. At the same time, root system development was significantly faster in Kuemkangbyeo than in Koshihikari after the panicle initiation stage. As a result, Kuemkangbyeo has a vigorous root system which consists of larger number of nodal roots compared to Koshihikari. Also, the root length and weight per unit leaf area of Kuemkangbyeo were larger than those of Koshihikari in the later half of growing period, which suggests possible higher physiological activity of the root system of Kuemkangbyeo which is known as a high-yielding cultivar. The relationship between root traits (crown root number, total root length, and root dry weight) and shoot traits (leaf area and leaf+culm dry weight) in both cultivars closely showed allometry until the flag leaf stage.

  • PDF

국내산 유기재배 쌀의 이화학적 특성과 취반특성 비교 (Comparison of Physicochemical Properties and Cooking Quality of Korean Organic Rice Varieties)

  • 위은이;박지혜;신말식
    • 한국식품조리과학회지
    • /
    • 제29권6호
    • /
    • pp.785-794
    • /
    • 2013
  • To satisfy the consumer's interest with safety and high quality of staple foods, the physicochemical properties and cooking quality of organic rice using hairy vetch in Korea were compared. Two Korean varieties, Hopyeong and Ilmi, two Japanese varieties, Koshihikari and Hedomebore, and newly developed in Jeonnam, Mipum which cultivated in the same region and conditions were used. Physicochemical properties and cooking quality were investigated. All samples were japonica type short grains and their length/width ranged 1.74-1.84. The protein, ash, and crude lipid contents were significantly different with varieties and the protein content of Korean rice was lower than that of Japanese rice, especially, that of Hopyeong was the lowest. Amylose content and initial pasting temperature were lower in Hopyeong and Japanese rice, but peak viscosities showed reverse trends. Swelling power at $80^{\circ}C$ showed higher in Hopyeong and Koshihikari. Color values, L, a and b were significant difference with varieties and color differences of Hopyeong and Huitomebore were lower than those of others. Texture properties, hardness and adhesiveness of Hopyeong cooked rice showed the lowest values, but adhesiveness of Japanese cooked rice exhibited the highest value. On sensory evaluation of cooked rice, glossiness of Koshihikari, intactness of Koshihikari, Huitomebore, and Hopyeong, stickiness of Koshihikari and Hopyeong showed higher values (p<0.05). The overall quality score of organic cooked rices decreased as following order; Koshihikari> Hopyeong> Huitomebore> Mipum> Ilmi.

벼 품종 밀양 23호와 고시히카리의 수형태와 영화 퇴화 차이 (Differences in Panicle Structure and Spikelet Degeneration in Two Different Types of Rice Cultivars; Milyang 23 and Koshihikari)

  • 강시용
    • 한국작물학회지
    • /
    • 제42권6호
    • /
    • pp.833-840
    • /
    • 1997
  • 벼 다수성 통일계 밀양 2003와 일본형 품종 고시히카리를 1/ 5,000 a 포트에 재배하여, 유수분화기부터 퇴화 영화의 형성과정을 중심으로 Cryo-SEM 관찰하고, 수내 위치별 형성 특성에 관해서 검토하였다. 1. 퇴화영화는 수 하단부 1차지경의 영화시원체가 발육하여 외영과 내영이 서로 교합한 이후에 수 전체에서 거의 동시적으로 발생하였는데, 처음에는 주로 외영 및 호영의 일부 표면세포의 고사 파괴로부터 시작되어 전표면세포 및 소지경 표면의 파괴로 발달하는 양상을 나타냈다. 2. 출수 7일후에 조사한 1수당 분화영화수 및 퇴화영화수는 밀양 2003가 각각 약 240개, 80개인데 비교하여, 고시히카리는 각각 87개, 6개로, 밀양 2003가 고시히카리보다 3배 가까이 많았다. 또한 밀양 2003는 특히 중하위의 1차지경에서 많은 2차 및 3차지경의 영화가 형성되며, 퇴화율도 약 2.5배 고시히카리보다 높았다. 3. 1수당 영화수(Y)와 1차, 2차, 3차 지경수(각각 X$_1$, X$_2$, X$_3$)와의 관계식은 고시히카리의 경우 기존의 보고와 같이 Y=5.5X$_1$+3.0X$_2$가 적합하였으나, 밀양 2003의 경우 분화영화수의 경우는 Y1=5.7X$_1$+3.5X$_2$+2.8X$_3$, 정상영화수의 경우는 Y2=5.6X$_1$+3.2X$_2$+2.4X$_3$가 적합하였다.

  • PDF

벼 RIL집단의 유전 분석과 농업형질 분석을 통한 도열병 저항성 QTL 탐색 및 유망계통 선발 (Genetic and Agronomic Analysis of a Recombinant Inbred Line Population to Map Quantitative Trait Loci for Blast Resistance and Select Promising Lines in Rice)

  • 하수경;정지웅;정종민;김진희;모영준
    • 한국작물학회지
    • /
    • 제65권3호
    • /
    • pp.172-181
    • /
    • 2020
  • 고시히카리는 도열병과 쓰러짐에 약하지만 밥맛 좋은 쌀로 유명하고, 육성된 지 60년이 넘은 지금까지도 일본에서 가장 많이 재배되는 품종이다. 고시히카리에 도열병에 강하면서 생육이 빠른 백일미를 교배한 RIL집단(KBRIL)에서 도열병 저항성에 대한 유전분석을 수행하여 저항성 유전자의 염색체 상 위치를 규명하고, 고시히카리의 우수한 미질을 보유하면서 도열병에도 강한 계통을 선발하기 위해 본 연구를 수행하였다. 주요 결과는 다음과 같다. 1. 고시히카리×백일미 RIL 394계통과 모·부본의 도열병 저항성(전주, 남원) 및 주요 농업형질을 조사하고, 유전 분석을 위해 사용된 142계통으로 총 130개 SNP 마커, 1,272.7cM의 유전자지도를 작성하였다. 도열병 저항성 QTL 분석 결과 전주에서는 1번 염색체의 qBL1.1이, 남원에서는 전주와 동일한 qBL1.1과 추가로 2번 염색체의 qBL2.1이 탐지되었다. 2. RIL 394계통의 qBL1.1과 qBL2.1 유전자형을 도출하고 각 QTL의 백일미 대립인자 집적에 의한 도열병 저항성 강화 효과를 관찰하였다. 전주에서는 qBL1.1의 경우에만 백일미 대립인자 집적에 의하여 도열병 저항성이 강화되었다. 반면 남원에서는 qBL1.1, qBL2.1 모두 백일미 대립인자가 집적될 때 도열병 저항성이 강화되었다. qBL1.1, qBL2.1은 출수기, 간장, 수장, 수수를 포함한 주요 농업형질에는 영향을 미치지 않았다. 3. 고시히카리×백일미 RIL 394계통 중에서 출수기와 간장을 기준으로 고시히카리와 유사하면서 도열병에 약/강한(KS/KR) 계통과 백일미와 유사하면서 도열병에 강한(BR) 계통을 각 15계통씩 선발하였다. KR 그룹은 완전 미율이 가장 우수하여 밥맛 검정, 수량성 등 추가조사를 통해 고시히카리의 우수한 밥맛을 지니면서 도열병 저항성을 보유한 고품질 밥쌀용 품종개발에 활용할 계획이다. 또한 BR그룹은 미질이 우수하면서 출수가 빠른 고품질 품종 개발에 유용할 것으로 기대된다.

Characteristics and Genetic Segregation of a Rolled Leaf Mutant in Rice

  • Lee, Songyee;Choi, Minseon;Lee, Joohyun;Koh, Hee-Jong
    • 한국육종학회지
    • /
    • 제43권4호
    • /
    • pp.260-264
    • /
    • 2011
  • Leaf structure is one of the important agronomic traits. A rolled leaf mutant was induced from an ethyl methane sulfonate (EMS)-treated japonica rice, 'Koshihikari'. The rolled leaf mutant showed phenotypes of reduced leaf width and leaf rolling. In addition, several abnormal morphological characteristics were observed, including dwarfism, defected panicle, delayed germination, and lower seed-setting. Microscopic analysis revealed that the number of small veins was decreased and the sizes of adaxial bulliform cells were reduced in the mutant leaves. The genetic study with two $F_2$ populations from the crosses of the rolled leaf mutant with 'Koshihikari' and Milyang23 suggested that the mutant phenotype might be controlled by a single dominant gene.

벼 품종 밀양 23호와 고시히카리의 유수 및 영화 발달 비교 (Comparison of Panicle and Spikelet Development in Rice Cultivars Milyang 23 and Koshihikari)

  • 강시용
    • 한국작물학회지
    • /
    • 제42권5호
    • /
    • pp.503-514
    • /
    • 1997
  • 벼 다수성 통일계 밀양 2003와 일본형 품종 고시히카리를 1/5000a 포트에 담수조건으로 재배하여, 유수시원체 분화기의 전후로부터 출수 직전까지 연속적으로 주경을 채취하여 유수와 영화의 발달을 Cryo-SEM을 이용 관찰하였다. 1. 생식상으로 이행한 경정은 후드상의 지엽시원체 반대편 위쪽에 제1포엽시원체가 분화되었고, 그 상부에 1차지경시원체가 포시원세포층의 분화와 함께 향정적으로 분화 융기하였는데, 최상위의 1차지경시원체가 분화종료 후 유수의 생장점은 발육이 정지하여 퇴화하는 경우가 보여졌다. 2. 1차지경 시원체수가 분화 종료되면, 늦게 분화된 상위 1차지경시원체의 기부로부터 빠르게 신장 발육하면서 배축면에 2열 호생적으로 2차 지경과 소지경 시원체를 분화하였고, 각각의 지경 및 소지경은 발육을 계속하여 영화시원체를 분화발달시켰다. 3. 1, 2차지경 시원체의 분화 징후는 기부에서 포엽 또는 포모가 되는 포시원세포의 분화융기로부터 시작되었으며, 각 지경시원체는 포모 또는 포엽에 액생하는 형식으로 착생하였다. 4. 1수내 위치별 영화의 발육순서는 상위 1차지경의 정단부 영화일수록 빠랐으며, 하위1차지경의 기부측 2차지경의 영화일수록 느렸는데, 약 7∼10일 정도 발육의 차이가 있었다. 또한 각 1차지경 및 2차지경의 영화에서는 정단에서 2번째 영화의 발육이 느리고 그 크기도 작았다. 5. 유수와 영화의 기본적인 분화 발달과정은 두 품종에서 유사한 양상을 나타냈으나, 밀양 2003는 1차지경 시원체수가 고시히카리보다 2개 정도 많이 분화되었고, 중하위 1차지경에서는 많은 2차시경시원체가 분화하는 경향이었는데, 일부의 2차지경에서는 3차지경시원체와 3차지경으로부터 영화 시원체의 분화가 관찰되었다. 또한 유수의 크기는 전 유수발달기를 통하여 항상 밀양 2003가 고시히카리보다 컸다.

  • PDF