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1.
An Acad Bras Cienc ; 90(4): 3243-3248, 2018.
Article in English | MEDLINE | ID: mdl-30043903

ABSTRACT

A major challenge in sugarcane breeding program is the obtaining of enough number of seeds (caryopses) for the development of new improved cultivars. Genotypes differ in their function as pollen recipient and pollen donor, which also affect the seed performance. Thus, the aim of this study was to verify the production and performance of sugarcane seeds from different hybridizations involving RB92579 as pollen recipient and pollen donor. Twelve bi-parental crossings were carried out involving RB92579 and other different genotypes randomly chosen. Seed production potential was evaluated by percentage of fertile spikelets and caryopsis fresh weight. The seed physiological potential was determined by evaluating germination and vigor (index of germination rate, number of normal seedlings per gram of fuzz, and seedling dry weight). The results showed better performance for RB92579 as pollen donor for all characteristics studied. Therefore, RB92579 sugarcane cultivar should be used as pollen donor during hybridizations, condition that permits a greater production and physiological performance of seeds for the sugarcane breeding programs.


Subject(s)
Germination/physiology , Hybridization, Genetic/physiology , Pollen/growth & development , Saccharum/growth & development , Seedlings/growth & development , Seeds/growth & development , Genotype , Germination/genetics , Hybridization, Genetic/genetics , Pollen/genetics , Saccharum/genetics
2.
An Acad Bras Cienc ; 89(4): 3015-3029, 2017.
Article in English | MEDLINE | ID: mdl-29236872

ABSTRACT

Castor bean is one of the crops with potential to provide raw material for production of oils for biodiesel. This species possess adaptive mechanisms for maintaining the water status when subjected to drought stress. A better understanding these mechanisms under field conditions can unravel the survival strategies used by this species. This study aimed to compare the physiological adaptations of Ricinus communis (L.) in two regions with different climates, the semi-arid and semi-humid subject to water stress. The plants showed greater vapor pressure deficit during the driest hours of the day, which contributed to higher values of the leaf temperature and leaf transpiration, however, the VPD(leaf-air) had the greatest effect on plants in the semi-arid region. In both regions, between 12:00 p.m. and 2:00 p.m., the plants presented reduction in the rates of photosynthesis and intracellular CO2 concentration in response to stomatal closure. During the dry season in the semi-arid region, photoinhibition occurred in the leaves of castor bean between 12:00 p.m. and 2:00 p.m. These results suggest that castor bean plants possess compensatory mechanisms for drought tolerance, such as: higher stomatal control and maintenance of photosynthetic capacity, allowing the plant to survive well in soil with low water availability.


Subject(s)
Adaptation, Physiological/physiology , Photosynthesis/physiology , Ricinus/physiology , Stress, Physiological/physiology , Water , Desert Climate , Droughts , Humidity , Plant Transpiration , Seasons , Tropical Climate
3.
An. acad. bras. ciênc ; 89(4): 3015-3029, Oct.-Dec. 2017. tab, graf
Article in English | LILACS | ID: biblio-886874

ABSTRACT

ABSTRACT Castor bean is one of the crops with potential to provide raw material for production of oils for biodiesel. This species possess adaptive mechanisms for maintaining the water status when subjected to drought stress. A better understanding these mechanisms under field conditions can unravel the survival strategies used by this species. This study aimed to compare the physiological adaptations of Ricinus communis (L.) in two regions with different climates, the semi-arid and semi-humid subject to water stress. The plants showed greater vapor pressure deficit during the driest hours of the day, which contributed to higher values of the leaf temperature and leaf transpiration, however, the VPD(leaf-air) had the greatest effect on plants in the semi-arid region. In both regions, between 12:00 p.m. and 2:00 p.m., the plants presented reduction in the rates of photosynthesis and intracellular CO2 concentration in response to stomatal closure. During the dry season in the semi-arid region, photoinhibition occurred in the leaves of castor bean between 12:00 p.m. and 2:00 p.m. These results suggest that castor bean plants possess compensatory mechanisms for drought tolerance, such as: higher stomatal control and maintenance of photosynthetic capacity, allowing the plant to survive well in soil with low water availability.


Subject(s)
Photosynthesis/physiology , Ricinus/physiology , Stress, Physiological/physiology , Adaptation, Physiological/physiology , Water , Seasons , Tropical Climate , Plant Transpiration , Desert Climate , Droughts , Humidity
4.
An Acad Bras Cienc ; 89(2): 1231-1242, 2017.
Article in English | MEDLINE | ID: mdl-28640336

ABSTRACT

Maturation is a characteristic of sugarcane plant (Saccharum spp.) and even when grown under the same soil and climate conditions the varieties differ on the maturation curve. Thus, studies that allow establishing maturation curves of different sugarcane genotypes in the local soil and climate may indicate the proper harvesting period to ensure better quality of the raw material. This study aimed to analyze the levels of soluble sugars during the maturation phase and assess the technological and productivity indexes of four irrigated sugarcane genotypes in the region of Rio Largo, Alagoas. The experiment was conducted in randomized blocks in a 4 x 2 x 5 factorial: four genotypes (RB92579, RB98710, RB99395 and RB961003), two stem portions (internodes 1-4 and internodes 5-8) and five seasons (82, 49, 25, 13 and 3 days before harvesting), each treatment with three replications. Internodes 1-4 showed the highest levels of reducing sugars, while the largest accumulation of sucrose and total soluble solids occurred in internodes 5-8. RB99395 genotype showed more stability in the sugar levels during sugarcane maturation, which can indicate early maturation and high agricultural yield.


Subject(s)
Plant Stems/physiology , Saccharum/physiology , Sugars/analysis , Analysis of Variance , Chromatography, High Pressure Liquid , Genotype , Plant Stems/genetics , Reference Values , Saccharum/genetics , Sugars/metabolism , Temperature , Time Factors
5.
An. acad. bras. ciênc ; 89(2): 1231-1242, Apr.-June 2017. tab, graf
Article in English | LILACS | ID: biblio-886711

ABSTRACT

ABSTRACT Maturation is a characteristic of sugarcane plant (Saccharum spp.) and even when grown under the same soil and climate conditions the varieties differ on the maturation curve. Thus, studies that allow establishing maturation curves of different sugarcane genotypes in the local soil and climate may indicate the proper harvesting period to ensure better quality of the raw material. This study aimed to analyze the levels of soluble sugars during the maturation phase and assess the technological and productivity indexes of four irrigated sugarcane genotypes in the region of Rio Largo, Alagoas. The experiment was conducted in randomized blocks in a 4 x 2 x 5 factorial: four genotypes (RB92579, RB98710, RB99395 and RB961003), two stem portions (internodes 1-4 and internodes 5-8) and five seasons (82, 49, 25, 13 and 3 days before harvesting), each treatment with three replications. Internodes 1-4 showed the highest levels of reducing sugars, while the largest accumulation of sucrose and total soluble solids occurred in internodes 5-8. RB99395 genotype showed more stability in the sugar levels during sugarcane maturation, which can indicate early maturation and high agricultural yield.


Subject(s)
Plant Stems/physiology , Saccharum/physiology , Sugars/analysis , Reference Values , Temperature , Time Factors , Analysis of Variance , Chromatography, High Pressure Liquid , Plant Stems/genetics , Saccharum/genetics , Sugars/metabolism , Genotype
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