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Allelopathic effect of itchgrass (Rottboellia cochinchinensis) on seed germination and plant growth
Meksawat, Sunyata,Pornprom, Tosapon The Korean Society of Weed Science and The Turfgra 2010 Weed Biology and Management Vol.10 No.1
Herbicides produce a wide range of toxic side-effects that pose a potential hazard to the environment. The development of natural allelochemicals is one method of addressing these issues. Here, we describe the allelopathic activity of itchgrass (Rottboellia cochinchinensis), which can inhibit the seed germination and growth of weeds. Farmers in Lampang, northern Thailand, have been cultivating itchgrass and using it as a mulching material to control other weeds in vegetable fields. It has long been observed that itchgrass interferes with the growth of other plants. This study showed that the density of weed species in the itchgrass-infested areas was lower than that in the itchgrass-uninfested areas.The shoot and root growth of Bidens pilosa, Mimosa pudica, Ageratum conyzoides, Echinochloa crus-galli, Oryza sativa var. RD 6, and Lactuca sativa var. OP were significantly reduced in soil previously planted with itchgrass. Water-soluble extracts from all parts of itchgrass had inhibitory effects on the growth of some test plants. Allelochemicals from itchgrass can inhibit seed germination and plant growth better at a 1 cm distance than at a 3 cm and 5 cm distance from itchgrass. Our results suggest that itchgrass has a strong competitive ability and possible allelopathic activity to other plant species. The allelopathic activity of itchgrass in the soil can influence the germination of adjacent species, causing reduced growth of seedlings.
Assessment of ALS-Inhibiting Herbicides Tolerance in Pepper Cultivars
폰프롬 토사폰,변종영,Pornprom, Tosapon,Pyon, Jong-Yeong 한국잡초학회 1997 Weed&Turfgrass Science Vol.17 No.3
Selection of pepper (Capsicum sp.) cultivars tolerant to acetolactate synthase (ALS)-inhibiting herbicides {imazethapyr, 2-[4,5-dihydro-4-methyl-4-(1-methylethyl)-5-oxo-1H-imidazol-2-yl]-5-ethyl-3=pyridine-carboxylic acid, and primisulfuron methyl 2-[[[[[4,6-bis(difluoromethoxy)-2-pyrimidinyl]amino] carbonyl]amino]sulfonyl]benzoate} was investigated. Pepper cultivars such as Red Top, Happy Dry, Golden Tower, and Hagyeorae showed relatively tolerant response to imazethapyr, while cultivars; Korea, Cheongyang, Oriental Glory, and Hanam were susceptible. Red Horn, Jopoong, Kwangbok, and Wangcho cultivars were tolerant to primisulfuron whereas Korea, Dahhong, Chamjoah, and Poongchon cultivars were susceptible. Determination of growth inhibition by ALS-inhibiting herbicides showed that the $I_{50}$ estimates of growth from the susceptible- and tolerant-cultivars were 0.075 and 0.20kg ai/ha for imazethapyr; 0.06 and 0.16kg ai/ha for primisulfuron, respectively. Furthermore, the $GR_{50}$ estimates of growth from the susceptible and tolerant cultivars were 0.05 and 0.20kg ai/ha for imazethapyr; 0.07 and 0.16kg ai/ha for primisulfuron, respectively. This result, based on the $GR_{50}$ and $I_{50}$ values, indicates that responses of pepper to ALS-inhibiting herbicides between tolerant- and susceptible-cultivars were different about 3- to 4-fold to imazethapyr, and 2- to 3-fold to primisulfuron. ALS저해형 제초제 imazethapyr와 primisulfuron에 내성인 고추품종을 선발하기 위하여 42종 고추품종을 공시하여 고추의 약해, 초장, 생체중 및 건물중을 측정하여 품종 반응을 조사하였다. 1. 레드탑, 해피드라이, 골든 타워, 하교레 품종은 imazethapyr에 내성을, 코리아, 조양, 오리엔탈 글로리, 하남 품종은 감수성을 나타냈다. 레드혼, 조풍, 광복, 왕조는 primisulfuron에 내성을, 코리아, 다홍, 참조아, 풍천 품종은 감수성을 나타냈다. 2. Imazethapyr에 대한 $I_{50}$ 농도는 감수성 품종은 0.075kg/ha, 내성품종은 0.20kg/ha이며, primisulfuron의 경우, 감수성 품종은 0.065kg/ha, 내성품종은 0.16kg/ha이었다. 3. Imazethapyr 처리에 따른 $GR_{50}$을 감수성 품종에서 0.05kg/ha, 내쟁품종에서 0.20kg/ha이며 primisulfuron 처리의 경우 감수성 품종은 0.07kg/ha, 내성품종은 0.16kg/ha이었다. 4. 따라서 ALS저해형 제초제에 대한 내수성품종과 감수성 품종간 내성 정도는 imazethapyr에서 3~4배, primisulfuron에서는 2~3배 차이를 나타냈다.
Differential Tolerance of Pepper Cultivars to Bentazon
토사폰 폰프롬,변종영,Pornprom, Tosapon,Pyon, Jong-Yeong 한국잡초학회 1997 Weed&Turfgrass Science Vol.17 No.4
Bentazon에 대한 품종간 내성을 검정하기 위하여 온실에서 42 고추품종을 30일간 재배한 다음 Bentazon을 경엽처리하여 내성품종과 감수성품종을 선발하였다. 조풍, 종가집, 싱싱하우스, 녹광, 광복 및 일천 품종은 비교적 내성을, 대홍, 조광, 고려, 청양, 향촌 및 대장경 품종은 감수성을 나타냈다. 내성품종은 Bentazon 3.4 kg/ha 이상 수준에서도 감수성품종에 비하여 현저한 내성을 보였다. 고추생장은 50% 저해하는 Bentazon 농도$(I_{50})$는 감수성품종은 2.0~2.4 kg/ha, 내성품종은 10.0~12.0 kg/ha이며 또한 50% 생장을 감소시키는 Bentazon 농도 $(GR_{50})$는 감수성품종은 2.4 kg/ha이고 내성품종은 9.6 kg/ha이었다. 따라서 내성품종은 감수성 품종보다 5~6배 내성을 나타내었다. Greenhouse studies were conducted to evaluate the tolerance of 42 pepper cultivars to postemergence applications of bentazon [3-(1-methylethyl)-(1H)-2,1,3-benzothiadiazin-4(3H)-one 2,2-dioxide]. Cultivars, Jopoong, Singsing House, Sweet Green, Kwangbok, and Ilcheon showed relatively tolerant response to bentazon, while cultivars, Dahhong, Early Glory, Korea, Cheongyang, Nostalgia, and Daejanggyeong were susceptible ones to it. At rates over 2.40 kg ai/ha, the tolerant cultivars appeared to be clearly or more tolerant than the susceptible cultivars. For the determination of growth inhibition by bentazon, the concentration required to reduce growth by 50% (GR_(50)) was 2.00 to 2.40 kg ai/ha for susceptible cultivars, and 10.00 to 12.00 kg ai/ha for tolerant cultivars. Moreover, the herbicide rate required to inhibit growth by 50% $(I_{50})$ was 2.40 kg ai/ha for susceptible cultivars and 9.60 kg ai/ha for tolerant cultivars, respectively. On the $I_{50}$ and $GR_{50}$ estimates of growth, the tolerant cultivars were 5- to 6-fold more tolerant to bentazon than susceptible ones.