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1.
Seed samples of okra (Abelmoschus esculentus (L.) Moench) variety Arka anamika were subjected to hot water treatment at 42, 52 and 62°C for a period of 30 min and UV light treatment for 10, 20, 30 min at 28 ± 2°C. Their efficacy was tested against some seedborne fungal species. Among them, seeds under hot water treatment at 52°C for 30 min and UV light at 20 min were found to be more effective in the improvement of crop, both in greenhouse and field conditions. Ultimately, there was increase in the total number of leaves, fruits, length of the fruit, girth and biomass of the plants. Apart from these the total number of seeds per fruit, 1000 seed weight and ascorbic acid content were also found to be enhanced. These treatments also reduced the incidence of mycoflora in the seeds and thereby enhanced the seed germination percentage and vigour index of the seedlings.  相似文献   
2.
Summary Genetic studies on radiation-induced chlorina and variegated mutants of okra (Abelmoschus esculentus (L.) Moench) revealed the existence of an unstable gene. The normal green color of the leaves is controlled by duplicate genes C1 and C2, either of which produces the green colour. The chlorina plants are C 1 C 1 C 2 C 2. The allele c 1 v is dominant to both C 1 and C 2 but is unstable. The homozygote c 1 v c 1 v c 2 c 2 is a normal green while the heterozygote c i v c 1 c 2 c 2 has a variegated phenotype as a result of the mutation of c 1 v to c 1 during development. In green plants with a c 1 v c{sh1/v}c 2 c 2 genotype, the autonomous mutation of one of the c 1 v alleles to c 1 may take place at the pre-meiotic stage. In the variegated genotype (c 1 v c 1 c 2 c 2), the mutation of c 1 to c 1 v may take place in early ontogeny, thus producing green plants. The allele C 1, when associated with c 1 v in a heterozygous condition, mutates to c 1 at the pre-meiotic stage even in the presence of the allele C 2.  相似文献   
3.
MYB转录因子家族广泛参与了植物对干旱、盐渍、冷害等非生物胁迫的应答。为了深入研究秋葵[Abelmoschus esculentus(L.) Moench]中的MYB类转录因子,该研究以‘北海道1号’秋葵为研究对象,采用PCR方法克隆AeMYB1R1基因,并借助生物信息学进行特征分析;采用qRT-PCR荧光定量方法分析其表达模式及其在非生物胁迫下的表达特性。结果表明:(1)成功克隆获得1个秋葵AeMYB1R1基因;该基因包含1个1 056 bp的开放阅读框,编码352个氨基酸;序列对比和系统进化树结果显示,AeMYB1R1在植物进化过程中具有较高的保守性;AeMYB1R1蛋白分子量为37 891.57 Da,等电点为8.75,含有较多的谷氨酸和较少的色氨酸,以及较多潜在的磷酸化位点和糖基化位点。(2)结构分析显示,AeMYB1R1蛋白主要由α螺旋和无规则卷曲构成,无信号肽和跨膜结构,为疏水性蛋白;同时,氨基酸序列在第104至第156位含有一个保守结构域,表明其属于SHAQKYF类MYB家族转录因子。(3)qRT-PCR结果显示,AeMYB1R1基因在秋葵叶中的表达量最高,其次是根和茎,具有组织表达特性;与高温和低温胁迫相比,在盐胁迫和干旱胁迫中AeMYB1R1表达量更高,说明AeMYB1R1可能是秋葵抗盐和抗旱的关键转录因子。研究结果为AeMYB1R1基因在秋葵生长发育和抗逆机制中的功能研究奠定了理论依据。  相似文献   
4.
The experiment was conducted to identify the response of three cultivars of okra [Abelmoschus esculentus (L.) Moench] to exogenous hormones [gibberellic acid-(GA3) and prohexadione-Ca] applied as foliar spray. Stem and leaf dry masses and stem length were significantly enhanced by the application of exogenous GA3, but prohexadione-Ca inhibited growth. Control and prohexadione-Ca treated okra plants took more time to bloom than did GA3 treated plants. In the fruits of all the cultivars a decrease in fructose content was observed, while protein content remained almost unchanged after the application of the two growth regulators. The small changes in chlorophyll a fluorescence characteristics observed under prohexadione-Ca suggested a weakening of the photochemical processes near the photosystem 2 reaction centre. The lowering of ratio between maximum time to reach maximum fluorescence, Fm (Tmax) and Area (sum of Fm-Ft for t = 0 to t = Tmax) caused by GA3 was probably due to the increase of Area rather than to changes in Tmax.  相似文献   
5.
Protocol was established for mass in vitro propagation of okra using meristem culture. Meristems (0.3–0.5 mm in size) were isolated from shoot tips of three-week old in vitro grown seedlings. Isolated meristems were established rapidly in MS liquid medium containing 1.0 mg/l of BAP. For shoot development from primarily established meristem, semisolid MS medium having the same concentration of BAP was found to be the most effective. Rapid shoot multiplication of mericlone was achieved from node cutting cultured in 1.0 mg/l plus 0.5 mg/l GA3, and a maximum of nine shoots were found from each node. Effective root development from the developed plantlets was successful in 1.0 mg/l IBA. More than 75% of the micropropagated mericlones plantlets were successfully acclimatised in soil up to maturity and found to be healthy.  相似文献   
6.
Okra was grown in field plots of Tifton loamy sand naturally infested with the nematodes Meloidogyne incognita and Criconemoides ornalus and the pathogenic fungi Fusarium oxysporum, F. solani, F. roseum, and Pythium spp. Plots were treated with various soil pesticides and left exposed or covered with biodegradable paper film mulch under trickle irrigation. Soil was assayed for nematodes and fungi, and plant roots were examined for root-rot and insect damage. Fewer nematodes and fungi generally were recovered from soil treated with DD-MENCS (with and without film mulch) or methyl bromide-chloropicrin (2:1) (MBC) and film mulch than from nontreated soil. Funfigation with DD-MENCS or MBC suppressed populations of M. incognita, C. ornatus, F. oxysporum, F. solani, F. roseum, and Pythium spp. Ethoprop (alone or combined with other pesticides), sodium azide, and chloroneb were less effective than DD-MENCS and MBC. Plant growth anti yield were greatest when nematodes and pathogenic fungi were controlled. Yield was increased 3-fold by DD-MENCS + film mulch or MBC + film mulch in comparison with the average yield of okra produced in Georgia. The root-knot nematode-Fusarium wilt complex was most severe in nonfuntigated soil.  相似文献   
7.
Wide hybridization in okra   总被引:5,自引:0,他引:5  
Summary Crosses were made between members of the two West African okra types Soudanien and Guineen. All crosses succeeded in both directions and the F1 plants which showed hybrid vigour for plant stature were partially sterile. Cytological observations of the F1 plants revealed abnormal meiosis which resulted in the production of microspores of variable sizes. The frequency of viable pollen (as indicated by acetocarmine staining) was low in the hybrids: 35.80% (U.I.92× U.I.313) and 39.41% (1bk-1×U.I.215). The number of seeds produced per fruit was low in the hybrids and only a few of these seeds are viable. The possibility of gene transfer between the two okra types was discussed.  相似文献   
8.
9.
The in vitro response of ovules obtained after pollination of cotton flowers with pollen from Abelmoschus esculentus was studied. For this, 492 cotton flowers from five G. hirsutum varieties, four G. barbadense varieties and 10 F1 interspecific hybrids, were pollinated with pollen from A. esculentus and 5,069 ovules were cultured in vitro. From the cultured ovules, 69 embryos were isolated and 16 of them grew into plants. However, only three of them survived after transplantation. Finally, one plant which originated from the interspecific cross (B403 × Acala Sindos) × A. esculentus reached maturity. The mature plant (Pa0) had no morphological traits from A. esculentus. On the contrary, traits from both cotton species were observed. The flowcytometric analysis of the Pa0 plant indicated that it was hypoaneuploid. Root tip chromosome counts of its offsprings revealed a progressive chromosome increase from the Pa1 to Pa4 generation. Plants with 52 chromosomes or hypoaneuploids with a lower level of chromosomes (46–51) could be isolated from the Pa4 generation. These plants exhibited morphological traits from both cotton species and they were fertile. No signs of A. esculentus morphological characteristics were observed in these plants. It was concluded that aneuploid partial interspecific cotton plants could be produced after pollination of cotton interspecific hybrids with pollen from A. esculentus and application of an in-ovule embryo rescue technique.  相似文献   
10.
对黄蜀葵[ Abelmoschus manihot( L.) Medikus]花不同部位的β-半乳糖苷酶(β-gal)活性和金丝桃苷含量进行了比较,并研究了开放程度、采收时间及采收后放置时间对花冠中β-gal活性和金丝桃苷含量的影响.结果显示:黄蜀葵花冠中β-gal活性和金丝桃苷含量分别为2.907 U和1.092%,均显著高于花萼和子房,分别为后两者的1.72倍和1.52倍,4.94倍和21.84倍.开放程度、采收时间及采收后放置时间对黄蜀葵花冠中β-gal活性和金丝桃苷含量有显著影响.总体上,完全开放和半开放的花冠中β-gal活性和金丝桃苷含量显著高于未开放及凋谢的花冠;随采收时间的推移(9:00至17:00)以及采收后放置时间的延长(0~5 h),花冠中β-gal活性逐渐升高、金丝桃苷含量逐渐降低;上午9:00采收的花冠中以及采收后0h的花冠中β-gal活性均最低、金丝桃苷含量均最高.研究结果表明:为使黄蜀葵花中金丝桃苷含量维持较高的水平,应于上午9:00左右采收完全开放的花冠,采收后应及时进行相应的处理.  相似文献   
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