首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 218 毫秒
1.
测定了温州蜜柑(Citrus unshiu Marc. cv. Miyagawa wase)果实发育进程中干鲜重、果皮光合速率和叶绿素含量的变化,并用14CO2示踪技术研究了果皮和叶同化生成的光合产物在果实内的运输分配特性.结果表明:果皮光合速率与叶绿素含量有关,随着叶绿素含量的下降,果实光合速率也快速下降.在果实完熟之前,即使是当果皮积累的干重超过汁囊时,叶同化产物仍主要分配到汁囊中;而在完熟阶段,果皮光合速率接近零,果皮成了叶同化产物的主要库.果皮的同化产物,主要保留在果皮中,输入到汁囊的比率随果实发育而下降,但高峰时也有12%输入汁囊.与对照相比,果实遮光处理后降低了果皮与汁囊的干重和含糖量.上述结果表明果皮光合产物主要用于果皮自身的发育并能减少对叶光合产物的依赖,同时也能部分增加汁囊糖的积累.  相似文献   

2.
测定了温州蜜柑果实发育进程中糖的积累动态,并用14C示踪方法研究了果实发育不同阶段源叶的光合产物在果实中的运输分配特性.结果表明(1)果实组织中的糖含量随果实发育持续上升,果皮以积累己糖为主而其它组织则以积累蔗糖为主或略多.(2)在果实完熟之前,汁囊分配到的光合产物均占果实的50%以上,为果实中的光合产物分配中心;而到完熟阶段分配到汁囊的14C光合产物与其它组织接近,不再有明显的分配中心.(3)汁囊中的14C放射性比活度随着果实发育呈下降趋势,尤其在后期下降极为明显.(4)维管束/囊瓣表皮和囊瓣表皮/汁囊的14C放射性比活度的比率都随果实发育进程而增大,但后者的比率要大大高于前者,表明韧皮部后运输是光合产物进入汁囊的限速阶段.(5)输入到汁囊的14C光合产物主要以蔗糖形式存在,说明光合产物是以蔗糖为主体输入汁囊参与糖积累和代谢的.  相似文献   

3.
温州蜜柑果实发育进程中光合产物运输分配及糖积累特性   总被引:30,自引:0,他引:30  
测定了温州蜜柑果实发育进程中糖的积累动态,并用14C示踪方法研究了果实发育不同阶段源叶的光合产物在果实中的运输分配特性。结果表明:(1)果实组织中的糖含量随果实发育持续上升,果皮以积累己糖为主而其它组织则以积累蔗糖为主或略多。(2)在果实完熟之前,汁囊分配到的光合产物均占果实的50%以上,以果实中的光合产物分配中心;而到完熟阶段分配到汁囊的14C光合产物与其它组织接近,不再明显的分配中心。(3)汁囊中的14C放射性比活度随着果实发育呈下降趋势,尤其在后期下降极为明显。(4)维管束/囊瓣表皮和囊瓣表面/汁囊的14C放射性比活度的比率都随果实发育进程而增大,但后者的比率要大大高于前者,表明韧皮部后运输是光合产物进入汁囊的限速;《阶段。(5)输入到汁囊的14C光合产物主要以蔗糖形式存在,说明光合产物是以蔗糖为主体输入汁囊参与糖积累和代谢的。  相似文献   

4.
研究了柑橘果实膨大初期遮光处理对果皮色素、果实含糖量、光合产物在果实内的分配及果实中蔗糖代谢相关酶活力变化的影响.结果表明遮光处理使果皮中的叶绿素含量迅速降低而类胡萝卜素积累缓慢,蔗糖的相对含量则明显上升.遮光处理还促进了光合产物向果皮运输,相应地降低了汁囊中光合产物分配比率,使果实汁囊中蔗糖含量下降.果皮中SS、SPS和转化酶活力在遮光处理后均有较大的提高,而汁囊中则差异不大.上述结果表明,在果实自身光合作用被抑制的条件下,果皮是通过提高酶活力来增强库强度,从而使其在与汁囊竞争中获得更多的光合产物,造成汁囊含糖量下降.  相似文献   

5.
研究了柑橘果实膨大初期遮光处理对果皮色素、果实含糖量、光合产物在果实内的分配及果实中蔗糖代谢相关酶活力变化的影响。结果表明:遮光处理使果皮中的叶绿素含量迅速降低而类胡萝卜素积累缓慢,蔗糖的相对含量则明显上升,遮光处理还促进了光合产物向果皮运输,相应地降低了汁囊中光合产物分配比率,使果实汁囊中蔗糖含量下降。果皮中SS、SPS和转化酶活力在遮光处理后均有较大的提高,而汁囊中则差异不大。上述结果表明,在果实自身光合作用被抑制的条件下,果皮是通过提高酶活力来增强库强度,从而使其在与汁囊竞争中获得更多的光合产物,造成汁囊含糖量下降。  相似文献   

6.
采用盆钵实验和^14C-同位素示踪技术,在节水、淹水、干旱三种灌溉方式下对杂交稻组合C两优396、威优46不同生育期的光合特性及同化产物的运转与分配进行研究。结果表明:在生育前期节水处理的叶绿素含量、净光合速率、同化产物分配比例与淹水处理的差异不显著;水稻抽穗后,淹水处理叶绿素含量与净光合速率下降幅度均大于节水处理,同化产物分配比例显著低于节水处理,最终导致产量也低于节水处理。而十旱处理在整个生育期的剑叶叶绿素含量、净光合速率、同化产物分配比例均低于节水、淹水处理,最终产量显著低于前两种处理。  相似文献   

7.
以6年生‘烟富3’/M26/平邑甜茶苹果为试材,采用C、N双标记技术,研究在果实膨大后期用不同尿素浓度水溶液(N 0%、0.6%、1.2%、1.8%、2.4%,分别用CK、N1、N2、N3、N4表示)涂抹果实周围20 cm范围内叶片对叶片13C同化能力及13C光合产物、15N向果实转移分配的影响.结果表明: 随着尿素浓度的增加,叶片的叶绿素含量、氮含量、光合速率、山梨醇和蔗糖含量、6-磷酸山梨醇脱氢酶(S6PDH)和蔗糖磷酸合酶(SPS)活性及13C同化能力均先升高后降低,均以1.8%尿素涂抹处理最高,清水对照最低.13C自留量(自身叶片+自身新梢)以清水对照最高,为81.6%,1.8%尿素涂抹处理最低,为63.5%.向外输出的13C光合产物主要分布在标记果实,其次是未标记多年生枝,未标记叶片最低.果实13C吸收量随着尿素浓度增加呈先升高后降低趋势,以1.8%尿素涂抹处理最高(1.21 mg·g-1),清水对照最低(0.51 mg·g-1);果实15N吸收量随着尿素浓度增加呈持续升高趋势.表明尿素水溶液叶施可不同程度地提高叶片光合产物和氮素向果实转移分配的能力,以1.8%尿素涂抹处理叶片光合产物向果实转移分配能力最强,同时避免了过多的氮素向果实的输入.  相似文献   

8.
以6年生‘烟富3’/M26/平邑甜茶苹果为试材,采用C、N双标记技术,研究在果实膨大后期用不同尿素浓度水溶液(N 0%、0.6%、1.2%、1.8%、2.4%,分别用CK、N1、N2、N3、N4表示)涂抹果实周围20 cm范围内叶片对叶片13C同化能力及13C光合产物、15N向果实转移分配的影响.结果表明: 随着尿素浓度的增加,叶片的叶绿素含量、氮含量、光合速率、山梨醇和蔗糖含量、6-磷酸山梨醇脱氢酶(S6PDH)和蔗糖磷酸合酶(SPS)活性及13C同化能力均先升高后降低,均以1.8%尿素涂抹处理最高,清水对照最低.13C自留量(自身叶片+自身新梢)以清水对照最高,为81.6%,1.8%尿素涂抹处理最低,为63.5%.向外输出的13C光合产物主要分布在标记果实,其次是未标记多年生枝,未标记叶片最低.果实13C吸收量随着尿素浓度增加呈先升高后降低趋势,以1.8%尿素涂抹处理最高(1.21 mg·g-1),清水对照最低(0.51 mg·g-1);果实15N吸收量随着尿素浓度增加呈持续升高趋势.表明尿素水溶液叶施可不同程度地提高叶片光合产物和氮素向果实转移分配的能力,以1.8%尿素涂抹处理叶片光合产物向果实转移分配能力最强,同时避免了过多的氮素向果实的输入.  相似文献   

9.
柑橘果皮颜色的形成与类胡萝卜素组分变化的关系   总被引:12,自引:0,他引:12  
分析了果皮分别为红、橙和黄颜色的柑橘品种“满头红”、“尾张”和“胡柚”果实着色过程中果皮类胡萝卜素组分及含量的变化。结果表明,随着果实的发育和成熟,果皮叶绿素含量下降,α-胡萝卜素、β—胡萝卜素含量逐渐下降直至消失,而β—隐黄质、β-柠乌素、玉米黄质等叶黄素成分含量逐渐上升,果实逐渐褪绿并呈现其特征色泽。“胡柏”果皮中类胡萝卜素总量及其橙、红色类胡萝卜素成分β-隐黄质和β-柠乌素积累少是其颜色淡、呈黄色的主要原因;三种果实的颜色差异并非由于果皮类胡萝卜素总量的差异,而主要是由于果皮不同类胡萝卜素成分组成比例不同。“满头红”以积累红色的β-柠乌素为主,而“尾张”则以积累橙色的β-隐黄质为主。  相似文献   

10.
光照对柑橘果皮类胡萝卜素和色泽形成的影响   总被引:27,自引:2,他引:25  
以“红柿柑”为试材,在柑橘果实膨大末期通过套袋遮光处理以抑制果皮光合作用,研究光照对果皮糖、叶绿素、类胡萝卜素及果实外观色泽的影响。结果表明,遮光后果皮叶绿素含量迅速下降引起果实转色提早,但各种类胡萝卜素含量及总量并未提高,而是显著下降;至果实成熟时由于遮光与光照处理的果皮叶绿素均消失,遮光果实类胡萝卜素含量低颜色变淡,与光照处理相比,遮光前期果皮糖含量下降不大,而后期下降明显;若在后期去袋照光,果皮糖含量上升,与此相应,类胡萝卜素,尤其是β-隐黄质的积累增加,颜色加深,表明光对果皮类胡萝卜素合成尤其是β-隐黄质的积累有促进作用,其原因是光以环境信号的方式影响果皮的类胡萝卜素形成。  相似文献   

11.
Juice tissues of citrus lack phloem; therefore, photosynthates enroute to juice sacs exit the vascular system on the surface of each segment. Areas of extensive phloem unloading and transport (vascular bundles + segment epidermis) can thus be separated from those of assimilate storage (juice sacs) and adjacent tissues where both processes occur (peel). Sugar composition, dry weight accumulation, and activities of four sucrose-metabolizing enzymes (soluble and cell-wall-bound acid invertase, alkaline invertase, sucrose synthase, and sucrose phosphate synthase) were measured in these transport and sink tissues of grapefruit (Citrus paradisi Macf.) to determine more clearly whether a given enzyme appeared to be more directly associated with assimilate transport versus deposition or utilization. Results were compared at three developmental stages. Activity of sucrose (per gram fresh weight and per milligram protein) extracted from zones of extensive phloem unloading and transport was significantly greater than from adjacent sink tissues during the stages (II and III) when juice sacs grow most rapidly. In stage II fruit, activity of sucrose synthase also significantly surpassed that of all other sucrose-metabolizing enzymes in extracts from the transport tissues (vascular bundles + segment epidermis). In contrast, sucrose phosphate synthase and alkaline invertase at this stage of growth were the most active enzymes from adjacent, rapidly growing, phloem-free sink tissues (juice sacs). Activity of these two enzymes in extracts from juice sacs was significantly greater than that form the transport tissues (vascular bundles + segment epidermis). Soluble acid invertase was the most active enzyme in extracts from all tissues of very young fruit (stage I), including nonvascular regions, but nearly disappeared prior to the onset of juice sac sugar accumulation. The physiological function of high sucrose synthase activity in the transport tissues during rapid sucrose import remains to be determined.  相似文献   

12.
大田栽培条件下,在大豆始花期叶面喷施以植物多糖(P1)、植物多糖和5-氨基乙酰丙酸(P2)以及植物多糖、5-氨基乙酰丙酸和缩节胺(P3)为有效成分复配的3种制剂,研究不同植物多糖类复合制剂对大豆叶绿素含量、光合蒸腾特性、干物质积累与分配以及籽粒产量的影响.结果表明:喷施3种制剂35 d内,大豆叶片叶绿素含量与对照相比明显增加,且随生育进程下降的趋势有所延缓;喷施P1和P3使大豆叶片光合速率和水分利用效率分别提高13.2%和10.3%以上.与对照相比,喷施3种制剂促进了大豆地上部于物质积累量的增加、提高了叶片干物质向荚的分配比例,花后干物质同化量对籽粒的贡献率增加17.1%以上;喷施P1和P3后,大豆单株荚数、单株粒数和百粒重显著增加,喷施P2后变化不显著;喷施3种制剂使大豆增产5.9%以上.3种植物多糖类复合制剂可促进大豆叶绿素合成、延缓叶片衰老、改善叶片光合潜能和水分状况,有效调控大豆干物质积累和花后同化物分配,进而实现增产.  相似文献   

13.
在宁夏枸杞盛花期对果实进行遮光处理,以自然照光为对照,通过测定枸杞果实生长指标、果实叶绿素含量、蔗糖代谢糖分含量及其蔗糖代谢相关酶活性,以研究枸杞果实光合作用在枸杞果实糖积累中的效应及对枸杞果实多糖和总糖含量积累的影响。结果表明:(1)遮光后,果实单粒重和果实中叶绿素含量均降低,体积却有所增加,遮光处理主要影响果实着色期和成熟期的糖含量,对果实发育初期影响不大;(2)遮光处理不同程度增加了果实转化酶、蔗糖磷酸合成酶和蔗糖合成酶活性。枸杞果实多糖的形成与果实光照具有一定的关系,而总糖含量的积累与光照关系不大。  相似文献   

14.
补充蓝光对设施栽培油桃光合性能及糖酸积累的影响   总被引:2,自引:0,他引:2  
以设施曙光油桃(Prunus persica cv. ‘Shuguang’)为试材, 设置补充蓝光处理, 测定了生育期内5个关键时期叶片的光合性能相关参数及果实的糖酸组分, 并观察了叶片气孔的变化情况。结果表明: 补充蓝光后油桃叶片的净光合速率提高, 叶绿素a和b含量增加, 叶绿素a/b显著降低, 叶面积增大; 气孔开放提前并较早达到最大开度, 且关闭延迟。叶片中检测到的主要同化物为果糖、葡萄糖和山梨醇, 以山梨醇为主; 果实中则为果糖、葡萄糖、山梨醇和蔗糖, 成熟期以蔗糖为主。补充蓝光处理的叶片中3种同化物积累较少, 而果实中总糖和蔗糖含量较高, 表明蓝光处理提高了光合同化物从叶片到果实的转运转化能力。草酸是叶片和果实中主要的有机酸, 补充蓝光处理的果实中有机酸含量显著降低, 糖酸与对照相比提高了30.5%。硬核期后是蓝光处理提高果实糖酸比的关键时期, 此时补充蓝光可改善设施油桃光合性能及果实品质, 这一技术措施有望应用到设施果树的栽培中。  相似文献   

15.
遮光灵武长枣果实糖积累和代谢相关酶活性特征   总被引:1,自引:0,他引:1  
于灵武长枣盛花期对果实进行遮光处理,以自然照光为对照,通过测定果实生长指标、叶绿素含量、蔗糖代谢相关酶活性及其蔗糖代谢糖分含量等,研究果实光合作用在果实糖积累中的作用及对果实多糖和总糖含量积累的影响。结果表明:(1)遮光处理后,果实单粒重、单粒体积以及果实中叶绿素含量均降低。(2)遮光处理不同程度增加了果实中转化酶、蔗糖磷酸合成酶和蔗糖合成酶分解方向酶的活性,而降低了其蔗糖合成酶合成方向酶的活性。(3)遮光处理主要影响果实着色期和成熟期的糖含量,对果实发育初期糖含量影响较小;果实多糖的形成与果实所受光照状况具有一定的关系,而果实中总糖的积累与外界光照具有密切关系。可见,果实遮光处理影响了果实发育过程中蔗糖代谢相关酶的活性,从而影响果实糖分的代谢和积累。  相似文献   

16.
为确定小豆作为林果行间套种作物的适宜性,通过田间试验和盆栽试验,测定全光和弱光处理(全光的48%)下3个小豆品种(阜南绿小豆、早熟黑小豆、晚熟黑小豆)在初花期的叶片光合特征参数、光合色素含量和RuBPCase活性,研究小豆生长发育对弱光的响应.结果表明: 弱光使3个品种小豆叶片的最大净光合速率、光饱和点、光补偿点等光合参数不同程度地向耐荫的方向变化,净光合速率、水分利用效率和RuBPCase活性也显著下降;遮阴后,阜南绿小豆的叶绿素a和b含量显著增加,Chl a/b和类胡萝卜素含量显著降低,其他小豆的叶绿素和类胡萝卜素含量无明显变化;弱光使3个品种小豆的生物量和干物质积累效率降低,根冠比降低,根瘤量减少,叶片数和叶面积指数减小;弱光胁迫下,阜南绿小豆提前开花、提前成熟,早熟黑小豆推迟开花、延迟成熟,而晚熟黑小豆只开花不结实.从遮阴后小豆的光合特性变化和生长发育差异等方面综合考虑,3个小豆品种的耐阴能力大小为:阜南绿小豆>早熟黑小豆>晚熟黑小豆.  相似文献   

17.
Proietti  P. 《Photosynthetica》2003,41(4):559-564
The source level in the olive cultivar Leccino was varied by girdling at different stages of fruit growth. Afterwards, the effects on gas exchange, fruit growth, and ripening and blooming were studied. Girdling during fruit growth did not significantly influence net photosynthetic rate (P N) except in the last phase of fruit growth when the P N was reduced. In the girdled branch, P N began to decrease at the onset of starch accumulation because fruit growth ceased. In mid-November stomatal conductance (g s) and transpiration rate (E) were also reduced by girdling, whereas sub-stomatal CO2 concentration (C i) increased in leaves from the girdled branches. The total chlorophyll content (Chl) tended to decrease in parallel with the reduced P N. Girdling did not substantially influence the leaf and shoot water contents. The large availability of assimilates seems to cause an earlier fruit ripening. In general, girdling increased fruit dry mass. Healing before the time when the majority of pulp growth occurs reduced the effect of girdling. June girdling increased the pit dry mass. Girdling at the beginning of August and September, compared to the control, increased the pulp dry mass, but the pit dry mass did not differ with respect to the control. The percentage of oil in the fruit, on a dry mass basis, increased with August and September girdlings, but the percentage of oil in the pulp did not change. Girdling reduced shoot growth, but the internode length was unchanged. Girdling slightly stimulated differentiation of flower buds.  相似文献   

18.
19.
Carotenoids are abundant in citrus fruits and vary among cultivars and species. In the present study, high performance liquid chromatography (HPLC) and real-time polymerase chain reaction (PCR) were used to investigate the expression patterns of 23 carotenoid biosynthesis gene family members and their possible relation with carotenoid accumulation in fresh flavedo, juice sacs and leaves of Valencia orange during fruit maturation. Violaxanthin and lutein mainly accumulated in fruit (flavedo and juice sacs) and leaves (young and mature), respectively, accounting for nearly 79 %, 57 %, 53 % and 70 % of corresponding total carotenoids in February. Violaxanthin content quickly began to increase in flavedo in December, but the increase in juice sacs began later in January. In mature leaves, lutein content was three times that in young leaves; α-carotene and β-carotene were also much higher in mature leaves than in flavedo or juice sacs. Generally most of the carotenoid biosynthesis gene members were expressed at higher levels in flavedo than in juice sacs, and the expression of some continued to increase in flavedo during fruit maturation. All CHYB members expressed at high levels and had similar patterns in juice sacs. Interestingly, the capsanthin capsorubin synthase (CCS) members had similar expression levels and patterns in flavedo and juice sacs. Differences in gene expression between leaf and fruit tissues were noted, pointing to some tissue specificity for certain members of the gene families associated with carotenogenesis. The expression patterns of these 23 citrus carotenoid biosynthesis gene members were also compared with their expression patterns in other plants. Taken together, these first-hand expression data will be useful to define the tissue-specific roles of each gene member in accumulation of different carotenoids in citrus leaves and maturing fruits.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号