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航天诱变番茄无限生长习性突变体的选育及其诱变机理研究

Studies on the Selection of Indeterminate Growth Habit Tomato Mutant Induced by Space Flight and Its Mutagenesis Mechanism

【作者】 王艳芳

【导师】 祝水金;

【作者基本信息】 浙江大学 , 作物遗传育种, 2006, 博士

【摘要】 航天诱变育种是利用空间环境的综合物理因素和条件对生物遗传性状产生的强烈动摇和诱变,获得地面常规方法较难得到的特异种质资源,进而选育出新品种。航天诱变所产生的突变具有广谱性、特异性、高频性、快速性等优点,已在作物新种质的创造和新品种选育方面取得了显著的成果。本研究将有限生长习性的番茄品种10-3-2(多代自交系)的种子搭载“神舟4号”,返回地面后发现1株无限生长习性突变体,经过连续3代的筛选,得到了性状稳定的具有无限生长习性的突变体MS1。此外,以突变体MS1为研究材料,未搭载的原品种为对照(CK),从形态学、细胞学、生理生化和分子标记等方面进行了系统的分析研究,以探讨航天诱变机理,以及番茄生长习性的生理生化基础。主要研究结果如下: 1、通过航天诱变获得了具有无限生长习性的番茄突变体 在航天诱变番茄SP1代发现了1株无限生长习性突变体SP1-1。当对照封顶时(株高为103cm),SP1-1的株高为145cm。SP1-1自交后SP2均为无限生长习性,但SP3以后出现株高和生长习性的性状分离。经连续3代的自交株选,结合株行生长习性、植株高度、农艺性状等一致性考察和鉴定,最后获得了群体稳定一致的并具有无限生长习性番茄突变体—MS1。 2、航天诱变番茄突变体的形态学特性及经济性状观察 MS1为无限生长习性突变体,不自然封项。MS1植株表现为植株高大,丰产性好。当CK封项时,MS1群体平均株高138cm,比CK增加33.40%,二者差异达极显著水平。MS1第一果节始生节位为8.1节,比CK多1.5节,二者差异达到极显著水平;MS1主茎粗1.22cm,CK为0.88cm,二者差异达到极显著水平。MS1的早期产量为43728.0kg·hm-2,总产为71253.8kg·hm-2,分别比CK高7716.7kg·hm-2和18451.6kg·hm-2,增产达极显著水平。然而,MS1的其它性状如育性、果型、果重、果色等与对照基本相同。 3、航天诱变番茄突变体的细胞学特征研究 对无限生长习性突变株SP1-1进行离体培养保存,并对其再生根进行细胞学观察,SP1-1染色体数为2n=24,未发现染色体数目和结构的变异;对MS1的根尖细胞进行了大量压片观察,结果表明,MS1有丝分裂中期的染色体数目与形态正常。对SP1-1和MS1花粉母细胞进行了压片观察,结果表明,两者的减数分裂正常,没有出现染色体断片、染色体桥等异常染色体。突变株和MS1成熟的花粉粒大小均匀一致,未见畸形花粉粒。即航天诱变所获得的无限生长习性突变株SP1-1和经选育而成的突变体MS1均无染色体结构和数目的变异。 4、航天诱变番茄突变体的同工酶分析 同工酶电泳分析结果表明,MS1的SOD同工酶的酶谱与

【Abstract】 Space mutation breeding is a newly emerged breeding method, which consists of taking the seeds or other plant parts into the space by the recoverable satellite, where synthetically physical factors of the space are applied to create great genetic variations in them. Resultantly, many new kinds of germplasms were obtained, which were impossible through any conventional breeding method on the earth. There are several merits in space mutation breeding, such as its wider scope in variation, outstanding mutants obtained, higher frequency of mutation, and shorter period of the breeding program etc. Up to now, more than 70 crops and 500 cultivars had been sent to space for scientific research. As a result, more than 50 new cultivars or strains have been gradually derived via space mutation in China till now. In our present studies, we found a tomato plant with the indeterminate growth habit other than the determinate growth habit in its background parent (CK), through the space inducing mutation via the recoverable satellite, Shenzhou 4, which was sent to space in 2002. Continuous self-crossing and selection for three generations, a mutant with the stable indeterminate growth habit, MSI, was developed. In this paper, the process for the breeding of MSI, the morphological and physiological characters of the mutant MSI, as well as its cytological and molecular characters were studied, thorough the comparative analysis between MSI and its background parent, in order to open out a comprehensive look about the space mutation mechanism. The main results were as follows:1. Bred for of an indeterminate growth habit tomato mutant via space mutation In SP1 population coming back from space, a special plant, SP1-1, was found having higher plant height than others plants, being indeterminate growth habit other than the determinate one of its background CK. When CK was self-prunning (the average height was 103 cm), SP1-1 plant was 145 cm, 42 cm higher than that of CK. All the plants in SP2 population from the self-crossed seeds of SP|-1 were indeterminate growth habit. After continuous self-crossing and selection for three generation, a stable indeterminate growth tomato germplasm wasobtained.2. Morphologic characters and economic characters of MSIAt the time of self-prunning in CK population, the average plant height in MSI was 138cm, which was 33.40% higher than that of CK. The difference was obvious in the position of the 1st fruit node, which was 8.1 in MSI and was 1.5 higher than that of CK. The main stem diameter of MSI was 1.22 cm, 0.88 cm more than that of CK. Being the indeterminate growth habit and not self-prunning, the yield in MS 1 was much higher than that of CK, if the growth condition was good enough. The early yield and total yield of MSI were 43653.0 kg-hm"2 and 71253.8 kg-hm"2 respectively, which were 7716.8 kg-hm"2 and 18451.5 kg-hm’2 more than that of CK, respectively. The differences of the characters described above were obvious. Other characters such as fruit shape, signal fruit weight and fruit color in MSI were almost the same with CK.3. Observation of cytological characters in SPi-1 and MSIUsing the second root tips which were produced during the tissue culture of the indeterminate growth habit mutant and the root tips of MS 1, the chromosome configuration in mitosis and chromosome behavior in meiosis was observed. As the result showed, the chromosome number of the mutation plant SPpl was 24, the sameness as that of CK. The variation of the chromosome number and structure in SP|-1 and MSI has not been found in this experiment. The meiosis of pollen mother cell (PMC) in SP|-1 and MSI were also observed in this experiment. As a result, the 1st and 2nd cell division of meiosis in SPj-1 and MSI were both normal. No any chromosome segments or bridges and lagging chromosomes were found in the PMC meiosis. The size and structure of the pollens in SPj-1 and MSI was normal and no misshape pollens were observed as well.4. Enzymogram and activity of isoenzyme in MSIThe results showed that, the SOD enzymogram of MSI had not any difference comparing to CK. Both of them had three bands, and the positions of the bands were same as well. Although the number of POD bands between MSI and CK was the same, the staining extent had some distinct differences. One of POD isoenzyme bands in CK, Rf=0.512, was stained much darker than that of MS 1. The results of SOD and POD activities revealed that, there was no distinct difference of SOD activity between MSI and CK, which in MSI and CK were 24.83 u-g’1 and 24.52 u ? g"11 respectively. However, POD activities between MS 1 and CK were quite different,which in MSI and CK were 7.41 u-g"1 -min’1 and 9.76 u-g"1 -min"1 respectively, i.e. POD activity in MS 1 was much lower than that of CK.5. Photosynthesis characters in MSIThe results showed that, the tendencies of net photosynthetic rates (Pn) daily in MSI and CK were almost the same, with double peaks in the curves. However, the net daily photosynthetic rate (Pn) of MS 1 was much higher than that of CK especially in the period of photosynthetic fastigium. Similarly, the daily variation of stomata conductance (Gs) in MS 1 and CK had significantly differences and the curves were high at noon and low in the morning and afternoon. The average Gs in MSI was 0.254 mol-m" -s"1, which was much higher than that of CK. For the intracellular CO2 (Ci), their daily variation curves were shapes like letter "U". Contrast to Gs, Ci in MSI and CK had no distinct difference. The results of chlorophyll content analysis illustrated that the total chlorophyll contents in MSI was higher than that of CK, especially the chlorophyll-a, but the content of chlorophyll-b in MSI was almost the same to CK. This led to the increase of the ratio of chlorophyll-a/chlorophyll-b in MSI remarkably.6. Molecular marker analysis for MSIThe results showed that, 44 of total 50 10-mer Sangon RAPD primers amplified products and 2 primers of them, SI 65 and SI 68, amplified polymorphic products. The molecular weight of the specific amplified products were 300bp and 1500bp respectively, therefore they were named as TRSI65300 and TRS1681500 temporarily. Both of them were sequenced and transformed to SCAR markers, only of them, TRS 1681500, was a stable SCAR marker that could be used in genetic marker of the indeterminate growth habit mutant and MAS.7. The plants regeneration ability of MSIThe mutation plant obtained by space mutation was preserved by the method of tissue culture. During tissue culture, it was found that, when 6-BA concentration was 2.0 mg-L’1 in the media, the calli of the mutation explants was induced in 16 days and the callus inducing rate was 90%. However, at the same condition of tissue culture, the callus inducing rate was only 50% in 16 days of the culture. When IAA concentration in the media was increased gradually, the ability of callus inducing rate between the mutation and CK explants was same gradually, so did as the rate of plant regeneration. It was probable that, via space flight, there were some variation in the hormone concentration in the plant of MS 1, which led to the difference in the rate of callusinducing and plants regeneration between MS 1 and CK. 8. Studies on the hormone contents in MSI plantThe contents of 4 kinds of hormones, IAA, GA3, ABA and ZR, in the MSI plants during the plant growth season were assayed by ELISA. The results showed as follows: (1) In vivo IAA concentration of both MS 1 and CK increased gradually in early period of the plant growth, but in late season, that in MS 1 was increasing persistently, much different to that of CK in which the IAA content was tended to be a stable level. In the whole growth season, there was a little difference of IAA content between MSI and CK. (2) In early season, GA3 content in both MSI and CK was low. With the plants growing, GA3 content in MS 1 increased greatly, which was much higher than that of CK. (3) For ABA content, there was no obvious difference between MSI and CK during the early stage of plant growing. ABA content in the two kinds of plant was about 100-200 ng-mL"1. However, with the plants growing, ABA content in CK was increasing continuously. So ABA content in CK was much higher than that of MSI in the end. (4) In all the assayed period, ZR content in MS 1 was much higher than that of CK. And the difference was very significant. The results showed that the hormone content in MSI was varied greatly after treated by space flight. It was concluded that the expression of some genes related to the plant growing was changed which led to the variation in plant traits, although we had not found very powerful evidences to illuminate the reasons or causes of the mutation.

  • 【网络出版投稿人】 浙江大学
  • 【网络出版年期】2006年 09期
  • 【分类号】S641.2
  • 【被引频次】17
  • 【下载频次】907
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